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  1. Abrar M. M., S. A. A. Shah, N. Sun, et al. 2022. Long-Term Manure Application Enhances Organic Carbon and Nitrogen Stocks in Mollisol Subsoil. Land Degradation & Development. 34(3): 815-832.

  2. Aihaiti A., Z. H. Jiang, Y. Li, et al. 2022. The Global Warming and IPO Impacts on Summer Extreme Precipitation in China. Climate Dynamics. doi: 10.1007/s00382-022-06511-x.

  3. Ajibola F. O., B. T. Zhou, S. Shahid, et al. 2022. Performance of CMIP6 Highresmip Simulations on West African Drought. Frontiers in Earth Science. 10: 925358.

  4. An S. I., S. E. Park, J. Shin, et al. 2022a. General Circulation and Global Heat Transport in a Quadrupling CO2 Pulse Experiment. Scientific Reports. 12(1): 11569.

  5. An T. T., P. Yuan, J. Y. Cen, et al. 2022b. Temperature of Apparent Natural Ball Lightning Obtained by Examination of the Spectra. Physics of Plasmas. 29(11): 113503.

  6. Asfaw T. G., J. J. Luo. 2022. Seasonal Prediction of Summer Precipitation over East Africa Using NUIST-CFS1.0. Advances in Atmospheric Sciences. 39(3): 355-372.

  7. Ayugi B., E. O. Eresanya, A. O. Onyango, et al. 2022. Review of Meteorological Drought in Africa: Historical Trends, Impacts, Mitigation Measures, and Prospects. Pure and Applied Geophysics. 179(4): 1365-1386.

  8. Ayugi B., Z. H. Jiang, V. Iyakaremye, et al. 2022. East African Population Exposure to Precipitation Extremes under 1.5 Degrees C and 2.0 Degrees C Warming Levels Based on CMIP6 Models. Environmental Research Letters. 17(4): 044051.

  9. Ayugi B., Z. W. Shilenje, H. Babaousmail, et al. 2022. Projected Changes in Meteorological Drought over East Africa Inferred from Bias-Adjusted CMIP6 Models. Natural Hazards. 113(2): 1151-1176.

  10. Babaousmail H., B. Ayugi, A. Rajasekar, et al. 2022. Projection of Extreme Temperature Events over the Mediterranean and Sahara Using Bias-Corrected CMIP6 Models. Atmosphere. 13(5): 741.

  11. Bai C., F. Sun, J. L. Zhang, et al. 2022. Rainformer: Features Extraction Balanced Network for Radar-Based Precipitation Nowcasting. Ieee Geoscience and Remote Sensing Letters. 19: 4023305.

  12. Bartana H., C. I. Garfinkel, O. Shamir, et al. 2022. Projected Future Changes in Equatorial Wave Spectrum in CMIP6. Climate Dynamics. doi: 10.1007/s00382-022-06510-y.

  13. Bi X. X., G. H. Chen, W. C. Zhou. 2022. The Impact of Intra-Seasonal Oscillation on Westward Track Deflection of Super Typhoon Fitow (2013). Atmosphere. 13(3): 474.

  14. Bi Z. Y., S. L. Sun, H. Y. Shen, et al. 2022. Systematic Assessment of GPM IMERG V06 Precipitation Products with Dense Rain Gauge Observations over Zhejiang Province, China. International Journal of Climatology. 42(16): 9471-9493.

  15. Cai Y. H., X. Han, H. K. Zhao, et al. 2022. Enhanced Predictability of Rapidly Intensifying Tropical Cyclones over the Western North Pacific Associated with Snow Depth Changes over the Tibetan Plateau. Journal of Climate. 35(7): 2093-2110.

  16. Cao J., G. B. Zhou, L. S. Liu, et al. 2022d. Kinetic Energy Budgets in Different Quadrants During Tropical Cyclone Recurvature: A Case Study of Typhoon Rumbia (2018). Atmospheric Research. 278: 106319.

  17. Cao J., H. Wang, B. Wang, et al. 2022b. Higher Sensitivity of Northern Hemisphere Monsoon to Anthropogenic Aerosol Than Greenhouse Gases. Geophysical Research Letters. 49(20): e2022GL100270.

  18. Cao J., H. Wang, H. K. Zhao, et al. 2022c. Reversed and Comparable Climate Impacts from Historical Anthropogenic Aerosol and GHG on Global-Scale Tropical Cyclone Genesis Potential. Environmental Research Letters. 17(9): 094027.

  19. Cao J., Q. Xu, H. S. Chen, et al. 2022. Hybrid Methods for Computing the Streamfunction and Velocity Potential for Complex Flow Fields over Mesoscale Domains. Advances in Atmospheric Sciences. 39(9): 1417-1431.

  20. Cao J., S. P. Ma, L. K. Ran. 2022a. Comparative Analysis of Two Flow Decomposition Approaches and Their Applications in Diagnosing Water Vapor in Extreme Precipitation Events over Xinjiang Province, China. Frontiers in Earth Science. 10: 847317.

  21. Cao L., L. J. Fan, S. M. Li, et al. 2022. Influence of Total Ozone Column (TOC) on the Occurrence of Tropospheric Ozone Depletion Events (ODEs) in the Antarctic. Atmospheric Chemistry and Physics. 22(6): 3875-3890.

  22. Cao X., R. G. Wu, J. Xu, et al. 2022. Coherent Variations of Tropical Cyclogenesis over the North Pacific and North Atlantic. Climate Dynamics. doi: 10.1007/s00382-022-06381-3.

  23. Cao X., R. G. Wu, J. Xu, et al. 2022e. A Comparison of Tropical Cyclone Formation over the Western North Pacific in August between 1996 and 2014. Atmospheric Research. 266: 105952.

  24. Chang L., Y. Morioka, S. Behera, et al. 2022a. What Mainly Drives the Interannual Climate Variability over the Barents-Kara Seas in Boreal Early Autumn? Journal of Geophysical Research-Atmospheres. 127(21): e2021JD036216.

  25. Chang S. J., Y. C. Li, C. H. Shi, et al. 2022b. Combined Effects of the ENSO and the QBO on the Ozone Valley over the Tibetan Plateau. Remote Sensing. 14(19): 4935.

  26. Chen D., T. J. Zhou, D. Guo, et al. 2022a. Simulation of the Multi-Timescale Stratospheric Intrusion Processes in a Typical Cut-Off Low over Northeast Asia. Atmosphere. 13(1): 68.

  27. Chen G. S. 2022. A Model of the Convectively Coupled Equatorial Rossby Wave over the Indo-Pacific Warm Pool. Journal of the Atmospheric Sciences. 79(9): 2267-2283.

  28. Chen G. S. 2022. The Amplification of Madden-Julian Oscillation Boosted by Temperature Feedback. Journal of the Atmospheric Sciences. 79(1): 51-72.

  29. Chen H. C., F. F. Jin. 2022. Dynamics of ENSO Phase-Locking and Its Biases in Climate Models. Geophysical Research Letters. 49(3): e2021GL097603.

  30. Chen H. Q., L. Zhao, W. Dong, et al. 2022. Spatiotemporal Variation of Mortality Burden Attributable to Heatwaves in China, 1979-2020. Science Bulletin. 67(13): 1340-1344.

  31. Chen L., G. Li, B. Lu, et al. 2022. Two Approaches of the Spring North Atlantic Sea Surface Temperature Affecting the Following July Precipitation over Central China: The Tropical and Extratropical Pathways. Journal of Climate. 35(20): 2969-2986.

  32. Chen S. J., Z. M. Kang, M. Liu, et al. 2022b. Subseasonal Variation of 2020 Meiyu Rainfall with Extremely Long Duration over the Yangtze-Huaihe River Basin in China. Frontiers in Earth Science. 9: 799104.

  33. Chen W. J., J. Thorslund, D. M. Nover, et al. 2022c. A Typological Framework of Non-Floodplain Wetlands for Global Collaborative Research and Sustainable Use. Environmental Research Letters. 17(11): 113002.

  34. Chen X., Y. P. Guo, Z. M. Tan, et al. 2022. Influence of Different Types of ENSO Events on the Tropical Cyclone Rainfall over the Western North Pacific. Climate Dynamics. doi: 10.1007/s00382-022-06547-z.

  35. Chen Z. H., J. Zhang, Q. R. Ma, et al. 2022. Multi-Timescale Modulation of North Pacific Victoria Mode on Central Asian Vortices Causing Heavy Snowfall. Climate Dynamics. doi: 10.1007/s00382-022-06350-w.

  36. Chen Z. H., J. Zhang, Q. R. Ma, et al. 2022d. Excitation of European Transient Warming on the Caspian Sea Vortex. Journal of Geophysical Research-Atmospheres. 127(21): e2022JD037638.

  37. Cheng F., Q. P. Li, J. Wang, et al. 2022a. Interdecadal Variability of Spring Eurasian Snowmelt and Its Impact on Eastern China Summer Precipitation. Frontiers in Earth Science. 10: 927876.

  38. Cheng Y. F., B. Zhu, L. J. Wang, et al. 2022b. Source Apportionments of Black Carbon Induced by Local and Regional Transport in the Atmospheric Boundary Layer of the Yangtze River Delta under Stable Weather Conditions. Science of the Total Environment. 840: 156517.

  39. Chu Y., F. X. Guo, Z. W. Zhang, et al. 2022. Temporal and Spatial Distribution Characteristics of Lightning Activity over the Pacific Ocean and Adjacent Land and Its Relationship with Aod and Cape. Journal of Tropical Meteorology. 28(4): 473-488.

  40. Chwat D., C. I. Garfinkel, W. Chen, et al. 2022. Which Sudden Stratospheric Warming Events Are Most Predictable? Journal of Geophysical Research-Atmospheres. 127(18): e2022JD037521.

  41. Cui J. X., T. Li. 2022. Changes in MJO Characteristics and Impacts in the Past Century. Journal of Climate. 35(2): 577-590.

  42. Dai A. G., J. C. Deng. 2022. Recent Eurasian Winter Cooling Partly Caused by Internal Multidecadal Variability Amplified by Arctic Sea Ice-Air Interactions. Climate Dynamics. 58(11-12): 3261-3277.

  43. Dai B. Z., J. Li, J. H. Zhou, et al. 2022. Application of a Modified Empirical Wavelet Transform Method in VLF/LF Lightning Electric Field Signals. Remote Sensing. 14(6): 1308.

  44. Dai Z. Q., B. Wang, L. Zhu, et al. 2022. Atlantic Multidecadal Variability Response to External Forcing During the Past Two Millennia. Journal of Climate. 35(24): 4503-4515.

  45. Deng J. C., A. G. Dai. 2022. Sea Ice-Air Interactions Amplify Multidecadal Variability in the North Atlantic and Arctic Region. Nature Communications. 13(1): 2100.

  46. Ding C. C., Z. Z. Su, F. M. Ren, et al. 2022. Prediction of Tropical Cyclone Precipitation over China by the DSAEF_LTP Model. Quarterly Journal of the Royal Meteorological Society. 148(746): 2243-2253.

  47. Dong J. Z., W. T. Crow, X. Chen, et al. 2022a. Statistical Uncertainty Analysis-Based Precipitation Merging (SUPER): A New Framework for Improved Global Precipitation Estimation. Remote Sensing of Environment. 283: 113299.

  48. Dong W., L. Zhao, W. Cheng, et al. 2022b. Inconsistent Trends between Early and Late Winters in Extreme Cold Events in China from 1980 to 2021. Frontiers in Environmental Science. 10: 923228.

  49. Dong X. F., X. Lai, Y. S. Wang, et al. 2022c. Applicability Evaluation of Multiple Sets of Soil Moisture Data on the Tibetan Plateau. Frontiers in Earth Science. 10: 872413.

  50. Dong X., H. S. Chen, Y. Zhou, et al. 2022. Local and Non-Local Atmospheric Effects of Abnormal Soil Moisture over Indochina During May and June. Quarterly Journal of the Royal Meteorological Society. 148(747): 2903-2926.

  51. Dou T. F., S. F. Pan, R. Bintanja, et al. 2022. More Frequent, Intense, and Extensive Rainfall Events in a Strongly Warming Arctic. Earths Future. 10(10): e2021EF002378.

  52. Du Y., Z. Q. Xie, N. Wang, et al. 2022. Influence of Zonal Variation of the Subtropical Westerly Jet on Rainfall Patterns and Frequency of Heavy Precipitation Events over East Asia. Journal of Climate. 35(20): 3011-3026.

  53. Duan W. L., S. Zou, N. Christidis, et al. 2022. Changes in Temporal Inequality of Precipitation Extremes over China Due to Anthropogenic Forcings. Npj Climate and Atmospheric Science. 5(1): 33.

  54. Fan J. Z., Q. Z. Han, S. Q. Tan, et al. 2022a. Evaluation of Six Satellite-Based Soil Moisture Products Based on in Situ Measurements in Hunan Province, Central China. Frontiers in Environmental Science. 10: 829046.

  55. Fan J. Z., Q. Z. Han, S. Q. Wang, et al. 2022b. Evaluation of Fengyun-4a Detection Accuracy: A Case Study of the Land Surface Temperature Product for Hunan Province, Central China. Atmosphere. 13(12): 1953.

  56. Fan L. J., S. Y. Yang, J. G. Hu, et al. 2022c. Relationship between the Intraseasonal Oscillation over Mid-High-Latitude Eurasia and the Stratospheric Sudden Warming Event in February 2018. Remote Sensing. 14(8): 1873.

