左金清 女 理学博士 研究员/硕士生导师 实验室副主任
专 业:气象学
研究方向:气候动力学与气候预测
Email:zuojq@cma.gov.cn
主要从事研究工作:中高纬环流和下垫面异常对东亚气候的影响与机理及预测技术研究。
学习经历
2002.09-2006.06 兰州大学大气科学学院,获学士学位
2006.09-2011.06 兰州大学大气科学学院,获博士学位
工作经历
2011.07-2013.06 中国气象科学研究院,博士后
2013.07-2013.10 国家气候中心气候研究开放实验室,助理研究员
2013.11-2019.12 国家气候中心气候研究开放实验室,副研究员
2020.01-至今 国家气候中心气候研究开放实验室,副研究员、研究员、实验室副主任
2020年获中国气象局高层次科技创新人才青年气象英才称号
承担科研项目情况
1、国家自然科学基金面上项目“北大西洋海温异常信号东传及对东亚夏季气候年际变率的影响研究”( 41975102, 2020.01 -2023.12月),主持
2、国家重点研发计划子专题“QBO与外强迫对东亚季风气候异常的协同影响及机理”(2018YFC1506003-7, 2018.01-2021.08),专题负责人
3、国家自然科学基金青年科学基金项目“北极涛动和ENSO的相互作用及其对我国冬季气候的协同影响”(41205058,2013.01.-2015.12),主持
4、国家重点基础研究发展计划(973计划)“气候变暖背景下多因子多尺度相互作用的变化及其对我国南方旱涝灾害的影响机理”(2013CB430203,2013.01-2017.08),骨干
5、中国气象局气候研究开放实验室开放课题“秋季北极海冰对中国冬季气候的预测技术研究”(2014.03.-2015.03),主持
6、中国气象局气象关键技术集成与应用项目“北极海冰前期信号提取及其对我国冬季气候统计-动力预测技术研究”(CMAGJ2015M73,2015.01.-2016.06.),第二负责人
7、中国博士后科学基金项目“北极海冰异常对中国冬季极端低温的影响研究”(2012M510634,2012.03.-2013.06),主持
发表论文
1. Zuo Jinqing, Sun Chenghu, Li Weijing, Wu Jie, Ren Hong-Chang, 2020: Representation of the boreal summer tropical Atlantic–western North Pacific teleconnection in AGCMs: Comparison of CMIP5 and CMIP6. Climate Dynamics, DOI: 10.1007/s00382-020-05427-8.
2. Zuo Jinqing, Li Weijing, Sun Chenghu, Ren Hong-chang, 2019: Remote forcing of the northern tropical Atlantic SST anomalies on the western North Pacific anomalous anticyclone. Climate Dynamics, 52: 2837–2853.
3. Ren Hong-Li, Jinqing Zuo(通讯作者), Yi Deng, 2019: Statistical predictability of Nino indices for two types of ENSO. Climate Dynamics, 52: 5361–5382.
4. Zuo Jinqing, Hong-Li Ren, Bingyi Wu, and Weijing Li, 2016: Predictability of Winter Temperature in China from Previous Autumn Arctic Sea Ice. Climate Dynamics, 47,7,2331–2343.
5. Zuo Jinqing, Hong-Li, Ren, Jie Wu, Yu Nie, Qiaoping Li, 2016: Subseasonal variability and predictability of the Arctic Oscillation/North Atlantic Oscillation in BCC_AGCM2.2. Dynamics of Atmospheres and Oceans, 75,33–45.
6. Zuo Jinqing, Hong-Li Ren, Weijing Li, and Lei Wang, 2016: Interdecadal Variations in the Relationship between the Winter North Atlantic Oscillation and Temperature in South-Central China. Journal of Climate, 29, 7477-7493.
7. Zuo Jinqing, Hong-Li Ren, and Weijing Li, 2015: Contrasting Impacts of the Arctic Oscillation on Surface Air Temperature Anomalies in Southern China between Early and Middle-to-Late Winter. Journal of Climate, 28: 4015–4026.
8. Zuo Jinqing, Weijing Li, Chenghu Sun, Li Xu, and Hong-Li Ren, 2013: Impact of the North Atlantic Sea Surface Temperature Tripole on the East Asian Summer Monsoon. Advances in Atmosphere Sciences, 30(4): 1173-1186.
9. Zuo Jinqing, Jianping Huang, Jiemin Wang, Wu Zhang, Jianrong Bi, Guoyin Wang, Weijing Li, and Peijian Fu, 2009: Surface turbulent flux measurements over the Loess Plateau for a semi-arid climate change study. Advances in Atmosphere Sciences, 26(4): 679–691.
10. Zuo Jinqing, Weijing Li, Hongli Ren, 2013: Representation of the Arctic Oscillation in the CMIP5 Models. Advances in Climate Change Research, 4(4): 242-249. (左金清, 李维京, 任宏利, 2013: CMIP5模式对北极涛动的模拟评估. 气候变化研究进展, 9 (3): 157-164.)
11. Zuo Jinqing, Weijing Li, Hongli Ren, Lijuan Chen, 2012: Change of the Relationship between Spring NAO and East Asian Summer Monsoon and its Possible Mechanism. Chinese J. Geophys.,55(1): 23-34. (左金清,李维京,任宏利,陈丽娟,2012:春季北大西洋涛动与东亚夏季风年际关系的转变及其可能成因分析. 地球物理学报, 55(2): 384-395.)
12. Zuo Jinqing, Hongli Ren, Weijing Li, Peiqun Zhang, Mingzhu Yang, 2009:Intraseasonal characteristics of the water vapor transport associated with the low-frequency rainfall regimes over Southern China in summer. Chinese J. Geophys., 52(5): 922-935. (左金清,任宏利,李维京,张培群,杨明珠,2009:我国南方夏季低频雨型的季节内水汽输送特征. 地球物理学报,52(9): 2210-2221.)
13. Zuo Jinqing, Jiemin Wang, Jianping Huang, Weijing Li, Guoyin Wang, and Hongli Ren, 2011: Estimation of ground heat flux and its impact on the surface energy budget for a semi-arid grassland. Sciences in Cold and Arid Regions, 3(1): 41–50. (左金清,王介民,黄建平,李维京,王国印,任宏利,2010:半干旱草地地表土壤热通量的计算及其对能量平衡的影响. 高原气象,29(4): 840-848.)
14. 任宏昌,左金清(通讯作者),李维京,2017:2016年和1998年北大西洋海温异常对中国夏季降水影响的数值模拟研究. 气象学报,75(6):877-893.
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