1. Chen, Gang*, Yu Nie*, and Yang Zhang. 2022: Jet Stream Meandering in the Northern Hemisphere Winter: An Advection-Diffusion Perspective Journal of Climate, 2022,35(6),2055-2073.
2. Ting Ding, Xiang Li, Hui Gao*. 2022: An unprecedented high temperature event in southern Chinain autumn 2021 and the essential role of the mid-latitude trough. Advances in Climate Change Research, https://doi.org/10.1016/j.accre. 2022.11.002.
3. Dong, Siyan, Sun Ying*, Zhang, Xuebin. 2022: Attributing observed increase in extreme precipitation in China to human influence.Environmental Research Letters, 2002,17,095005.
4. Li Guo, Jie Wu*, Zuo Jinqing. 2022: Record-breaking rainfall over the middle reaches of the Yangtze River in August 2021:sub-seasonal perspective and its predictability. Advance in Climate ChangeResearch, 2022, https://www.sciencedirect.com/science/article/pii/S167492782200 1149?via%3Dihub.
5. 郭莉, 祝从文. 2022: 西风与季风在青藏高原的耦合模态极其季节性变化特征.大气科学2022,46(4) ,1017-1029.
6. Zeng-Yuan Guo, Li-Juan Chen,Xie, B. 2022: An assessment method of annual climatic status in China using extreme climate indices: 2021 as an example. Advances in Climate Change Research,2002, https://doi.org/10.1016/j.accre.2022.11.003.
7. Hu, Ting, Sun Ying*, Wang Dongqian, Zhang Xuebin. 2022: Anthropogenic influence on the 2021 wettest September in Northern China. Bulletin of the American Meteorological Society, https://ametsoc.net/eee/2021_22/AcceptedMS_BAMS-D-22-0156.
8. Yan Li, Guoyu Ren, Qinglong You. et al. 2022: The 2016 record-breaking marine heatwave in the Yellow Sea and associated atmospheric circulation anomalies. Atmospheric Research, 268(2022) 106011.
9. Liu Jing, Chen Lijuan*, Liu Ying*. 2022: A statistical downscaling prediction model for winter temperature over Xinjiang based on the CFSv2 and sea ice forcing. International Journal of Climatology,2022,6,1-16.
10. Liu Jing, Lijuan Chen*,Ying Liu. 2022: A statistical downscaling prediction model for winter temperature over Xinjiang based on the CFSv2 and sea ice forcing. International Journal of Climatology, 2022,1–16. DOI: 10.1002/joc.7747.
11. Mengting Liu,Hua Zhang,Fang Wang*. 2022: Quantifying longgterm cloud feedback over East Asia combining with radiative kernels and CMIP6 data.Climate Dynamics,https://doi.org /10.1007/s00382-022-06577-7.
12. Liu Yang, Junhu Zhao, Guolin Feng. 2022: Enhanced impact of the early summer tropical eastern Pacific SST on North China July-August rainfall around the late 1970s. International Journal of Climatology, 2022,42(6): 3463-3476. doi: 10.1002/joc.7427.
13. Lu Chunhui, Sun Ying* & Zhang Xuebin. 2022: The 2020 Record-Breaking Mei-yu in the Yangtze River Valley of China: The Role of Anthropogenic Forcing and Atmospheric Circulation
Bulletin of the American Meteorological Society, 2022,103,3,S98–S104.https://doi.org /10.1175/
BAMS-D-21-0161.1.
14. Lu, Chunhui, Sun Ying* & Zhang Xuebin. 2022: Anthropogenic Influence on the Diurnal Temperature Range since 1901. Journal of Climate, 2022, 35(22), 3583-3598.
15. Lu, Z., W. Dong, B. Lu*, N. Yuan, et al. 2022: Early warning of the Indian Ocean Dipole using climate network analysis PNAS, 2022, 119 (11), e2109089119.
16. 马锋敏, 陈丽娟*, 李想, 等. 2022:中国冬季气温不同年代际的季节内变化特征及成因分析.大气科学, 2022, 46(3): 573−589.