  57. Fan M. Y., Y. L. Zhang, Y. C. Lin, et al. 2022. Important Role of No(3)Radical to Nitrate Formation Aloft in Urban Beijing: Insights from Triple Oxygen Isotopes Measured at the Tower. Environmental Science & Technology. 56(11): 6870-6879.

  58. Fan Q. W., B. T. Zhou. 2022. Upper-Tropospheric Temperature Pattern over the Asian-Pacific Region in CMIP6 Simulations: Climatology and Interannual Variability. Frontiers in Earth Science. 10: 917660.

  59. Fan Y., J. Y. Li, S. P. Zhu, et al. 2022d. Trends and Variabilities of Precipitation and Temperature Extremes over Southeast Asia During 1981-2017. Meteorology and Atmospheric Physics. 134(4): 78.

  60. Fan Y., S. P. Zhu, L. J. Wang, et al. 2022e. Subseasonal Dynamical Prediction of South China Sea Summer Monsoon. Atmospheric Research. 278: 106347.

  61. Feng J., T. Li, J. Wang, et al. 2022. Heavy Precipitation over the Jing-Jin-Ji Region in Early October: What Controls Its Interannual Variability? Journal of Meteorological Research. 36(4): 586-600.

  62. Feng J., Y. Li, K. Zhao, et al. 2022. Deepmm: Deep Learning Based Map Matching with Data Augmentation. Ieee Transactions on Mobile Computing. 21(7): 2372-2384.

  63. Feng P. Y., B. Wang, I. Macadam, et al. 2022. Increasing Dominance of Indian Ocean Variability Impacts Australian Wheat Yields. Nature Food. 3(10): 862-870.

  64. Fu S. S., Z. W. Zhu, R. Lu. 2022. Changes in the Factors Controlling Northeast Asian Spring Surface Air Temperature in the Past 60 Years. Climate Dynamics. doi: 10.1007/s00382-022-06569-7.

  65. Fu Y. H., P. Liu, M. Y. Tang. 2022. The Arctic Sea Ice-Cloud Radiative Negative Feedback in the Barents and Kara Sea Region. Theoretical and Applied Climatology. 150(1-2): 1-11.

  66. Fu Z., P. C. Hsu, J. Li, et al. 2022. Multidecadal Changes in Zonal Displacement of Tropical Pacific MJO Variability Modulated by North Atlantic SST. Journal of Climate. 35(18): 5951-5966.

  67. Gao J. J., J. Du, C. Yang, et al. 2022a. Evaluation and Correction of Climate Simulations for the Tibetan Plateau Using the CMIP6 Models. Atmosphere. 13(12): 1947.

  68. Gao J., H. K. Zhao, P. J. Klotzbach, et al. 2022. Environmental Characteristics of Western North Pacific Tropical Cyclone Onset in Neutral ENSO Years. Climate Dynamics. doi: 10.1007/s00382-022-06559-9.

  69. Gao J., H. K. Zhao, P. J. Klotzbach, et al. 2022. Recent Weakening of the Relationship between El Nino-Southern Oscillation and Western North Pacific Tropical Cyclone Season Onset Date. International Journal of Climatology. 42(16): 9462-9470.

  70. Gao M. X., S. Y. Yang, T. Li. 2022b. Assessments on Simulation of Pacific Blocking Frequency During Boreal Winter in CMIP6 Climate Models. Dynamics of Atmospheres and Oceans. 100: 101333.

  71. Gao M., X. N. He, L. H. Chen, et al. 2022. Learning Vertex Representations for Bipartite Networks. Ieee Transactions on Knowledge and Data Engineering. 34(1): 379-393.

  72. Gao Q. J., L. Wang, Y. Li, et al. 2022c. Intra-Seasonal Features of Winter Extreme Cold Events in Northeast-North China and Synergistic Effects of Circulation Systems in Mid-High Latitude. Atmosphere. 13(9): 1425.

  73. Gao Q. J., Z. Q. Zhang, Y. S. Zhu, et al. 2022d. Analysis of Intraseasonal Oscillation Features of Winter Cold Precipitation Events in Southern China. Atmosphere. 13(10): 1603.

  74. Gao S. B., D. L. Huang, N. Z. Du, et al. 2022e. WRF Ensemble Dynamical Downscaling of Precipitation over China Using Different Cumulus Convective Schemes. Atmospheric Research. 271: 106116.

  75. Gao Y. C., H. Liao, H. S. Chen, et al. 2022g. Composite Analysis of Aerosol Direct Radiative Effects on Meteorology During Wintertime Severe Haze Events in the Norm China Plain. Journal of Geophysical Research-Atmospheres. 127(18): e2022JD036902.

  76. Gao Y. X., P. C. Hsu, S. J. Che, et al. 2022. Origins of Intraseasonal Precipitation Variability over North China in the Rainy Season. Journal of Climate. 35(18): 6219-6236.

  77. Gao Y., D. Chen, H. J. Wang, et al. 2022f. Effect of Interdecadal Variation in Southern Indian Ocean SST on the Relationship between ENSO and Summer Precipitation in the Asian-Pacific Monsoon Region. Journal of Geophysical Research-Atmospheres. 127(16): e2021JD036151.

  78. Garfinkel C. I., E. P. Gerber, O. Shamir, et al. 2022. A QBO Cookbook: Sensitivity of the Quasi-Biennial Oscillation to Resolution, Resolved Waves, and Parameterized Gravity Waves. Journal of Advances in Modeling Earth Systems. 14(3): e2021MS002568.

  79. Ge J., Q. Liu, B. L. Zan, et al. 2022. Deforestation Intensifies Daily Temperature Variability in the Northern Extratropics. Nature Communications. 13(1): 5955.

  80. Ge Z. A., L. Chen, T. Li, et al. 2022. How Frequently Will the Persistent Heavy Rainfall over the Middle and Lower Yangtze River Basin in Summer 2020 Happen under Global Warming? Advances in Atmospheric Sciences. 39(10): 1673-1692.

  81. Gnitou G. T., G. R. Tan, H. M. Yan, et al. 2022. Resolution-Sensitive Added Value Analysis of CORDEX-CORE RegCM4-7 Past Seasonal Precipitation Simulations over Africa Using Satellite-Based Observational Products. Remote Sensing. 14(9): 2102.

  82. Gong Y. F., F. Zhou, C. Wang, et al. 2022a. Interdecadal Change in the Relationship between the Winter Siberian High and Summer Tropical Cyclone Genesis Frequency over the Western North Pacific. Atmosphere. 13(9): 1342.

  83. Gong Y. H., T. Li. 2022. Comparison of Southward Shift Mechanisms of Equatorial Westerly Anomalies between EP and CP El Nino. Climate Dynamics. doi: 10.1007/s00382-022-06346-6.

  84. Gong Z. S., Y. Y. Liu, Z. Z. Hu, et al. 2022b. Tropical Cyclone Activities over the Western North Pacific in Summer 2020: Transition from Silence in July to Unusually Active in August. Frontiers in Earth Science. 10: 843990.

  85. Gu J. Y., Q. L. Zhang, J. Li, et al. 2022. Effect of Number and Configuration of Participating Stations on Lightning Location Outside the Network. Remote Sensing. 14(17): 4242.

  86. Ha Y., Z. Zhong, H. K. Zhao, et al. 2022. A Climatological Perspective on Extratropical Synoptic-Scale Transient Eddy Activity Response to Western Pacific Tropical Cyclones. Advances in Atmospheric Sciences. 39(2): 333-343.

  87. Hamadalnel M., Z. W. Zhu, A. Gaber, et al. 2022. Possible Changes in Sudan's Future Precipitation under the High and Medium Emission Scenarios Based on Bias Adjusted GCMs. Atmospheric Research. 269: 106036.

  88. Han L. F., L. H. Wang, H. M. Chen, et al. 2022. Impacts of Long-Term Urbanization on Summer Rainfall Climatology in Yangtze River Delta Agglomeration of China. Geophysical Research Letters. 49(13): e2021GL097546.

  89. Han T. T., G. W. Tang, B. T. Zhou, et al. 2022. Strengthened Relationship between Sea Ice in East Siberian Sea and Midsummer Rainfall in Northeast China. Climate Dynamics. doi: 10.1007/s00382-022-06537-1.

  90. Hao J. W., E. Lu. 2022a. The Consistent Variations of Precipitable Water and Surface Water Vapor Pressure at Interannual and Long-Term Scales: An Examination Using Reanalysis. Atmosphere. 13(9): 1350.

  91. Hao J. W., E. Lu. 2022b. Variation of Relative Humidity as Seen through Linking Water Vapor to Air Temperature: An Assessment of Interannual Variations in the near-Surface Atmosphere. Atmosphere. 13(8): 1171.

  92. He C., W. Zhou, T. Li, et al. 2022. East Asian Summer Monsoon Enhanced by COVID-19. Climate Dynamics. 59(9-10): 2965-2978.

  93. He J. Y., J. J. Luo, T. Doi, et al. 2022. Understanding Extremely Pluvial Winters over Yangtze-Huia River Basin in China: Their Complexity and Tropical Oceans Influences. Climate Dynamics. doi: 10.1007/s00382-022-06614-5.

  94. He J., Y. Shi, B. Y. Zhou, et al. 2022. Variational Quality Control of Non-Gaussian Innovations and Its Parametric Optimizations for the GRAPES m3DVAR System. Frontiers of Earth Science. doi: 10.1007/s11707-021-0962-1.

  95. He W. Y., B. Sun, J. H. Ma, et al. 2022. Interdecadal Variation in Atmospheric Water Vapour Content over East Asia During Winter and the Relationship with Autumn Arctic Sea Ice. International Journal of Climatology. 42(16): 8868-8881.

  96. Hong J. S., S. W. Yeh, Y. M. Yang. 2022. Interbasin Interactions between the Pacific and Atlantic Oceans Depending on the Phase of Pacific Decadal Oscillation and Atlantic Multidecadal Oscillation. Journal of Climate. 35(9): 2883-2894.

  97. Hong J., W. K. Wang, Z. X. Bai, et al. 2022a. The Long-Term Trends and Interannual Variability in Surface Ozone Levels in Beijing from 1995 to 2020. Remote Sensing. 14(22): 5726.

  98. Hong Y. H., F. Cao, M. Y. Fan, et al. 2022b. Impacts of Chemical Degradation of Levoglucosan on Quantifying Biomass Burning Contribution to Carbonaceous Aerosols: A Case Study in Northeast China. Science of the Total Environment. 819: 152007.

  99. Hongming Y., Y. Yuan, T. Guirong, et al. 2022. Possible Impact of Sudden Stratospheric Warming on the Intraseasonal Reversal of the Temperature over East Asia in Winter 2020/21. Atmospheric Research. 268: 106016.

  100. Hou W. H., J. Y. Gu, Y. J. Wang, et al. 2022. Remote Measurement of the Lightning Impulse Charge Moment Change Using the Fast Electric Field Antenna. Remote Sensing. 14(3): 724.

  101. Hsu P. C., J. H. Xie, J. Y. Lee, et al. 2023. Multiscale Interactions Driving the Devastating Floods in Henan Province, China During July 2021. Weather and Climate Extremes. 39: 100541.

  102. Hu D. Z., Z. Y. Guan. 2022. Relative Effects of the Greenhouse Gases and Stratospheric Ozone Increases on Temperature and Circulation in the Stratosphere over the Arctic. Remote Sensing. 14(14): 3447.

  103. Hu H. B., Y. H. Deng, J. B. Fang, et al. 2022. Mechanism of Regional Subseasonal Precipitation in the Strongest and Weakest East Asian Summer Monsoon Subseasonal Variation Years. Journal of Ocean University of China. 21(6): 1411-1427.

  104. Hu J. G., X. Gao, R. C. Ren, et al. 2022a. On the Relationship between the Stratospheric Quasi-Biennial Oscillation and Summer Precipitation in Northern China. Geophysical Research Letters. 49(9): e2021GL097687.

  105. Hu J. G., Z. X. Liu, H. M. Xu, et al. 2022. On the Spring Stratospheric Final Warming in CMIP5 and CMIP6 Models. Science China-Earth Sciences. 66(1): 129-145.

  106. Hu S. Q., W. J. Zhang, F. Jiang, et al. 2022. Understanding the Sub-Seasonal Variation in the Wintertime AO Spatial Pattern from the Viewpoint of El Nino-Southern Oscillation. Climate Dynamics. doi: 10.1007/s00382-022-06533-5.

  107. Hu Y. P., B. T. Zhou, T. T. Han, et al. 2022. In-Phase Variations of Spring and Summer Droughts over Northeast China and Their Relationship with the North Atlantic Oscillation. Journal of Climate. 35(21): 3323-3337.

  108. Hu Y., X. C. Wang, J. J. Luo, et al. 2022. Forecasts of MJO during DYNAMO in a Coupled Tropical Channel Model, Part I: Impact of Parameterization Schemes. International Journal of Climatology. 42(13): 6771-6792.

  109. Hu Y., X. C. Wang, J. J. Luo, et al. 2022b. Forecasts of MJO during DYNAMO in a Coupled Tropical Channel Model: Impact of Planetary Boundary Layer Schemes. Atmosphere. 13(5): 666.

  110. Hua W. J., A. G. Dai, H. S. Chen. 2022. Little Influence of Asian Anthropogenic Aerosols on Summer Temperature in Central East Asia since 1960. Geophysical Research Letters. 49(7): e2022GL097946.

  111. Hua W. J., A. G. Dai, M. H. Qin. 2022. Reconciling Roles of External Forcing and Internal Variability in Indian Ocean Decadal Variability since 1920. Geophysical Research Letters. 49(9): e2021GL097198.

