个人科研简历
一、姓名
孙建奇
二、研究方向
中高纬度气候系统变化、短期气候预测、极端气候
三、教育及工作经历
教育经历:
1997年9月—2001年6月,兰州大学,理学学士
2001年9月—2006年6月,中国科学院大气物理研究所,理学博士
工作经历:
2006年7月—2013年12月,中国科学院大气物理研究所,助研、副研
2014年1月—2025年9月,中国科学院大气物理研究所,研究员
2025年10月至今,国家气候中心,研究员
四、近五年(2021-2025)主持科研项目
1.春播季重大持续性气候异常的机制、影响及预测;重点研发计划项目;2000万
2.东亚地区干湿转折的年际预测;重大项目课题;375万
3.亚洲中高纬区极端气候变异机理;重大项目课题;373.4万
4.中高纬气候系统变化及短期气候预测;杰出青年科学基金;400万
5.气候变化条件下山地极端气候、天气风险预测预报技术与平台;中国科学院战略性先导科技专项(A类)课题;1409万
五、近五年(2021-2025)发表学术论文列表
1.PanWQ,Sun JQ*, Ma JH, 2025: Possible mechanisms for the record-breaking persistent extreme rainfall event over southern China in April 2024: Synergistic effects of multiscale systems.Geophysical Research Letters, accepted.
2.He XM,Sun JQ*, Yu S, Zhang MQ, 2025: Regime shift in extreme wildfires within Northern Eurasia and their impacts.Environmental Research Letters, doi: 10.1088/1748-9326/ae0b92.
3.Jing HT,Sun JQ*, Yu S, 2025: The extreme spring drought over northern China in 2022: Characteristics and possible mechanisms.International Journal of Climatology, doi:10.1002/joc.70126.
4.PanWQ,Sun JQ*, Hong HX, Ma JH, 2025: Intraseasonal variations in spring East Asian subtropical jet: Role of mid–high latitude wave trains and influence on rainfall anomalies in China.Journal of Climate, doi: 10.1175/JCLI-D-25-0075.1.
5.Ju DY,Sun JQ*, 2025:Influence of the Eurasian spring snow cover on interannual variations of summer zonal dipole pattern of drought conditions over northern Asia.Journal of Geophysical Research-Atmospheres, doi: 10.1029/2025JD043342.
6.Zhang MQ,Sun JQ*,2025: Extreme spring droughts in Yunnan Province under different ENSO phases in 2023 and 2024: possible mechanisms and dynamical predictions.Climate Dynamics, doi: 10.1007/s00382-025-07786-6.
7.Li XX,Sun JQ*, Yu S, Zeng ZX, 2025: Thesubtropical and Arcticinfluences on the record-breaking early summer rainfall over North China in 2022.International Journal of Climatology,doi: 10.1002/joc.70029
8.ZhangXL,Sun JQ*, Yu S, 2025: Variations in the spring temperature intra-seasonal variability over Northeast China and the possible mechanisms.Journal of Climate, doi: 10.1175/JCLI-D-24-0308.1.
9.Gao Y,Sun JQ*, Yu S, He SP, 2025: Relationship of decadal variations in East Asian winter monsoon and northwestern North Pacific SST in CMIP6 preindustrial long-term simulations.Journal of Climate, 38: 815-834.
10.Li XX,Sun JQ*, 2025: Atmospheric circulation patterns conducive to summer extreme temperature, precipitation, and vapor pressure deficit events over Northeast China.Journal of Climate, 38: 835-853.
11.Yu S,Sun JQ*, 2025: Loose connection in the East Asian winter monsoon system in recent decades.Atmospheric Research, 326, 108270.
12.YuS,Sun JQ*, 2025:Unprecedented East Asian heat dome in August 2022: Underrated joint roles of North Pacific and North Atlantic.Atmospheric Research, 322, 108141.
13.Jing HT,Sun JQ*, Zeng ZX, 2024:Inter-decadal shift of spring drought over China around the late 1990s and the possible mechanisms.Atmospheric Research, 299: 107197.
14.Ju DY,Sun JQ*, Hong HX, Zhang MQ, 2024: Atmospheric teleconnections responsible for the dominant patterns of interannual variability in summer drought over northern Asia.Journal of Climate, 37: 4183-4203.
15.Nie YB,Sun JQ*, 2024.Improving dynamical-statistical subseasonal precipitation forecasts using deep learning: A case study in Southwest China.Environmental Research Letters, 19:074013.
16.PanWQ,Sun JQ*, HongHX, Ma JH, 2024:Different Influence oftwo Intraseasonaloscillations on thespringlong-lived andmedium-livedconsecutivecloudy-rainyevents in the Yangtze-HuaiheRivervalley.Journal of Geophysical Research-Atmospheres, 129: e2024JD041151.
17.Wang JL,Sun JQ*, Hong HX, Wang HJ, 2024: Dominant modes of interannual variability in spring compound dry and hot events over Northern Asia and the possible mechanisms.Atmospheric Research, 311: 107688.
18.Wang K,Sun JQ*, Nie YB, 2024: Spring extratropical cyclones over the Mongolian region in the ERA5 reanalysis: climatology and variability.Climate Dynamics,62: 9733-9754.
19.YuS,Sun JQ*, 2024: Persistent variations in the East Asian trough from March to April and the possible mechanism.Advances in Atmospheric Sciences,41: 737-753.
20.Zeng ZZ,Sun JQ*, He SP, 2024: Comparison of the physical processes underlying heavy and light rain variations: Insight from spring precipitation over Southern China.Climate Dynamics,62: 9951-9969.