17. Nie, Yu., Yang Zhang, Gang Chen. 2022: Quantifying Eddy Generation and Dissipation in the Jet Response to Upper-versus Lower-level Thermal Forcing. Journal of the Atmospheric Sciences, 2022,79(10) ,2703-2720.
18. Nie, Yu., Hong-Li Ren, Yang Zhang. 2022: Roles of Atmospheric Variability and Arctic Sea Ice in the Asymmetric Arctic-Eurasia Temperature Connection on Subseasonal Time Scale. Journal of Climate,2022,https://doi.org/10.1175/JCLI-D-21-0771.1.
19. Nie, Yu, Yang Zhang, Jinqing Zuo. 2022: Dynamical processes controlling the evolution of early-summer cut-off lows in Northeast Asia. Climate Dynamics, https://doi.org/10.1007/s00382-022-06371-5.
20. Kum-Chol Om,* Guoyu Ren, Kwang-Hyon Kim. 2022: Observed trends in extreme temperature events over northern part of the Korean Peninsula during 1960–2019 and a comparative overview. Atmospheric Research, 270 (2022) 106061.
21. Jun Su, Guoyu Ren, Yingxian Zhang, et al. 2022: Changes in extreme rainfall over mainland China induced by landfalling tropical cyclones. Environ. Res. Commun,4 (2022) 101004.
22. Sun, Ying, Chao Qingchen, Zhou Botao, Zhou Tianjun Explaingin. 2022: China’s Climate in 2021. Advances in Climate Change Research, 2022, https://doi.org/10.1016/j.accre.2022.12.001.
23. Sun,Ying*,Zhang,Xuebin,Ding,Yihu,Chen,Deliang,Qin,Dahe,ZhaiPanmao.2022: Understandinghuman influence on climate change in China.National Science Review, 2022,9(3), https://doi.org /10.1093/nsr/nwab113,23.
24. Tong M, Zheng Z, Fu Q. 2022: Evaluation of East Asian Meiyu from CMIP6/AMIP simulations. Climate Dynamics (2022) 59:2429–2444.
25. Suonam Kealdrup Tysa & Guoyu Ren.2022: Observed decrease in light precipitation in part due to urbanization.Scientific Reports(2022), https://doi.org/10.1038/s41598-022-07897-8.
26. Wang, Dongqian; Sun, Ying*. 2022: Effects of anthropogenic forcing and atmospheric circulation on the record-breaking welt bulb heat event over southern China in September 2021. Advances in Climate Change Research,2022, https://doi.org/10.1016/j.accre.2022.11.007.
27. Wu Jie, Ren Hong-Li, Zhang Peiqun. 2022: The dynamical-statistical subseasonal prediction of precipitation over China based on the BCC newwgeneration coupled model. Climate Dynamics, 59,1213–1232.
28. Wu Jie, Liu Ying, Li yongsheng. 2022: The extreme Northeast China Cold Vortex activities in the late spring of 2021 and possible causes involved. Advances in Climate Change Research, 2022, https://doi.org/10.1016/j.accre.2022.09.002.
29. Wu Qingyuan, Li Qingquan*, Ding Yihui. 2022: Asian summer monsoon responses to the change of land-sea thermodynamic contrast in a warming climate: CMIP6 projections Advances in Climate Change Research, (2022)205e217.
30. Yuqing Xu, Fengjin Xiao, Yaoming Liao. 2022: Assessment of Grassland Ecosystem Service Value in Response to Climate Change in China. Diversity, 2022,14,160.
31. Yuqing Xu, Fengjin Xiao. 2022: Assessing Changes in the Value of Forest Ecosystem Services in Response to Climate Change in China. Sustainability, 2022,4,4773.
32. Yuanjian Yang, Min Guo, Guoyu Ren*.et al. 2022: Modulation of Wintertime Canopy Urban Heat Island (CUHI) Intensity in Beijing by Synoptic Weather Pattern in Planetary Boundary Layer. Journal of Geophysical Research: Atmospheres,127, e2021JD035988(2022).
33. Yu Jingwen, Li Qingquan*, Ding Yihui. 2022: Long-term trend of water vapor over the Tibetan Plateau in boreal summer under global warming. Science China Earth Sciences,2022,65(4), 662–674.