  112. Huang C., C. Bai, S. X. Chan, et al. 2022a. MMSTN: A Multi-Modal Spatial-Temporal Network for Tropical Cyclone Short-Term Prediction. Geophysical Research Letters. 49(4): e2021GL096898.

  113. Huang H., Q. Q. Li, K. Zhao, et al. 2022b. Microphysical Characteristics of the Phase-Locking VRW-Induced Asymmetric Convection in the Outer Eyewall of Super Typhoon Lekima (2019). Geophysical Research Letters. 49(9): e2021GL096869.

  114. Huang Q. J., B. Y. Guo, X. Y. Ge. 2022d. Simulations on Multiple Tropical Cyclones Event Associated with Monsoon Trough over the Western North Pacific. Meteorological Applications. 29(6): e2104.

  115. Huang Q. J., X. Y. Ge, M. Peng, et al. 2022. Sensitivity Analysis of the Super Heavy Rainfall Event in Henan on 20 July (2021) Using ECMWF Ensemble Forecasts. Journal of Tropical Meteorology. 28(3): 308-325.

  116. Huang Q. J., X. Y. Ge, M. Y. Bi. 2022c. Simulation of Rapid Intensification of Super Typhoon Lekima (2019). Part Ii: The Critical Role of Cloud-Radiation Interaction of Asymmetric Convection. Frontiers in Earth Science. 9: 832670.

  117. Huang X. L., L. Hao, G. Sun, et al. 2022e. Urbanization Aggravates Effects of Global Warming on Local Atmospheric Drying. Geophysical Research Letters. 49(2): e2021GL095709.

  118. Huang Y. J., X. L. Ma, Y. Ma, et al. 2022f. Heavy Precipitation Events in Northwestern China Induced by Northeastward Plateau Vortex: Two Cases Comparison. Frontiers in Earth Science. 10: 965005.

  119. Huang Z. C., W. J. Zhang, C. Liu, et al. 2022. Extreme Indian Ocean DIPOle Events Associated with El Nino and Madden-Julian Oscillation. Climate Dynamics. 59(7-8): 1953-1968.

  120. Huo L. W., Z. Y. Guan, D. C. Jin, et al. 2022. The Interdecadal Variations and Causes of the Relationship between Autumn Precipitation Anomalies in Eastern China and SSTA over the Southeastern Tropical Indian Ocean. Climate Dynamics. doi: 10.1007/s00382-022-06348-4.

  121. Huo W., F. Yang, X. F. Zhi, et al. 2022b. A Comparative Study on the Difference in Meteorological Monitoring between Constructed Green Land and Natural Sandy Land. Sustainability. 14(3): 1076.

  122. Huo W., F. Yang, Y. Wu, et al. 2022a. Influence of Topographic Relief on Sand Transport in the near-Surface Layer During Dust Storms in the Taklimakan Desert. Frontiers in Environmental Science. 10: 931529.

  123. Huo W., X. F. Zhi, S. Q. Hu, et al. 2022c. Refined Assessment of Potential Evapotranspiration in the Tarim Basin. Frontiers in Earth Science. 10: 904129.

  124. Iyakaremye V., G. Zeng, I. Ullah, et al. 2022. Recent Observed Changes in Extreme High-Temperature Events and Associated Meteorological Conditions over Africa. International Journal of Climatology. 42(9): 4522-4537.

  125. Javed Z., M. Bilal, Z. F. Qiu, et al. 2022. Spatiotemporal Characterization of Aerosols and Trace Gases over the Yangtze River Delta Region, China: Impact of Trans-Boundary Pollution and Meteorology. Environmental Sciences Europe. 34(1): 86.

  126. Ji L. Y., X. F. Zhi, B. Schalge, et al. 2022a. Dynamic Downscaling Ensemble Forecast of an Extreme Rainstorm Event in South China by Cosmo Eps. Frontiers in Earth Science. 10: 969742.

  127. Ji Y., X. F. Zhi, L. Y. Ji, et al. 2022b. Deep-Learning-Based Post-Processing for Probabilistic Precipitation Forecasting. Frontiers in Earth Science. 10: 978041.

  128. Jia L., F. M. Ren, C. C. Ding, et al. 2022. Improvement of the Ensemble Methods in the Dynamical-Statistical-Analog Ensemble Forecast Model for Landfalling Typhoon Precipitation. Journal of the Meteorological Society of Japan. 100(3): 575-592.

  129. Jia L., F. M. Ren, C. C. Ding, et al. 2022. Improving the Forecast Performance of the DSAEF_LTP Model by Incorporating TC Translation Speed Similarity. Weather and Forecasting. 37(10): 1855-1865.

  130. Jiang F., W. J. Zhang. 2022. Understanding the Complicated Relationship between ENSO and Wintertime North Tropical Atlantic SST Variability. Geophysical Research Letters. 49(5): e2022GL097889.

  131. Jiang L. S., T. Li, Y. G. Ham. 2022a. Critical Role of Tropical North Atlantic SSTA in Boreal Summer in Affecting Subsequent ENSO Evolution. Geophysical Research Letters. 49(8): e2021GL097606.

  132. Jiang N. X., Q. Yan, H. J. Wang, et al. 2022b. Earlier Onset and Shortened Meiyu Season During the Last Interglacial Based on Dynamical Downscaling Simulations. Geophysical Research Letters. 49(24): e2022GL101048.

  133. Jiang N. X., Q. Yan, H. J. Wang. 2022. Deciphering the Variations and Mechanisms of the Westerly Jets across the Northern Hemisphere During the Last Interglacial Based on  PMIP4 Models. Climate Dynamics. 58(11-12): 3279-3295.

  134. Jiang W. H., H. P. Chen, Z. Q. Shi. 2022. Anthropogenic Influence on Extreme Temperature Changes over the Mid-High Latitudes of Asia. International Journal of Climatology. 42(16): 8619-8631.

  135. Jing X., J. Yang, T. Li, et al. 2022. Pre-Activation of Ice Nucleating Particles in Deposition Nucleation Mode: Evidence from Measurement Using a Static Vacuum Water Vapor Diffusion Chamber in Xinjiang, China. Geophysical Research Letters. 49(15): e2022GL099468.

  136. Jo H. S., Y. G. Ham, J. S. Kug, et al. 2022. Southern Indian Ocean DIPOle as a Trigger for Central Pacific El Nino since the 2000s. Nature Communications. 13(1): 6965.

  137. Kebacho L. L., H. S. Chen. 2022. The Dominant Modes of the Long Rains Interannual Variability over Tanzania and Their Oceanic Drivers. International Journal of Climatology. 42(10): 5273-5292.

  138. Kong X. H., A. H. Wang, X. Q. Bi, et al. 2022. The Hourly Precipitation Frequencies in the Tropical-Belt Version of WRF: Sensitivity to Cumulus Parameterization and Radiation Schemes. Journal of Climate. 35(1): 285-304.

  139. Lan H. T., D. L. Guo, W. Hua, et al. 2022. Evaluation of Reanalysis Air Temperature and Precipitation in High-Latitude Asia Using Ground-Based Observations. International Journal of Climatology. doi: 10.1002/joc.7937.

  140. Li C. H., J. Wang, J. H. He. 2022. Impacts of Atmospheric Circulations on the Interannual Variability of Springtime Haze Frequency in the Pearl River Delta Region, China. Theoretical and Applied Climatology. 150(3-4): 1643-1657.

  141. Li H., X. Y. Ge, M. L. D. Peng, et al. 2022. The Influences of Monsoon Trough on the Relative Motion of Binary Tropical Cyclones. Journal of the Meteorological Society of Japan. 100(5): 729-749.

  142. Li J. D., X. Hao, H. Liao, et al. 2022. Winter Particulate Pollution Severity in North China Driven by Atmospheric Teleconnections. Nature Geoscience. 15(5): 349-+.

  143. Li J. D., X. Hao, H. Liao, et al. 2022b. Predominant Type of Dust Storms That Influences Air Quality over Northern China and Future Projections. Earths Future. 10(6): e2022EF002649.

  144. Li J. J., Y. J. Zou, Y. F. Zhang, et al. 2022c. Risk Assessment of Snow Disasters for Animal Husbandry on the Qinghai-Tibetan Plateau and Influences of Snow Disasters on the Well-Being of Farmers and Pastoralists. Remote Sensing. 14(14): 3358.

  145. Li J., B. Z. Dai, J. H. Zhou, et al. 2022a. Preliminary Application of Long-Range Lightning Location Network with Equivalent Propagation Velocity in China. Remote Sensing. 14(3): 560.

  146. Li M., C. Li, Z. H. Jiang, et al. 2022f. Deciphering China's Complex Pattern of Summer Precipitation Trends. Earths Future. 10(9): e2022EF002797.

  147. Li M., Q. H. Sun, M. A. A. Lovino, et al. 2022g. Non-Uniform Changes in Different Daily Precipitation Events in the Contiguous United States. Weather and Climate Extremes. 35: 100417.

  148. Li M., R. H. Chu, X. Z. Sha, et al. 2022d. How Has the Recent Climate Change Affected the Spatiotemporal Variation of Reference Evapotranspiration in a Climate Transitional Zone of Eastern China? Isprs International Journal of Geo-Information. 11(5): 300.

  149. Li M., R. H. Chu, X. Z. Sha, et al. 2022e. Monitoring 2019 Drought and Assessing Its Effects on Vegetation Using Solar-Induced Chlorophyll Fluorescence and Vegetation Indexes in the Middle and Lower Reaches of Yangtze River, China. Remote Sensing. 14(11): 2569.

  150. Li T., Y. H. Wang, B. Wang, et al. 2022. Distinctive South and East Asian Monsoon Circulation Responses to Global Warming. Science Bulletin. 67(7): 762-770.

  151. Li W. K., J. M. Song, P. C. Hsu, et al. 2022. Evaluation of the Forecast Performance for Week-2 Winter Surface Air Temperature from the Model for Prediction across Scales-Atmosphere (Mpas-a). Weather and Forecasting. 37(11): 2035-2047.

  152. Li W. L., X. Hao, L. Wang, et al. 2022. Detection and Attribution of Changes in Thermal Discomfort over China During 1961-2014 and Future Projections. Advances in Atmospheric Sciences. 39(3): 456-470.

  153. Li W. W., F. Zhang, F. Z. Bao, et al. 2022i. Polarized Discrete Ordinate Adding Approximation for Infrared and Microwave Radiative Transfer. Journal of Quantitative Spectroscopy & Radiative Transfer. 293: 108368.

  154. Li W., Q. R. Wang, H. H. Zhu, et al. 2022h. Influence of Internal Variability on Future Changes in Extreme Wind Speed over North America. Global and Planetary Change. 218: 103968.

  155. Li W., Z. H. Jiang, L. Z. X. Li, et al. 2022. Detection and Attribution of Changes in Summer Compound Hot and Dry Events over Northeastern China with CMIP6 Models. Journal of Meteorological Research. 36(1): 37-48.

  156. Li X., H. Chen, W. Hua, et al. 2022. Modeling the Effects of Realistic Land Cover Changes on Land Surface Temperatures over China. Climate Dynamics. doi: 10.1007/s00382-022-06635-0.

  157. Li X., X. Li, H. D. Ma, et al. 2022j. Reforestation in Southern China Enhances the Convective Afternoon Rainfall During the Post-Flood Season. Frontiers in Environmental Science. 10: 942974.

  158. Li Y. J., S. S. Dhomse, M. P. Chipperfield, et al. 2022. Effects of Reanalysis Forcing Fields on Ozone Trends and Age of Air from a Chemical Transport Model. Atmospheric Chemistry and Physics. 22(16): 10635-10656.

  159. Li Y., J. Y. Wu, J. J. Luo, et al. 2022. Evaluating the Eastward Propagation of the MJO in CMIP5 and CMIP6 Models Based on a Variety of Diagnostics. Journal of Climate. 35(6): 1719-1743.

  160. Li Y., Y. Wang, X. Y. Chen. 2022k. The Influence of a Cold Front and Topography on the Initiation and Maintenance of a Precipitation Convective System in North China: A Case Study. International Journal of Environmental Research and Public Health. 19(15): 9484.

  161. Liang Z. Q., J. Rao, D. Guo, et al. 2022. Northern Winter Stratospheric Polar Vortex Regimes and Their Possible Influence on the Extratropical Troposphere. Climate Dynamics. doi: 10.1007/s00382-022-06494-9.

  162. Liang Z. Q., J. Rao, D. Guo, et al. 2022. Simulation and Projection of the Sudden Stratospheric Warming Events in Different Scenarios by CESM2-WACCM. Climate Dynamics. 59(11-12): 3741-3761.

  163. Liao X. Y., T. Li, C. Ma. 2022. Moist Static Energy and Secondary Circulation Evolution Characteristics During the Rapid Intensification of Super Typhoon Yutu (2007). Atmosphere. 13(7): 1105.

  164. Lin L., C. H. Lu, F. F. Zhou. 2022. Sources of Forecast Errors for Rainstorms in the South China Monsoon Region. Advances in Meteorology. 2022: 3298501.

  165. Lin Y. C., M. Y. Yu, F. Xie, et al. 2022. Anthropogenic Emission Sources of Sulfate Aerosols in Hangzhou, East China: Insights from Isotope Techniques with Consideration of Fractionation Effects between Gas-to-Particle Transformations. Environmental Science & Technology. 56(7): 3905-3914.

  166. Ling F. H., Y. Li, J. J. Luo, et al. 2022. Two Deep Learning-Based Bias-Correction Pathways Improve Summer Precipitation Prediction over China. Environmental Research Letters. 17(12): 124025.

  167. Liu C., W. J. Zhang, F. F. Jin, et al. 2022a. Equatorial Origin of the Observed Tropical Pacific Quasi-Decadal Variability from ENSO Nonlinearity. Geophysical Research Letters. 49(10): e2022GL097903.

  168. Liu D. L., L. J. Wang. 2022. Evaluation of the CAMS-CSM Model in Predicting a Northeast Cold Vortex Event at the Early Onset of 2020 Mei-Yu Season. Atmospheric Research. 280: 106430.

  169. Liu F., B. Wang, Y. Ouyang, et al. 2022b. Intraseasonal Variability of Global Land Monsoon Precipitation and Its Recent Trend. Npj Climate and Atmospheric Science. 5(1): 30.

  170. Liu F., C. Xing, L. Chen, et al. 2022c. Relative Roles of Land and Ocean Cooling in Triggering an El Nino Following Tropical Volcanic Eruptions. Geophysical Research Letters. 49(23):

  171. Liu H. Y., L. J. Wang, Y. F. Dai, et al. 2022d. Relationships between the Southwest Monsoon Surge and the Heavy Rainfall Associated with Landfalling Super Typhoon Rammasun. Atmosphere. 13(1): 130.

  172. Liu L., L. P. Li, G. H. Zhu. 2022e. Effects of Low-Frequency Oscillation at Different Latitudes on Summer Precipitation in Flood and Drought Years in Southern China. Atmosphere. 13(8): 1277.

  173. Liu M. C., D. Z. Hu, Z. Y. Guan. 2022. Modulation of a Long-Lasting Extreme Cold Event in Siberia by a Minor Sudden Stratospheric Warming and the Dynamical Mechanism Involved. Climate Dynamics. doi: 10.1007/s00382-022-06353-7.

  174. Liu P., S. Xia, Z. H. Jiang, et al. 2022f. Evaluation and Projection of the AMO and PDO Variabilities in the CMIP5 Models under Different Warming Scenarios Part2: Projection. Dynamics of Atmospheres and Oceans. 99: 101312.

  175. Liu S. N., J. Wang, H. J. Wang, et al. 2022. Post-Processing of Hydrological Model Simulations Using the Convolutional Neural Network and Support Vector Regression. Hydrology Research. 53(4): 605-621.

  176. Liu X. H., B. Zhu, T. Zhu, et al. 2022h. The Seesaw Pattern of Pm2.5 Interannual Anomalies between Beijing-Tianjin-Hebei and Yangtze River Delta across Eastern China in Winter. Geophysical Research Letters. 49(2): e2021GL095878.

  177. Liu X. H., Q. Q. Li, Y. F. Dai. 2022g. Stronger Vertical Shear Leads to Earlier Secondary Eyewall Formation in Idealized Numerical Simulations. Geophysical Research Letters. 49(10): e2022GL098093.

  178. Liu Y. P., Y. H. Jiang, Q. S. Gao, et al. 2022i. Influences of Soil Water Content and Porosity on Lightning Electromagnetic Fields and Lightning-Induced Voltages on Overhead Lines. Frontiers in Environmental Science. 10: 946551.

  179. Liu Y. P., Y. H. Jiang, Q. S. Gao, et al. 2022j. Characteristic Analysis of Lightning Activities on the Yungui Plateau Using Ground-Based Remote Sensing. Frontiers in Environmental Science. 10: 949271.

  180. Liu Y. S., S. Y. Yang. 2022. The Impact of Mid-High-Latitude Eurasian ISO on Soil Moisture Anomaly in North China During Boreal Summer. Climate Dynamics. doi: 10.1007/s00382-022-06578-6.

  181. Liu Y. W., L. Zhao, G. R. Tan, et al. 2022. Evaluation of Multidimensional Simulations of Summer Air Temperature in China from CMIP5 to CMIP6 by the Bcc Models: From Trends to Modes. Advances in Climate Change Research. 13(1): 28-41.

  182. Liu Y. Y., Z. Z. Hu, R. G. Wu, et al. 2022. Causes and Predictability of the 2021 Spring Southwestern China Severe Drought. Advances in Atmospheric Sciences. 39(10): 1766-1776.

  183. Liu Y. Z., J. Q. Cai, G. R. Tan. 2022k. Multi-Level Circulation Pattern Classification Based on the Transfer Learning Cnn Network. Atmosphere. 13(11): 1861.

  184. Long S. J., X. L. Wei, F. Zhang, et al. 2022. Estimating Daily Ground-Level No2 Concentrations over China Based on TROPOMI Observations and Machine Learning Approach. Atmospheric Environment. 289: 119310.

  185. Long Y., J. Li, Z. W. Zhu, et al. 2022. Predictability of the Anomaly Pattern of Summer Extreme High-Temperature Days over Southern China. Climate Dynamics. 59(3-4): 1027-1041.

  186. Lu C. H., Y. C. Shen, Y. H. Li, et al. 2022. Role of Intraseasonal Oscillation in a Compound Drought and Heat Event over the Middle of the Yangtze River Basin During Midsummer 2018. Journal of Meteorological Research. 36(4): 643-657.

  187. Lu C. H., Y. M. Zhang, Z. Y. Guan. 2022. Winter Anticyclone Activities in Siberia and Their Relationship to the Regional Temperature Anomaly. International Journal of Climatology. 42(12): 6293-6310.

  188. Lu J., L. G. Wu, S. W. Zhou. 2022. Quantifying the Contribution of Track Changes to Interannual Variations of North Atlantic Intense Hurricanes. Advances in Atmospheric Sciences. 39(2): 260-271.

  189. Lu Q., J. Rao, C. H. Shi, et al. 2022. Observational Subseasonal Variability of the Pm2.5 Concentration in the Beijing-Tianjin-Hebei Area During the January 2021 Sudden Stratospheric Warming. Advances in Atmospheric Sciences. 39(10): 1623-1636.

  190. Lu Q., J. Rao, C. H. Shi, et al. 2022. Possible Influence of Sudden Stratospheric Warmings on the Atmospheric Environment in the Beijing-Tianjin-Hebei Region. Atmospheric Chemistry and Physics. 22(19): 13087-13102.

  191. Lu Z. C., T. B. Zhao, W. C. Zhou, et al. 2022. Interdecadal Variation of the Antarctic Circumpolar Wave Based on the 20CRV3 Dataset. Atmosphere. 13(5): 736.

  192. Luo W. G., X. B. Yu. 2022. A Novel Enhanced Cuckoo Search Algorithm for Global Optimization. Journal of Intelligent & Fuzzy Systems. 43(3): 2945-2962.

  193. Lyu Y., S. P. Zhu, X. F. Zhi, et al. 2022b. Subseasonal Forecasts of Precipitation over Maritime Continent in Boreal Summer and the Sources of Predictability. Frontiers in Earth Science. 10: 970791.

  194. Lyu Y., X. F. Zhi, H. Wu, et al. 2022a. Analyses on the Multimodel Wind Forecasts and Error Decompositions over North China. Atmosphere. 13(10): 1652.

  195. Ma C., T. Li. 2022. An Empirical Model of Tropical Cyclone Intensity Forecast in the Western North Pacific. Journal of Meteorological Research. 36(5): 691-702.

  196. Ma H. Y., H. J. Li, M. Zhang, et al. 2022. Impact of Cropland Degradation in the Rural-Urban Fringe on Urban Heat Island and Heat Stress During Summer Heat Waves in the Yangtze River Delta. Advances in Climate Change Research. 13(2): 240-250.

  197. Ma H. Y., Y. Wang, Z. H. Lin. 2022a. Future Changes of Summer Heat Waves over Urban Agglomerations in Eastern China under 1.5 Degrees C and 2.0 Degrees C Global Warming. Frontiers in Earth Science. 10: 823286.

  198. Ma J., H. M. Xu, J. J. Luo, et al. 2022. Impact of Tropical Atlantic SST Anomaly on ENSO in the NUIST-CFS1.0 Hindcasts. International Journal of Climatology. 42(12): 6055-6071.

  199. Ma M. Y., M. S. Peng, T. Li, et al. 2022. Understanding the Unusual Track of Typhoon Lionrock (2016). Weather and Forecasting. 37(4): 393-414.

  200. Ma Q. R., R. Hu, Y. P. Wu, et al. 2022. Variations in July Extreme Precipitation in Henan Province and the Related Mechanisms. International Journal of Climatology. 42(16): 9115-9130.

  201. Ma S. P., J. Cao, H. J. Zhao, et al. 2022b. Decomposition of Water Vapor Flux Divergence and Its Application to a Blizzard Event over Ili Valley in Central Asia During 30 Nov to 1 Dec 2018. Atmospheric Research. 270: 106079.

  202. Ma S. P., L. K. Ran, J. Cao, et al. 2022. Characteristics for the Sources and Sinks of Gravity Waves in an Orographic Heavy Snowfall Event. Frontiers of Earth Science. doi: 10.1007/s11707-021-0961-2.

  203. Ma W. L., L. Zhu, X. Feng, et al. 2022. Impacts of the Boreal Summer Intraseasonal Oscillation on the Warm-Season Rainfall over Hainan Island. Journal of Tropical Meteorology. 28(4): 457-472.

  204. Ma Y., H. W. Yang, Z. R. Deng, et al. 2022c. Intra-Seasonal Variability of Autumn Rainfall in the Yangtze River Delta and Its Related Atmospheric Circulations. Atmospheric Research. 278: 106363.

  205. Makula E. K., B. T. Zhou. 2022. Linkage of Tanzania Short Rain Variability to Sea Surface Temperature over the Southern Oceans. Frontiers in Earth Science. 10: 922172.

  206. Mao X., H. L. Ren, G. Liu. 2022a. Primary Interannual Variability Patterns of the Growing-Season NDVI over the Tibetan Plateau and Main Climatic Factors. Remote Sensing. 14(20): 5183.

  207. Mao Y. H., S. K. Yu, Y. J. Shang, et al. 2022b. Response of Summer Ozone to Precursor Emission Controls in the Yangtze River Delta Region. Frontiers in Environmental Science. 10: 864897.

  208. Mehmood K., S. Mushtaq, Y. S. Bao, et al. 2022. The Impact of COVID-19 Pandemic on Air Pollution: A Global Research Framework, Challenges, and Future Perspectives. Environmental Science and Pollution Research. 29(35): 52618-52634.

  209. Mehmood K., Y. S. Bao, S. Bibi, et al. 2022a. Contributions of Open Biomass Burning and Crop Straw Burning to Air Quality: Current Research Paradigm and Future Outlooks. Frontiers in Environmental Science. 10: 852492.

  210. Mehmood K., Y. S. Bao, S. Mushtaq, et al. 2022b. Perspectives from Remote Sensing to Investigate the COVID-19 Pandemic: A Future-Oriented Approach. Frontiers in Public Health. 10: 938811.

  211. Mehmood K., Y. S. Bao, Saifullah, et al. 2022c. Predicting the Quality of Air with Machine Learning Approaches: Current Research Priorities and Future Perspectives. Journal of Cleaner Production. 379: 134656.

  212. Meng D. M., Y. D. Chen, J. Li, et al. 2022. The Potential Value of Combining Assimilation of Water Vapor Radiances and Cloud Liquid/Ice Water Path from Abi on Analyses and Forecasts for Hurricane Irma (2017). Journal of Geophysical Research-Atmospheres. 127(19): e2022JD036910.

  213. Miao J. X., H. Y. Gao, L. L. Kou, et al. 2022. A Case Study of Midlatitude Noctilucent Clouds and Its Relationship to the Secondary-Generation Gravity Waves over Tropopause Inversion Layer. Journal of Geophysical Research-Atmospheres. 127(17): e2022JD036912.

  214. Murakmai H., T. L. Delworth, W. F. Cooke, et al. 2022. Increasing Frequency of Anomalous Precipitation Events in Japan Detected by a Deep Learning Autoencoder. Earths Future. 10(4): e2021EF002481.

  215. Ngoma H., B. Ayugi, C. Onyutha, et al. 2022. Projected Changes in Rainfall over Uganda Based on CMIP6 Models. Theoretical and Applied Climatology. 149(3-4): 1117-1134.

  216. Nicholson S. E., D. A. Klotter, L. M. Zhou, et al. 2022. Recent Rainfall Conditions in the Congo Basin. Environmental Research Letters. 17(5): 054052.

  217. Nooni I. K., G. R. Tan, H. M. Yan, et al. 2022. Assessing the Performance of WRF Model in Simulating Heavy Precipitation Events over East Africa Using Satellite-Based Precipitation Product. Remote Sensing. 14(9): 1964.

  218. Nyasulu M., M. M. Haque, B. Musonda, et al. 2022. The Long-Term Spatial and Temporal Distribution of Aerosol Optical Depth and Its Associated Atmospheric Circulation over Southeast Africa. Environmental Science and Pollution Research. 29(20): 30073-30089.

  219. Ojara M. A., Y. S. Lou, H. Babaousmail, et al. 2022. Evaluation of Drought, Wet Events, and Climate Variability Impacts on Maize Crop Yields in East Africa During 1981-2017. International Journal of Plant Production. 16(1): 41-62.

  220. Pan M. T., X. F. Zhi, Z. Y. Liu, et al. 2022. Statistical Calibrations to Improve the 2-5-Year Prediction Skill for SST over the North Atlantic. Meteorology and Atmospheric Physics. 134(3): 52.