34. Xie B and Zhang H. 2022: A simulation study on the climatic responses to short-lived climate pollutants changes from the pre-industrial era to the present. Front.Earth Sci.2022, https://doi.org/10.3389/feart.2022.1008164.
35. Xu Y, Wu J, Han Z Y,2022: Evaluation and projection of surface PM2.5 and its exposure on population in Asia based on the CMIP6 GCMs. Int. J. Environ. Res. Public Health 2022,19, 12092. https://doi.org/10.3390/ijerph19191209.
36. Yin Hong, Sun Ying*, Li Mingyong. 2022: Reconstructed temperature change in late summer over the eastern Tibetan Plateau since 1867 CE and the role of anthropogenic forcing . Global and Planetary Change,2022,https://doi.org/10.1016/j.gloplacha.2021.103715.
37. Yin, Hong; Sun,Ying*. 2022: Anthropogenic influence on temperature change in China over the period 1901-2018. Journal of Climate,2022,https://doi.org/10.1175/JCLI-D-22-0122.1.
38. Han Zhang, Junhu Zhao, Bicheng Huang, et al.2022:The variabilities of convective precipitation and large-scale precipitation in southern China for the period 1980–2020. Theoretical and Applied Climatology,2022,148:1529–1543.
39. Zhang, D. Q., and L. J. Chen. 2022: Hybrid statistical-dynamical seasonal prediction of tropical cyclone track density over western North Pacific.Climate Dynamics,2022,doi:10.1007/s00382
-022-06462-3.
40. Liancheng Zhang, Jiayi Si,Guli Jiapaer,Taixi Zhang,Weiyi Mao* and Siyan Dong* 2022: Spatial Homogenization Adjustment and Application of Weather Station Networks in Xinjiang. China Atmosphere, 2022,13(11): 1840.
41. Jin-Tao Zhang, Guo-Yu Re*, Qing-Long You. 2022: Detection and projection of climatic comfort changes in China's mainland in a warming world. Advances in Climate ChangeResearch, 2022,
13,507-516.
42. Siqi Zhang, Guoyu Ren*, Yuyu Ren, et al. 2022: Linkage of extreme temperature change with atmospheric and locally anthropogenic factors in China mainland. Atmospheric Research, 277 (2022) 106307.
43. Junhu Zhao, Han Zhang, Jinqing Zuo,et al. 2022: Oceanic drivers and empirical prediction of late summer rainfall variability over Northeast China. Climate Dynamics, 2022,58(3-4):861–878.
44. 赵俊虎,陈丽娟,章大全. 2022: 2021年汛期气候预测效果评述及先兆信号分析.气象2022,48(4):479-493.
45. 赵俊虎,陈丽娟,章大全. 2022: 2021夏季降水异常成因分析. 气象,2022,48(1):107-121.
46. Zhao Y, Zheng Z, Zhi R, Feng G, Cheng J. 2022: The zonal gradient structures of wintertime SST anomalies in the equatorial Pacific and their connection to the Walker circulation. Climate Dynamics, (2022) 58:841–859.
47. Jia Z, Zheng Z, Feng G, Tong M. 2022: The Intraseasonal Variations of the Leading Mode of Summer Precipitation Anomalies in Meiyu Area of East Asia. Atmosphere (Basel) (2022) 13:217.
48. Zuofang Zheng, Guoyu Ren, Hua Gao , Yuanjian Yang*,.2022: Urban ventilation planning and its associated benefits based on numerical experiments: A case study in beijing, China. Building and Environment,222 (2022) 109383.
49. 支蓉, 郑志海. 2022: 2021/2022年冬季中国气候异常特征及南方降水异常偏多成因分析. 气象,(2022) 48:923–935.
50. 朱万林, 李清泉*, 王遵娅. 2022: 近60年中国冷空气过程气候变率分析. 气象, 2022,48(1),1-13.
51. Zuo Jinqing, Xie Fei, Yang Liuni. 2022: Modulation by the QBO of the Relationship between the NAO and Northeast China Temperature in Late Winter.Journal of Climate, 2022, DOI: 10.1175/JCLI-D-22-0353.1.
版权所有 © 国家气候中心气候研究开放实验室
Copyright © Laboratory for Climate Studies, National Climate Centre