  221. Pang B., R. Y. Lu, R. C. Ren. 2022. Impact of the Scandinavian Pattern on Long-Lived Cold Surges over the South China Sea. Journal of Climate. 35(6): 1773-1785.

  222. Park J. H., J. S. Kug, Y. M. Yang, et al. 2022. Role of the Climatological North Pacific High in the North Tropical Atlantic-ENSO Connection. Journal of Climate. 35(20): 3215-3226.

  223. Peng X. B., M. Yu, H. S. Chen. 2022. Projected Changes in Terrestrial Vegetation and Carbon Fluxes under 1.5 Degrees C and 2.0 Degrees C Global Warming. Atmosphere. 13(1): 42.

  224. Pu Y. N., M. Zhang, L. Jia, et al. 2022. Methane Emission of a Lake Aquaculture Farm and Its Response to Ecological Restoration. Agriculture Ecosystems & Environment. 330: 107883.

  225. Qian D. W., Y. Y. Huang, H. J. Wang. 2022. A Preliminary Attempt on Decadal Prediction of the East Asian Summer Monsoon. Theoretical and Applied Climatology. 148(3-4): 1499-1511.

  226. Qian Y. T., P. C. Hsu, J. C. Yuan, et al. 2022b. Effects of Subseasonal Variation in the East Asian Monsoon System on the Summertime Heat Wave in Western North America in 2021. Geophysical Research Letters. 49(8): e2021GL097659.

  227. Qian Y., P. C. Hsu, Z. Fu, et al. 2022a. Decadal Change of Meiyu Onset over Yangtze River and Its Causes. Sustainability. 14(9): 5085.

  228. Qianrong M., J. Fang, W. Xiaoxue, et al. 2022. Characteristics and Related Mechanisms of the Persistent Extreme Precipitation in August 2020 over Western China. Frontiers in Earth Science. 10: 1004612.

  229. Qin L. Y., Y. D. Chen, G. Ma, et al. 2022. Assimilation of Fy-3D Mwts-Ii Radiance with 3D Precipitation Detection and the Impacts on Typhoon Forecasts. Advances in Atmospheric Sciences. doi: 10.1007/s00376-022-1252-x.

  230. Qin M. H., A. G. Dai, W. J. Hua. 2022. Influence of Anthropogenic Warming on the Atlantic Multidecadal Variability and Its Impact on Global Climate in the Twenty-First Century in the MPI-GE Simulations. Journal of Climate. 35(9): 2805-2821.

  231. Qiu D., S. X. Yao, Y. C. Xia. 2022. Pre-Summer Persistent Heavy Rain over Southern China and Its Relationship with Intra-Seasonal Oscillation of Tropical Atmosphere. Journal of Tropical Meteorology. 28(4): 445-456.

  232. Qu Y. W., M. Zhao, T. J. Wang, et al. 2022. Lidar- and Uav-Based Vertical Observation of Spring Ozone and Particulate Matter in Nanjing, China. Remote Sensing. 14(13): 3051.

  233. Rao J., C. I. Garfinkel, T. W. Wu, et al. 2022. Mean State of the Northern Hemisphere Stratospheric Polar Vortex in Three Generations of CMIP Models. Journal of Climate. 35(14): 4603-4625.

  234. Rao J., J. Xie, Y. Cao, et al. 2022. Record Flood-Producing Rainstorms of July 2021 and August 1975 in Henan of China: Comparative Synoptic Analysis Using ERA5. Journal of Meteorological Research. 36(6): 809-823.

  235. Rao J., T. W. Wu, C. I. Garfinkel, et al. 2022. Impact of the Initial Stratospheric Polar Vortex State on East Asian Spring Rainfall Prediction in Seasonal Forecast Models. Climate Dynamics. doi: 10.1007/s00382-022-06551-3.

  236. Ren H. L., F. Zhou, Y. Nie, et al. 2022. Dynamic Synoptic Eddy Feedbacks Contributing to Maintenance and Propagation of Intraseasonal Nao. Geophysical Research Letters. 49(2): e2021GL096508.

  237. Shao W., M. J. Li, Y. Wu, et al. 2022. Identification of Varied Soil Hydraulic Properties in a Seasonal Tropical Rainforest. Catena. 212: 106104.

  238. Shen Z. L., A. M. Duan, D. L. Li, et al. 2022. Quantifying the Contribution of Internal Atmospheric Drivers to near-Term Projection Uncertainty in September Arctic Sea Ice. Journal of Climate. 35(11): 3427-3443.

  239. Sheng L., D. Y. Liu, B. H. Wang, et al. 2022. Temporal Variations Characteristic of Precipitation in the Three Gorges Reservoir Area from 1961 to 2016. Journal of Water and Climate Change. 13(4): 1765-1775.

  240. Shi F., C. Sun, A. Guion, et al. 2022b. Roman Warm PerIOD and Late Antique Little Ice Age in an Earth System Model Large Ensemble. Journal of Geophysical Research-Atmospheres. 127(16): e2021JD035832.

  241. Shi F., H. Goosse, J. P. Li, et al. 2022a. Interdecadal to Multidecadal Variability of East Asian Summer Monsoon over the Past Half Millennium. Journal of Geophysical Research-Atmospheres. 127(20): e2022JD037260.

  242. Shi L., R. Q. Ding, S. J. Hu, et al. 2022c. Influence of the North Pacific Victoria Mode on the Spring Persistence Barrier of ENSO. Journal of Geophysical Research-Atmospheres. 127(9): e2021JD036206.

  243. Shi N., Y. C. Wang, Suolangtajie. 2022. Energetics of Boreal Wintertime Blocking Highs around the Ural Mountains. Journal of Meteorological Research. 36(1): 154-174.

  244. Shi S. S., B. Zhu, G. Q. Tang, et al. 2022d. Observational Evidence of Aerosol Radiation Modifying Photochemical Ozone Profiles in the Lower Troposphere. Geophysical Research Letters. 49(15): e2022GL099274.

  245. Shi Y. N., W. W. Li, K. Wu, et al. 2022e. A Broadband Infrared Radiative Transfer Scheme Including the Effect Related to Vertically Inhomogeneous Microphysical Properties inside Water Clouds. Journal of Quantitative Spectroscopy & Radiative Transfer. 285: 108160.

  246. Sian K., D. F. T. Hagan, B. O. Ayugi, et al. 2022. Projections of Precipitation Extremes Based on Bias-Corrected Coupled Model Intercomparison Project Phase 6 Models Ensemble over Southern Africa. International Journal of Climatology. 42(16): 8269-8289.

  247. Song K. X., J. W. Zhao, R. F. Zhan, et al. 2022. Confidence and Uncertainty in Simulating Tropical Cyclone Long-Term Variability Using the CMIP6-HighResMIP. Journal of Climate. 35(19): 2829-2849.

  248. Song L. X., F. F. Shen, C. L. Shao, et al. 2022a. Impacts of 3DEnVar-Based FY-3D MWHS-2 Radiance Assimilation on Numerical Simulations of Landfalling Typhoon Ampil (2018). Remote Sensing. 14(23): 6037.

  249. Song M. E., L. Chen. 2022. Responses of Tropical Background State and ENSO Behaviors to Mid-Holocene Forcing Simulated by  PMIP3 and  PMIP4 Models. Frontiers in Earth Science. 10: 853577.

  250. Song Y. D., H. S. Chen, J. Q. Yang. 2022b. The Dominant Modes of Spring Land Surface Temperature over Western Eurasia and Their Possible Linkages with Large-Scale Atmospheric Teleconnection Patterns. Journal of Geophysical Research-Atmospheres. 127(4): e2021JD035720.

  251. Song Y. M., A. N. Huang, H. S. Chen. 2022. The Storage of Antecedent Precipitation and Air Temperature Signals in Soil Temperature over China. Journal of Hydrometeorology. 23(3): 377-388.

  252. Song Z. Y., B. T. Zhou. 2022. CMIP6 Projected Response of the East Asian Winter Climate to the Sea Ice-Free Arctic. International Journal of Climatology. doi: 10.1002/joc.7931.

  253. Song Z. Y., J. Y. Zhang. 2022. Weekend Effect in Summertime Temperature and Precipitation over the Yangtze River Delta Region. Theoretical and Applied Climatology. 150(1-2): 379-388.

  254. Sun D. Y., W. Y. Huang, Y. Luo, et al. 2022a. A Deep Learning-Based Bias Correction Method for Predicting Ocean Surface Waves in the Northwest Pacific Ocean. Geophysical Research Letters. 49(23): e2022GL100916.

  255. Sun F., S. W. Zhou, C. Yang, et al. 2022b. Activity Characteristics of the Northeast Moving Tibetan Plateau Vortices in Summer. Atmospheric Research. 272: 106141.

  256. Sun J. J., M. M. Qin, X. D. Xie, et al. 2022. Seasonal Modeling Analysis of Nitrate Formation Pathways in Yangtze River Delta Region, China. Atmospheric Chemistry and Physics. 22(18): 12629-12646.

  257. Sun S. L., D. C. Zhou, H. S. Chen, et al. 2022. Decreases in the Urban Heat Island Effect During the Coronavirus Disease 2019 (COVID-19) Lockdown in Wuhan, China: Observational Evidence. International Journal of Climatology. 42(16): 8792-8803.

  258. Sun S. L., Y. B. Liu, H. S. Chen, et al. 2022c. Causes for the Increases in Both Evapotranspiration and Water Yield over Vegetated Mainland China During the Last Two Decades. Agricultural and Forest Meteorology. 324: 109118.

  259. Sun T. L., S. X. Yao, Q. Huang. 2022d. The Atmospheric Quasi-Biweekly Oscillation During the Jiangnan Meiyu Onset PerIOD. Frontiers in Earth Science. 10: 986830.

  260. Sun T., J. Z. Sun, Y. D. Chen, et al. 2022. Improving Short-Term Precipitation Forecasting with Radar Data Assimilation and a Multiscale Hybrid Ensemble-Variational Strategy. Monthly Weather Review. 150(9): 2357-2377.

  261. Sun W. Y., B. Wang, J. Liu, et al. 2022e. Recent Changes of Pacific Decadal Variability Shaped by Greenhouse Forcing and Internal Variability. Journal of Geophysical Research-Atmospheres. 127(8): e2021JD035812.

  262. Sun X. J., S. Y. Li, J. X. L. Wang, et al. 2022. A New Method of Significance Testing for Correlation-Coefficient Fields and Its Application. Advances in Atmospheric Sciences. 39(3): 529-535.

  263. Sun X. T., Q. H. Ding, S. Y. S. Wang, et al. 2022f. Enhanced Jet Stream Waviness Induced by Suppressed Tropical Pacific Convection During Boreal Summer. Nature Communications. 13(1): 1288.

  264. Sun X. Y., Y. D. Wang. 2022a. Attribution Analysis of Annual Precipitation Simulation Differences and Its Correction of CMIP5 Climate Models on the Chinese Mainland. Atmosphere. 13(3): 382.

  265. Sun X. Y., Y. D. Wang. 2022b. Comparisons of the Synoptic Characteristics of 14-Day Extreme Precipitation Events in Different Regions of Eastern China. Atmosphere. 13(8): 1310.

  266. Tang H. S., J. Wang, K. M. Hu, et al. 2022a. Increasing 2020-Like Boreal Summer Rainfall Extremes over Northeast Indian Subcontinent under Greenhouse Warming. Geophysical Research Letters. 49(11): e2021GL096377.

  267. Tang H., Z. Wang, B. Tang, et al. 2022. Reduced Probability of 2020 June July Persistent Heavy Mei-Yu Rainfall Event in the Middle to Lower Reaches of the Yangtze River Basin under Anthropogenic Forcing. Bulletin of the American Meteorological Society. 103(3): S83-S89.

  268. Tang S. L., J. J. Luo, L. Chen, et al. 2022. Distinct Evolution of the SST Anomalies in the Far Eastern Pacific between the 1997/98 and 2015/16 Extreme El Ninos. Advances in Atmospheric Sciences. 39(6): 927-942.

  269. Tang W. Q., X. Geng, Y. Zhao, et al. 2022. Interpreting the Nonstationary Relationship between El Nino-Southern Oscillation and the Winter Precipitation over Southeast China. International Journal of Climatology. 42(11): 5949-5963.

  270. Tang Y., G. Zeng, X. Y. Yang, et al. 2022b. Intraseasonal Oscillation of Summer Extreme High Temperature in Northeast China and Associated Atmospheric Circulation Anomalies. Atmosphere. 13(3): 387.

  271. Tseng Y. H., J. H. Huang, H. C. Chen. 2022. Improving the Predictability of Two Types of ENSO by the Characteristics of Extratropical Precursors. Geophysical Research Letters. 49(3): e2021GL097190.

  272. Uddin M. J., M. Wahiduzzaman, A. M. T. Islam, et al. 2022. Impacts of Climate Modes on Temperature Extremes over Bangladesh Using Statistical Methods. Meteorology and Atmospheric Physics. 134(2): 24.

  273. Uwimbabazi J., Y. S. Jing, V. Iyakaremye, et al. 2022. Observed Changes in Meteorological Drought Events During 1981-2020 over Rwanda, East Africa. Sustainability. 14(3): 1519.

  274. Wahiduzzaman M., A. Yeasmin. 2022. An Observation of the Changing Trends of a River Channel Pattern in Bangladesh Using Satellite Images. Applied Sciences-Basel. 12(22): 11604.

  275. Wahiduzzaman M., M. A. Ali, K. Cheung, et al. 2022. Impacts of Aerosols and Climate Modes on Tropical Cyclone Frequency over the North Indian Ocean: A Statistical Link Approach. Journal of Climate. 35(8): 2549-2564.

  276. Wan Y., Z. C. Yin, Q. Y. Huo, et al. 2022. Weather Extremes Led to Large Variability in O-3 Pollution and Associated Premature Deaths in East of China. Frontiers in Earth Science. 10: 947001.

  277. Wang B., A. C. Spessa, P. Y. Feng, et al. 2022. Extreme Fire Weather Is the Major Driver of Severe Bushfires in Southeast Australia. Science Bulletin. 67(6): 655-664.

  278. Wang C., B. Wang, L. G. Wu, et al. 2022. A Seesaw Variability in Tropical Cyclone Genesis between the Western North Pacific and the North Atlantic Shaped by Atlantic Multidecadal Variability. Journal of Climate. 35(8): 2479-2489.

  279. Wang C., M. Chen, Y. D. Chen. 2022. Impact of Combined Assimilation of Wind Profiler and Doppler Radar Data on a Convective-Scale Cycling Forecasting System. Monthly Weather Review. 150(2): 431-450.

  280. Wang H. M., B. L. Zan, J. F. Wei, et al. 2022a. Spatiotemporal Characteristics of Soil Moisture and Land-Atmosphere Coupling over the Tibetan Plateau Derived from Three Gridded Datasets. Remote Sensing. 14(22): 5819.

  281. Wang H., J. Zhang, L. Chen, et al. 2022. Relationship between Summer Extreme Precipitation Anomaly in Central Asia and Surface Sensible Heat Variation on the Central-Eastern Tibetan Plateau. Climate Dynamics. 59(3-4): 685-700.

  282. Wang J., F. Jiang, W. M. Ju, et al. 2022b. Enhanced India-Africa Carbon Uptake and Asia-Pacific Carbon Release Associated with the 2019 Extreme Positive Indian Ocean DIPOle. Geophysical Research Letters. 49(22): e2022GL100950.

  283. Wang J., Y. J. Liu, C. Y. Song, et al. 2022. Synergistic Impacts of Westerlies and Monsoon on Interdecadal Variations of Late Spring Precipitation over the Southeastern Extension of the Tibetan Plateau. International Journal of Climatology. 42(14): 7342-7361.

  284. Wang L., J. Jiang, T. Li, et al. 2022. Three Distinct Circulation Patterns That Induce Enhanced Intraseasonal Precipitation Events over South China in Boreal Winter. Climate Dynamics. doi: 10.1007/s00382-022-06478-9.

  285. Wang N., H. L. Ren, Y. Liu, et al. 2022c. Multi-Predictor Ensembles Improving Seasonal Prediction of Summer Rainfall over the Bohai Sea Rim Based on Statistical Downscaling of Bcc_Csm1.1 M. Atmospheric Research. 275: 106221.

  286. Wang R., L. H. Li, L. J. Chen, et al. 2022. Respective Contributions of Precipitation and Potential Evapotranspiration to Long-Term Changes in Global Drought Duration and Intensity. International Journal of Climatology. 42(16): 10126-10137.

  287. Wang S., G. Huang, K. M. Hu, et al. 2022. The Deep Blue Day Is Decreasing in China. Theoretical and Applied Climatology. 147(3-4): 1675-1684.

  288. Wang T. Y., T. Li. 2022. Diversity of MJO Initiation Regions and Processes. Journal of Climate. 35(20): 3121-3140.

  289. Wang T., H. N. Xu, D. B. Jiang, et al. 2022d. Mechanisms of Reduced Mid-Holocene Precipitation in Arid Central Asia as Simulated by  PMIP3/4 Models. Journal of Geophysical Research-Atmospheres. 127(8): e2021JD036153.

  290. Wang T., W. S. Tian, J. K. Zhang, et al. 2022. Surface Ocean Current Variations in the North Pacific Related to Arctic Stratospheric Ozone. Climate Dynamics. 59(9-10): 3087-3111.

  291. Wang W. K., H. Jin, S. G. Ming, et al. 2022. Zonally Asymmetric Influences of the Quasi-Biennial Oscillation on Stratospheric Ozone. Atmospheric Chemistry and Physics. 22(20): 13695-13711.

  292. Wang W., T. M. Li, F. Xin, et al. 2022. An Objective Method for Defining Meiyu Onset in Lower Reaches of the Yangtze River Basin. Journal of Meteorological Research. 36(6): 841-852.

  293. Wang X. J., H. T. Wang, W. T. Lyu, et al. 2022f. First Experimental Verification of Opacity for the Lightning near-Infrared Spectrum. Geophysical Research Letters. 49(13): e2022GL098883.

  294. Wang X. J., W. Q. Xu, L. Y. Hua, et al. 2022. Spectral Analysis and Study on the Channel Temperature of Lightning Continuing Current Process. Spectroscopy and Spectral Analysis. 42(7): 2069-2075.

  295. Wang X., Y. Fan, L. J. Wang, et al. 2022e. The 1-31-Day Predictions of the South China Sea Summer Monsoon in the CAMS-CSM Climate Forecast System. Atmosphere. 13(7): 1051.

  296. Wang Y. B., Y. D. Chen, J. Z. Min. 2022g. Improving the Prediction of Heavy Rainfall with Rapid-Update Dual-Resolution Hybrid En3DVar Assimilation of All-Sky AHI Infrared Water Vapor Radiances. Atmospheric Research. 279: 106352.

  297. Wang Y. C., Z. Y. Han, Y. W. Zhou, et al. 2022h. A Quantitative Reconstruction of Holocene Annual Precipitation in the Marginal Zone of the East Asian Summer Monsoon. Palaeogeography Palaeoclimatology Palaeoecology. 596: 110968.

  298. Wang Y. D., X. Y. Sun. 2022. Features and Evolution of Autumn Weather Regimes in the Southeast China. Atmosphere. 13(10): 1734.

  299. Wang Y. J., J. Q. Zhai, G. Gao, et al. 2022. Risk Assessment of Rainstorm Disasters in the Guangdong-Hong Kong-Macao Greater Bay Area of China During 1990-2018. Geomatics Natural Hazards & Risk. 13(1): 267-288.

  300. Wang Y. J., Y. Xiang, L. C. Song, et al. 2022. Quantifying the Contribution of Urbanization to Summer Extreme High-Temperature Events in the Beijing-Tianjin-Hebei Urban Agglomeration. Journal of Applied Meteorology and Climatology. 61(6): 669-683.

  301. Wang Y. J., Y. Z. Yin, L. C. Song. 2022i. Risk Assessment of Typhoon Disaster Chains in the Guangdong-Hong Kong-Macau Greater Bay Area, China. Frontiers in Earth Science. 10: 839733.

  302. Wang Y. P., J. F. Mao, F. M. Hoffman, et al. 2022j. Quantification of Human Contribution to Soil Moisture-Based Terrestrial Aridity. Nature Communications. 13(1): 6848.

  303. Wei J. F., R. L. Hang, J. J. Luo. 2022. Prediction of Pan-Arctic Sea Ice Using Attention-Based LSTM Neural Networks. Frontiers in Marine Science. 9: 860403.

  304. Wei T., B. Noel, M. H. Ding, et al. 2022. Spatiotemporal Variations of Extreme Events in Surface Mass Balance over Greenland During 1958-2019. International Journal of Climatology. 42(15): 8008-8023.

  305. Wen N., S. J. Liu, L. Z. X. Li. 2022. Diagnosing the Dynamic and Thermodynamic Effects for the Exceptional 2020 Summer Rainy Season in the Yangtze River Valley. Journal of Meteorological Research. 36(1): 26-36.

  306. Wu J. T., J. Li, Z. W. Zhu, et al. 2022. Factors Determining the Subseasonal Prediction Skill of Summer Extreme Rainfall over Southern China. Climate Dynamics. doi: 10.1007/s00382-022-06326-w.

  307. Wu K., C. Wang, L. G. Wu, et al. 2022a. Slowdown in Landfalling Tropical Cyclone Motion in South China. Geophysical Research Letters. 49(21): e2022GL100428.

  308. Wu L. G., H. K. Zhao, C. Wang, et al. 2022. Understanding of the Effect of Climate Change on Tropical Cyclone Intensity: A Review. Advances in Atmospheric Sciences. 39(2): 205-221.

  309. Wu Q. Y., Q. Q. Li, Y. H. Ding, et al. 2022. Asian Summer Monsoon Responses to the Change of Land-Sea Thermodynamic Contrast in a Warming Climate: CMIP6 Projections. Advances in Climate Change Research. 13(2): 205-217.

  310. Wu X. H., Q. H. Zhu, C. Wang, et al. 2022. Contribution of Winter SSTA in the Tropical Eastern Pacific to Changes of Tropical Cyclone Precipitation over Southeast China. Journal of Meteorological Research. 36(2): 282-291.

  311. Wu X. H., X. G. Liu. 2022. A Magnetless 4-Port Circulator and Its Microstrip Implementation. Ieee Transactions on Circuits and Systems Ii-Express Briefs. 69(3): 969-973.

  312. Wu Y. K., C. C. Hong, T. Li, et al. 2022. Role of Low-Frequency Wind Variability in Inducing Wwbs During the Onset of Super El Ninos. Climate Dynamics. doi: 10.1007/s00382-022-06322-0.

  313. Wu Z. Y., J. Cao, W. Zhao, et al. 2022b. An Observational Analysis of a Persistent Extreme Precipitation Event in the Post-Flood Season over a Tropical Island in China. Atmosphere. 13(5): 679.

  314. Xiang B. Q., L. Harris, T. L. Delworth, et al. 2022. S2S Prediction in GFDL SPEAR MJO Diversity and Teleconnections. Bulletin of the American Meteorological Society. 103(2): E463-E484.

  315. Xiang Y. K., X. Dao, M. Gao, et al. 2022. Nitrogen Isotope Characteristics and Source Apportionment of Atmospheric Ammonium in Urban Cities During a Haze Event in Northern China Plain. Atmospheric Environment. 269: 118800.

  316. Xie F., Y. C. Lin, L. Ren, et al. 2022a. Decrease of Atmospheric Black Carbon and CO2 Concentrations Due to COVID-19 Lockdown at the Mt. Waliguan Wmo/Gaw Baseline Station in China. Environmental Research. 211: 112984.

  317. Xie J. H., P. C. Hsu, P. Ray, et al. 2022. Mechanism of MJO-Modulated Triggering on the Rainy Season Onset over the Indian Subcontinent. Monthly Weather Review. 150(8): 1937-1951.

  318. Xie T., L. G. Wu, J. H. Yu. 2022b. Application of Potential Vorticity Tendency Diagnosis Method to High-Resolution Simulation of Tropical Cyclones. Frontiers in Earth Science. 10: 994647.

  319. Xie W. X., B. T. Zhou, Z. Y. Han, et al. 2022c. Substantial Increase in Daytime-Nighttime Compound Heat Waves and Associated Population Exposure in China Projected by the CMIP6 Multimodel Ensemble. Environmental Research Letters. 17(4): 045007.

  320. Xie W. X., B. T. Zhou. 2023. On the Atmospheric Background for the Occurrence of Three Heat Wave Types in East China. Weather and Climate Extremes. 39: 100539.

  321. Xie Z. Q., Y. Du, Q. Miao, et al. 2022d. An Approach to Characterizing the Spatial Pattern and Scale of Regional Heat Islands over Urban Agglomerations. Geophysical Research Letters. 49(22): e2022GL099117.

  322. Xing Y., H. L. Chen, Q. H. Liang, et al. 2022. Improving the Performance of City-Scale Hydrodynamic Flood Modelling through a GIS-based DEM Correction Method. Natural Hazards. 112(3): 2313-2335.

  323. Xu C., J. H. Ma, J. Q. Sun, et al. 2022. Links between Winter Dust over the Tibetan Plateau and Preceding Autumn Sea Ice Variability in the Barents and Kara Seas. Advances in Climate Change Research. 13(6): 896-908.

  324. Xu D. M., G. J. Yang, Z. Wu, et al. 2022a. Evaluate Radar Data Assimilation in Two Momentum Control Variables and the Effect on the Forecast of Southwest China Vortex Precipitation. Remote Sensing. 14(14): 3460.

  325. Xu J. X., J. J. Luo, C. X. Yuan. 2022b. Tropical Indian Ocean Warming Contributes to Arctic Warming. Geophysical Research Letters. 49(23): e2022GL101339.

  326. Xu L., W. Cheng, Z. R. Deng, et al. 2022. Assimilation of the FY-4A AGRI Clear-Sky Radiance Data in a Regional Numerical Model and Its Impact on the Forecast of the "21 Center Dot 7" Henan Extremely Persistent Heavy Rainfall. Advances in Atmospheric Sciences. doi: 10.1007/s00376-022-1380-3.

  327. Xu S. J., L. Qi. 2022. Critical Influence of the Northeast Cold Vortex in Different Positions on Precipitation. Climate Dynamics. doi: 10.1007/s00382-022-06365-3.

  328. Xu X. P., S. P. He, B. T. Zhou, et al. 2022c. Atmospheric Contributions to the Reversal of Surface Temperature Anomalies between Early and Late Winter over Eurasia. Earths Future. 10(8): e2022EF002790.

  329. Xu X. P., S. P. He, B. T. Zhou, et al. 2022d. The Role of Mid-Latitude Westerly Jet in the Impacts of November Ural Blocking on Early-Winter Warmer Arctic-Colder Eurasia Pattern. Geophysical Research Letters. 49(16): e2022GL099096.

  330. Xu Z. Q., H. S. Chen, J. P. Guo, et al. 2022e. Regionalization of the Summertime Planetary Boundary Layer Height in Comparison with Various Reanalysis Datasets over China. Atmospheric Research. 283: 106534.

  331. Xuan Z. L., W. J. Zhang, F. Jiang, et al. 2022. Effective ENSO Amplitude Forecasts Based on Oceanic and Atmospheric Preconditions. Journal of Climate. 35(11): 3279-3291.

  332. Xue C. B., X. Y. Shen, Z. Y. Ding, et al. 2022. Organizational Modes of Spring and Summer Convective Storms and Associated Severe Weather over Southern China During 2015-19. Monthly Weather Review. 150(11): 3031-3049.

  333. Xue C. B., Z. Y. Ding, X. Y. Shen, et al. 2022. Three-Dimensional Wind Field Retrieved from Dual-Doppler Radar Based on a Variational Method: Refinement of Vertical Velocity Estimates. Advances in Atmospheric Sciences. 39(1): 145-160.

  334. Xue J. Q., H. P. Yang, J. J. Luo, et al. 2022b. Ningaloo Nino/Nina in CMIP6 Models: Characteristics, Mechanisms, and Climate Impacts. Geophysical Research Letters. 49(19): e2022GL099781.

  335. Xue J. Q., J. J. Luo, W. J. Zhang, et al. 2022a. ENSO-IOD Inter-Basin Connection Is Controlled by the Atlantic Multidecadal Oscillation. Geophysical Research Letters. 49(24): e2022GL101571.

  336. Yan L., Y. S. Zhou, X. F. Liu, et al. 2022a. Comparative Analyses of the Heavy Rainfall Associated with Landfalling Tropical Cyclones SOULIK (1307) and MARIA (1808) with Similar Routes. Atmospheric Research. 271: 106124.

  337. Yan M. C., X. Yue, B. T. Zhou, et al. 2022b. Projected Changes of Ecosystem Productivity and Their Responses to Extreme Heat Events in Northern Asia. Frontiers in Earth Science. 10: 970296.

  338. Yan Z. X., B. Wu, T. Li, et al. 2022. Mechanisms Determining Diversity of ENSO-Driven Equatorial Precipitation Anomalies. Journal of Climate. 35(3): 923-939.

  339. Yang D., L. J. Wang. 2022. The Summertime Circulation Types over Eurasia and Their Connections with the North Atlantic Oscillation Modulated by North Atlantic SST. Atmosphere. 13(12): 2093.

  340. Yang G., T. Li. 2022. Increased Synoptic Variability Along the Subtropical Meiyu Front under Global Warming. Climate Dynamics. doi: 10.1007/s00382-022-06554-0.

  341. Yang H., M. Liu, M. Wang, et al. 2022. Projections of Extreme Precipitation in the Middle and Upper Yangtze River at 1.5 Degrees C and 2 Degrees C Warming Thresholds Based on Bias Correction. Theoretical and Applied Climatology. 147(3-4): 1589-1600.

  342. Yang J. Q., H. S. Chen. 2022. Influences of Spring Land Surface Thermal Anomalies over West Asia on Indian Early Summer Monsoon Activity and Its Pathway. Journal of Climate. 35(18): 6051-6074.

  343. Yang J., E. H. Liu, Y. B. Liu, et al. 2022a. Impact of Vertical Wind Shear on Summer Orographic Clouds over Tian Shan Mountains: A Case Study Based on Radar Observation and Numerical Simulation. Remote Sensing. 14(7): 1583.

  344. Yang J., Y. Zhang, Z. E. Wang, et al. 2022b. Cloud Type and Life Stage Dependency of Liquid-Ice Mass Partitioning in Mixed-Phase Clouds. Remote Sensing. 14(6): 1431.

  345. Yang K. K., D. L. Guo, W. Hua, et al. 2022c. Tibetan Plateau Temperature Extreme Changes and Their Elevation Dependency from Ground-Based Observations. Journal of Geophysical Research-Atmospheres. 127(3): e2021JD035734.

  346. Yang S. Y., X. S. Wen, M. X. Gao. 2022d. Relation of Mid-High-Latitude Eurasian ISO to Ural Blocking Frequency and Their Co-Effect on Extreme Hot Events During Boreal Summer. Atmosphere. 13(12): 2041.

  347. Yang T., H. Y. Li, J. Cao, et al. 2022e. Investigating the Climatology of North China's Urban Inland Lake Based on Six Years of Observations. Science of the Total Environment. 826: 154120.

  348. Yang X. Y., G. Zeng, V. Iyakaremye, et al. 2022f. Effects of Different Types of Heat Wave Days on Ozone Pollution over Beijing-Tianjin-Hebei and Its Future Projection. Science of the Total Environment. 837: 155762.

  349. Yang X. Y., G. Zeng, W. C. Wang, et al. 2022g. Asymmetry Variations in Arctic Summer Onset and Ending: Role of Sea-Ice Melting. Environmental Research Letters. 17(11): 114039.

  350. Yang Y. M., J. H. Park, S. I. An, et al. 2022i. Increased Indian Ocean-North Atlantic Ocean Warming Chain under Greenhouse Warming. Nature Communications. 13(1): 3978.

  351. Yang Y. M., L. Zhao, X. Y. Shen, et al. 2022j. The Spring Heat Source over the Qinghai-Tibetan Plateau Linked with the Winter Warm Arctic-Cold Siberia Pattern Impacting Summer Drought in China. Frontiers in Earth Science. 10: 835101.

  352. Yang Y., L. L. Ren, M. X. Wu, et al. 2022h. Abrupt Emissions Reductions During COVID-19 Contributed to Record Summer Rainfall in China. Nature Communications. 13(1): 959.

  353. Yao H. X., L. Zhao, X. Y. Shen, et al. 2022. Relationship between Summer Compound Hot and Dry Extremes in China and the Snow Cover Pattern in the Preceding Winter. Frontiers in Earth Science. 10: 834284.

  354. Yao S. X., Y. S. Liu. 2022. The Zonal Wind Intraseasonal Oscillation in the Exit Region of the East Asian Subtropical Westerly Jet in Winter and Its Thermodynamic Mechanism. Atmosphere. 13(3): 395.

  355. Yiemwech J., Y. D. Chen, J. Shen, et al. 2022. Assessment of FY-2G, FY-4A, and Himawari-8 Atmospheric Motion Vectors over Southeast Asia and Their Assimilating Impact on the Forecasts of Tropical Cyclone PABUK. Remote Sensing. 14(17): 4311.

  356. Yin Z. C., M. K. Duan, Y. Y. Li, et al. 2022. Predicting Gridded Winter Pm2.5 Concentration in the East of China. Atmospheric Chemistry and Physics. 22(17): 11173-11185.

  357. Yin Z. C., Y. Wan, Y. J. Zhang, et al. 2022. Why Super Sandstorm 2021 in North China? National Science Review. 9(3): nwab165.

  358. Yin Z. C., Y. Y. Li, Y. J. Zhang, et al. 2022. Evident Differences of Haze Days between December and January in North China and Possible Relationships with Preceding Climate Factors. International Journal of Climatology. 43(1): 438-455.

  359. Ying W. S., H. P. Yan, J. J. Luo. 2022. Seasonal Predictions of Summer Precipitation in the Middle-Lower Reaches of the Yangtze River with Global and Regional Models Based on NUIST-CFS1.0. Advances in Atmospheric Sciences. 39(9): 1561-1578.

  360. You Q. L., Z. H. Jiang, X. Yue, et al. 2022. Recent Frontiers of Climate Changes in East Asia at Global Warming of 1.5 Degrees C and 2 Degrees C. Npj Climate and Atmospheric Science. 5(1): 80.

  361. Yu H., C. Wang, X. Y. Ge. 2022a. Modulation of Pacific Sea Surface Temperatures on the Late-Season Tropical Cyclone Tracks over the Western North Pacific and Its Implication for Seasonal Forecasting. Frontiers in Earth Science. 10: 835001.

  362. Yu J. W., Q. Q. Li, Y. H. Ding, et al. 2022. Long-Term Trend of Water Vapor over the Tibetan Plateau in Boreal Summer under Global Warming. Science China-Earth Sciences. 65(4): 662-674.

  363. Yu L. W., D. Si, X. Y. Shen, et al. 2023. Impact of Tibetan Plateau Vertical Heating on the Asian Summer Monsoon on the Interdecadal Scale. Atmospheric Science Letters. 24(3):

  364. Yu L., B. T. Zhou, Y. Q. Xu, et al. 2022b. Projections of the Net Primary Production of Terrestrial Ecosystem and Spatiotemporal Responses to Climate Change in the Yangtze River Economic Belt. Diversity-Basel. 14(5): 327.

  365. Yu R., S. Gao, L. Y. Sun, et al. 2022. Multiscale Mechanisms for the Modulation of the Pacific Meridional Mode on Tropical Cyclone Genesis over the Western North Pacific: A Comparison between 2004 and 2011. Climate Dynamics. doi: 10.1007/s00382-022-06512-w.

  366. Yu Y. Y., B. W. Liu, R. C. Ren, et al. 2022c. Precursory Signals in the Stratospheric Meridional Mass Circulation for Mid-Latitude Cold Air Outbreak Events of High and Low Sub-Seasonal Predictability. Journal of Geophysical Research-Atmospheres. 127(16): e2022JD036814.

  367. Yu Y. Y., R. C. Ren, X. Xia, et al. 2022. A Dissection of the Topographic Effects from Eurasia and North America on the Isentropic Meridional Mass Circulation in Northern Winter. Climate Dynamics. 59(5-6): 1555-1578.

  368. Yu Y. Y., W. W. Yang, L. L. Zhang, et al. 2022. Region-Dependent Meteorological Conditions for the Winter Cold Hazards with and without Precipitation in China. Natural Hazards. 115(3): 2673-2698.

  369. Yu Y. Y., Y. F. Li, R. C. Ren, et al. 2022. An Isentropic Mass Circulation View on the Extreme Cold Events in the 2020/21 Winter. Advances in Atmospheric Sciences. 39(4): 643-657.

  370. Yuan D. A., J. W. Hao, E. Lu, et al. 2022. The 2014 Severe Drought over Northeast China and Its Comparison with Droughts over the Southern Regions: A Perspective from Synergic Effects of Water Vapour and Cold Air. International Journal of Climatology. 42(16): 8854-8867.

  371. Yuan D., E. Lu, W. Dai, et al. 2022a. The Ice-and-Snow Tourism in Harbin Met Its Waterloo: Analysis of the Causes of the Warm Winter with Reduced Snowfall in 2018/2019. Atmosphere. 13(7): 1091.

  372. Yuan L., X. L. Zhang, Y. Z. Che, et al. 2022b. Vertical Profile and Radiative Forcing of Black Carbon in a Winter Pollution PerIOD over Chengdu, China. Atmospheric Research. 265: 105896.

  373. Yuan Y. Y., P. C. Hsu, W. K. Li. 2022. Characteristics and Dynamics of Two Distinct Quasi-Biweekly Oscillations in the Tibetan Plateau Summer Monsoon. Climate Dynamics. doi: 10.1007/s00382-022-06575-9.

  374. Zeng Y. F., H. Li, Y. X. Feng, et al. 2022b. Study on Sensitivity of Observation Error Statistics of Doppler Radars to the Radar Forward Operator in Convective-Scale Data Assimilation. Remote Sensing. 14(15): 3685.

  375. Zeng Y. F., Y. X. Feng, A. de Lozar, et al. 2022a. Evaluating Latent-Heat-Nudging Schemes and Radar Forward Operator Settings for a Convective Summer PerIOD over Germany Using the ICON-KENDA System. Remote Sensing. 14(21): 5295.

  376. Zhang C., C. Zhao, S. Y. Yu, et al. 2022a. Seasonal Imprint of Holocene Temperature Reconstruction on the Tibetan Plateau. Earth-Science Reviews. 226: 103927.

  377. Zhang D. D., N. Shi, S. Tajie. 2022b. Mechanisms of the Subseasonal Influences of Scandinavian Events on Winter Surface Air Temperature over Eastern China. Atmospheric Research. 268: 105994.

  378. Zhang D. P., Y. Y. Huang, B. T. Zhou, et al. 2022. Interdecadal Changes of the South Asian High in CMIP5/6 and Projection of Its Future Changes. Journal of Climate. 35(17): 5661-5675.

  379. Zhang F., X. Y. Yang, Q. F. Sun, et al. 2022c. Three-Dimensional Structural Anomalies of the Western Pacific Subtropical High Ridge and Its Relationship with Precipitation in China During August-September 2021. Atmosphere. 13(7): 1089.

  380. Zhang G. W., G. Zeng, X. Y. Yang, et al. 2022. Two Spatial Types of North China Heatwaves and Their Possible Links to Barents-Kara Sea Ice Changes. International Journal of Climatology. 42(13): 6876-6889.

  381. Zhang H. J., W. J. Zhang, X. Geng, et al. 2022. Seasonally Modulated El Nino Precipitation Response in the Eastern Pacific and Its Dependence on El Nino Flavors. Journal of Climate. 35(16): 5449-5462.

  382. Zhang J. C., J. H. Zhou, J. Li, et al. 2022d. Location Accuracy Improvement of Long-Range Lightning Detection Network in China by Compensating Ground Wave Propagation Delay. Remote Sensing. 14(14): 3397.

  383. Zhang J. H., Y. L. Zhang, G. Sun, et al. 2022e. Climate Variability Masked Greening Effects on Water Yield in the Yangtze River Basin During 2001-2018. Water Resources Research. 58(1): e2021WR030382.

  384. Zhang J., R. Hu, Q. R. Ma, et al. 2022. The Warming of the Arabian Sea Induced a Northward Summer Monsoon over the Tibetan Plateau. Journal of Climate. 35(23): 3941-3954.

  385. Zhang K., X. H. Lee, N. M. Schultz, et al. 2022. A Global Dataset on Subgrid Land Surface Climate (2015-2100) from the Community Earth System Model. Geoscience Data Journal. doi: 10.1002/gdj3.153.

  386. Zhang L. Y., G. L. Wang, G. R. Tan, et al. 2022h. Experimental Study on Prediction of Nonlinear Systembased on Causality Test. Acta Physica Sinica. 71(8): 080502080502.

  387. Zhang L., L. X. Song, S. P. Zhu, et al. 2022g. Forecasts of the Warm-Sector Heavy Rainfall with a Warm Shear Pattern over Coastal Areas of the Yangtze-Huaihe River in a Regional Business Forecast Model. Frontiers in Earth Science. 10: 938336.

  388. Zhang L., X. Y. Ma, S. P. Zhu, et al. 2022f. Analyses and Applications of the Precursor Signals of a Kind of Warm Sector Heavy Rainfall over the Coast of Guangdong, China. Atmospheric Research. 280: 106425.

  389. Zhang M. K., D. C. Jin, X. D. Wang, et al. 2022. Seasonal Transition of Precedent Indian Ocean Basin Mode and Subsequent Indian Ocean DIPOle without El Nino-Southern Oscillation Impact. International Journal of Climatology. 42(16): 9023-9031.

  390. Zhang M. Y., Z. Q. Cheng, C. P. Li, et al. 2022i. Did the Energy Efficiency Upgrades for Air Conditioners Reduce Residential Electricity Consumption? Evidence from China. Energy and Buildings. 275: 112471.

  391. Zhang S. Y., G. Zeng, T. J. Wang, et al. 2022j. Interannual Relationship between Displacement and Intensity of East Asian Jet Stream and Haze over Eastern China in Winter. Science of the Total Environment. 829: 154672.

  392. Zhang W. J., Z. L. Yu, F. Jiang, et al. 2022. Important Role of the ENSO Combination Mode in the Maintenance of the Anomalous Anticyclone over the Western North Pacific in Boreal Summer. Science China-Earth Sciences. 65(7): 1379-1387.

  393. Zhang W. Y., E. Lu, J. Q. Tu, et al. 2022l. Interannual Variability of Summer Hotness in China: Synergistic Effect of Frequency and Intensity of High Temperature. Atmosphere. 13(5): 819.

  394. Zhang W., L. P. Li, J. H. Ren. 2022k. Influence of Atmospheric 10-20 Day Low Frequency Oscillation on Regional Strong Cooling Events in the Winter of Northern China over the Past 40 Years. Atmosphere. 13(9): 1406.

  395. Zhang X. L., Y. Zhou, Y. Z. Wang, et al. 2022m. Scavenging of Black Carbon Aerosols by Radiation Fog in Urban Central China. Atmosphere. 13(2): 205.

  396. Zhang X. W., D. M. Xu, R. X. Liu, et al. 2022n. Impacts of FY-4A AGRI Radiance Data Assimilation on the Forecast of the Super Typhoon "in-Fa" (2021). Remote Sensing. 14(19): 4718.

  397. Zhang X. Y., C. J. Cai, X. M. Hu, et al. 2022o. Aerosols Consistently Suppress the Convective Boundary Layer Development. Atmospheric Research. 269: 106032.

  398. Zhang X. Y., J. H. Yu, L. Z. X. Li, et al. 2022. Role of Anthropogenic Climate Change in Autumn Drought Trend over China from 1961 to 2014. Journal of Meteorological Research. 36(2): 251-260.

  399. Zhang X. Y., X. Y. Xu, H. S. Chen, et al. 2022p. Dust-Planetary Boundary Layer Interactions Amplified by Entrainment and Advections. Atmospheric Research. 278: 106359.

  400. Zhang Y. J., Z. C. Yin, B. T. Zhou, et al. 2022. Possible Relationship between January "Warm Arctic-Cold Eurasia" and February Haze in North China. Journal of Climate. 35(13): 4115-4130.

  401. Zhang Y. L., W. Q. Zhang, M. Y. Fan, et al. 2022q. A Diurnal Story of Delta O-17(NO3-) in Urban Nanjing and Its Implication for Nitrate Aerosol Formation. Npj Climate and Atmospheric Science. 5(1): 50.

  402. Zhao C. Y., X. Geng, L. Qi. 2022a. Atlantic Multidecadal Oscillation Modulates the Relation of ENSO with the Precipitation in the Central-Western Indian Ocean. Frontiers in Earth Science. 10: 866241.

  403. Zhao C. Y., X. Geng, W. J. Zhang, et al. 2022. Atlantic Multidecadal Oscillation Modulates ENSO Atmospheric Anomaly Amplitude in the Tropical Pacific. Journal of Climate. 35(12): 3891-3903.

  404. Zhao C., T. M. Li, M. Y. Bi. 2022. Role of a Pacific Easterly Wave in the Genesis of Hagupit (2008). Weather and Forecasting. 37(12): 2183-2194.

  405. Zhao H. K., Y. Lu, X. A. Jiang, et al. 2022. A Statistical Intraseasonal Prediction Model of Extended Boreal Summer Western North Pacific Tropical Cyclone Genesis. Journal of Climate. 35(8): 2459-2478.

  406. Zhao J. Z., S. P. He, H. J. Wang, et al. 2022c. Constraining CMIP6 Projections of an Ice-Free Arctic Using a Weighting Scheme. Earths Future. 10(10): e2022EF002708.

  407. Zhao J. Z., S. P. He, H. J. Wang. 2022b. Historical and Future Runoff Changes in the Yangtze River Basin from CMIP6 Models Constrained by a Weighting Strategy. Environmental Research Letters. 17(2): 024015.

  408. Zhao L., W. Dong, X. F. Dong, et al. 2022d. Relations of Enhanced High-Latitude Concurrent Blockings with Recent Warm Arctic-Cold Continent Patterns. Journal of Geophysical Research-Atmospheres. 127(16): e2021JD036117.

  409. Zhao S. W., J. Zhang, Y. B. Du, et al. 2022. Modulation of Coupled Modes of Tibetan Plateau Heating and Indian Summer Monsoon on Summer Rainfall over Central Asia. Journal of Climate. 35(5): 1441-1458.

  410. Zhao S., C. Karamperidou. 2022. Competing Effects of Eastern and Central-Western Pacific Winds in the Evolution of the 2017 Extreme Coastal El Nino. Geophysical Research Letters. 49(15): e2022GL098859.

  411. Zhao W., C. Hao, J. Cao, et al. 2022e. Characteristics of Large-Scale Atmospheric Circulation Patterns Conducive to Severe Spring and Winter Wind Events over Beijing in China Based on a Machine Learning Categorizing Method. Frontiers in Earth Science. 10: 998108.

  412. Zhao Y., X. Lan, S. L. Li, et al. 2022f. Case Study of Mesoscale Precipitation Areas within the Comma Head of an Extratropical Cyclone. Atmosphere. 13(6): 942.

  413. Zheng D., Z. S. Ni, Y. Y. Qing, et al. 2022. Wind Characteristics in the Surface Layer on Different Underlying Surfaces in High Altitude Areas of Central and Western China. Atmosphere. 13(12): 2108.

  414. Zhiqiang D., J. Mengyuan, X. Xiaoping, et al. 2022. The Applicability Evaluation and Drought Validation of the WOFOST Model for the Simulation of Winter Wheat Growth in Shandong Province, China. Heliyon. 8(12): e12004.

  415. Zhong S. S., H. Wang, B. Chen, et al. 2022. Modulation of the Atmospheric Heat Source over the Tibetan Plateau on the Intra-Seasonal Oscillation of Summer Precipitation in the Yangtze-Huaihe River Basin. Atmosphere-Ocean. 60(5): 600-612.

  416. Zhou B. T., J. Qian, J. W. Zhou, et al. 2022a. Strengthening of the Relationship between West China Autumn Rain and Arctic Oscillation in the Mid-1980s. Atmospheric Research. 265: 105916.

  417. Zhou G. B., X. Fang, Q. F. Qian, et al. 2022b. Application of Artificial Intelligence Technology in Typhoon Monitoring and Forecasting. Frontiers in Earth Science. 10: 974497.

  418. Zhou K., Q. Q. Li, J. Tang. 2022c. Estimation of Dissipative Heating Properties above the Internal Boundary Layer in Landfalling Typhoons Using Multi-Layer Tower Observations. Frontiers in Earth Science. 10: 833994.

  419. Zhou X. L., Y. W. Jia, C. Bai, et al. 2022d. Multi-Object Tracking Based on Attention Networks for Smart City System. Sustainable Energy Technologies and Assessments. 52: 102216.

  420. Zhu A. B., H. M. Xu, J. C. Deng, et al. 2022. Instant and Delayed Effects of March Biomass Burning Aerosols over the Indochina Peninsula. Atmospheric Chemistry and Physics. 22(23): 15425-15447.

  421. Zhu B. Y., B. Sun, H. J. Wang. 2022. Increased Interannual Variability in the DIPOle Mode of Extreme High-Temperature Events over East China During Summer after the Early 1990s and Associated Mechanisms. Journal of Climate. 35(4): 1347-1364.

  422. Zhu B. Y., H. X. Li, B. Sun, et al. 2022a. Physical-Empirical Prediction Model for the Dominant Mode of Extreme High Temperature Events in Eastern China During Summer. Frontiers in Earth Science. 10: 989073.

  423. Zhu J., L. Chen, H. Liao. 2022b. Multi-Pollutant Air Pollution and Associated Health Risks in China from 2014 to 2020. Atmospheric Environment. 268: 118829.

  424. Zhu J., Y. Y. Yu, Z. Y. Guan, et al. 2022c. Dominant Coupling Mode of SST in Maritime Continental Region and East Asian Summer Monsoon Circulation. Journal of Geophysical Research-Atmospheres. 127(19): e2022JD036739.

  425. Zhu J., Z. Y. Guan, X. D. Wang. 2022. Variations of Summertime SSTA Independent of ENSO in the Maritime Continent and Their Possible Impacts on Rainfall in the Asian-Australian Monsoon Region. Journal of Climate. 35(24): 4349-4364.

  426. Zhu L. H., W. Z. Kang, W. Li, et al. 2022d. The Optimal Bias Correction for Daily Extreme Precipitation Indices over the Yangtze-Huaihe River Basin, Insight from BCC-CSM1.1-M. Atmospheric Research. 271: 106101.

  427. Zhu L. J., Z. K. Qin, J. Z. Min, et al. 2022e. Characterizing, Mitigating, and Comparing the Along-Scanline Noise in Fengyun-3 Series Microwave Humidity Sounders (MWHSs). Ieee Transactions on Geoscience and Remote Sensing. 60: 5300210.

  428. Zhu L. L., F. P. Sun, T. Li. 2022. Simulations of a Persistent Heat Wave Event in Missouri in Summer 2012 Using a High-Resolution SST

  429. Model. Journal of Meteorological Research. 36(4): 631-642.

  430. Zhu L., Z. Y. Meng, Y. H. Weng, et al. 2022. Assimilation of All-Sky Geostationary Satellite Infrared Radiances for Convection-Permitting Initialization and Prediction of Hurricane Joaquin (2015). Advances in Atmospheric Sciences. 39(11): 1859-1872.

  431. Zhu S. G., X. Dong, Y. J. Qi, et al. 2022. The Predictability of Snow Depth at the North Hemisphere Originated from Persistence and Oceanic Forcing. Climate Dynamics. doi: 10.1007/s00382-022-06356-4.

  432. Zhu S. P., H. D. Yang, D. Y. Liu, et al. 2022f. Observations and Forecasts of Urban Transportation Meteorology in China: A Review. Atmosphere. 13(11): 1823.

  433. Zhu S. Z., L. B. Bu, K. R. Kumar, et al. 2022g. Investigation of Aerosol Optical Properties and Pollutant Transmission Mechanisms in Qinhuangdao, North China - a Case Study During a Pollution Event. Atmospheric Pollution Research. 13(6): 101440.

  434. Zhu X. Y., X. W. Liu, A. N. Huang, et al. 2022. Impacts of SST Configuration on Monthly Prediction of Western North Pacific Summer Monsoon in Coupled and Uncoupled Models. Climate Dynamics. 59(5-6): 1687-1702.

  435. Zhu Y. H., X. F. Zhi, Y. Lyu, et al. 2022h. Forecast Calibrations of Surface Air Temperature over Xinjiang Based on U-Net Neural Network. Frontiers in Environmental Science. 10: 1011321.

  436. Zhu Y. L., J. Q. Sun, J. H. Ma. 2023. A Hybrid Statistical-Dynamical Prediction Model for Summer Precipitation in Northwestern China Based on NCEP CFSv2. Atmospheric Research. 283: 106567.

  437. Zhu Y. X., H. K. Zhao, J. Lu, et al. 2022. Factors Affecting Climate Variability of Basin-Wide Western North Pacific Tropical Cyclone Intensity. International Journal of Climatology. doi: 10.1002/joc.7925.

  438. Zhu Z. W., R. Lu, S. S. Fu, et al. 2022. Alternation of the Atmospheric Teleconnections Associated with the Northeast China Spring Rainfall During a Recent 60-Year PerIOD. Advances in Atmospheric Sciences. 40(1): 168-176.



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