21.Zeng ZZ,Sun JQ*, He SP, 2024: Importance of intraseasonal oscillation for the regional extreme consecutive dry days events in spring over Southern China.Journal of Geophysical Research-Atmospheres, 129: e2024JD041498.
22.Zhang MQ,Sun JQ*, 2024:Bias of ENSO‑like SST breaks the connection between the North Atlantic SST and Northeast China spring precipitation in the NCEP CFSv2.Climate Dynamics. 62: 6505-6518
23.Hong HX,Sun JQ*, Wang HJ, 2023: Synoptic atmospheric patterns responsible for summer extreme high-temperature events over northern Asia: Evolution, precursor, and long-term change.Journal of Climate,36: 5063-5082.
24.Jing HT, andSunJQ*,2023:Diverse impacts of strong and moderate intense El Niño-Southern Oscillation events on spring precipitation over Asia.International Journal of Climatology,43: 6300-6313.
25.LiuSC,Sun JQ*, 2023: Enhanced influence of tropical Pacific Sea surface temperature anomalies on spring extreme heat events over mid-high latitude Eurasia.Journal of Geophysical Research-Atmospheres,128:e2022JD037837.
26.Nie YB,Sun JQ*, 2023: Increase in summer precipitation over the Sichuan Basin in recent decades and possible causes.International Journal of Climatology,43: 4269-4285.
27.Nie YB,Sun JQ*, 2023: Regionalpersistent extreme precipitation events over Southwest China under different low-latitude intraseasonal oscillations during rainy season.Journal of Climate,36: 2873-2894.
28.Nie YB,Sun JQ*, Ma JH, 2023: Seasonal prediction of summer extreme precipitation frequencies over Southwest China based on machine learning.Atmospheric Research,294:106947.
29.Yu S,Sun JQ*, 2023: Persistent mode of February-to-March precipitation over southern China: variation, mechanism, and prediction.Journal of Climate, 36: 131-154.
30.Yu S,SunJQ*, 2023: Variations in the 30-60-day intra-seasonal variability of spring precipitation over the mid-low reaches of the Yangtze River and the possible mechanism.Journal of Geophysical Research-Atmospheres,128:e2022JD038070.
31.Yu S,Sun JQ*, Chen HP, 2023: Intraseasonal mode of East Asian trough anomalies in boreal winter and specific possible mechanisms.Climate Dynamics,61: 2421-2441.
32.Zeng ZX,Sun JQ*, 2023: Enhanced relationship between February Aleutian low and spring extreme consecutive dry days in the Yangtze-Huai River region in recent two decades: Roles of Bering Sea ice and stratospheric polar vortex.Climate Dynamics.61:5131-5146
33.Zeng ZX,Sun JQ*, 2023: Influence of different configurations of western North Pacific anticyclone and Siberian high on spring climate over China.International Journal of Climatology,43: 2699-2718.
34.ZengZX,Sun JQ*, 2023:Interannual variations in the intraseasonal variability of spring precipitation over southern China and the possible mechanisms.Journal of Climate,36: 5319-5336.
35.Zhang MQ,Sun JQ*, 2023: Increased persistence in winter to spring precipitation anomalies over South China since the late 1990s and the possible mechanisms.Journal of climate, 36: 7179-7198.
36.Bai R,Sun JQ*, Yu ET, and Yu S, 2022: Performance of the Weather Research and Forecasting model in simulating climate over northern Asia,International Journal of Climatology, 42: 10285-10307.
37.Hong HX,Sun JQ*, Wang HJ, 2022: Interannual variations in summer extreme precipitation frequency over Northern Asia and related atmospheric circulation patterns.Journal of Hydrometeorology, 23:619-636.
38.Hong HX,Sun JQ*, Wang HJ, 2022: Variations in summer extreme high-temperature events over northern Asia and the possible mechanisms.Journal of Climate, 35: 335-357.
39.Nan YT,Sun JQ*, Zhang MQ, Hong HX, Nie YB, Yuan JP, 2022: Enhancement of the relationship between spring extreme precipitation over Southwest China and preceding winter sea surface temperature anomalies over the South Indian Ocean after the late 1980s.International Journal of Climatology, 42:8539-8551.
40.Nie YB,Sun JQ*, 2022: Causes of interannual variability of summer precipitation intraseasonal oscillation intensity over Southwest China,Journal of Climate,35: 3705-3723.
41.Nie YB,Sun JQ*, 2022: Moisture sources and transport for extreme precipitation over Henan in July 2021.Geophysical Research Letters, 49:e2021GL097446.
42.Sun JQ*, Liu SC, Cohen J, Yu S, 2022: Influence and prediction value of Arctic sea ice for spring Eurasian extreme heat events.Communications Earth & Environment,3:172.
43.Zeng ZX,Sun JQ*,2022: Decadal change of extreme consecutive dry days in spring over the middle and lower reaches of the Yangtze River around the early 2000s: The synergistic effect of mega-El Niño/Southern Oscillation, Atlantic Multidecadal Oscillation, and Arctic sea ice.Atmospheric Research, 266: 105936.
44.Zeng ZX,Sun JQ*, 2022: Impacts of a tripolar sea surface temperature pattern over tropical-North Pacific on interannual variations of spring extreme consecutive dry days over Southern China.Journal of Geophysical Research-Atmospheres, 127: e2021JD036281.
45.Zhang MQ,Sun JQ*, Gao YQ, 2022: Impacts of North Atlanticsea surface temperature on the predominant modes of spring precipitation monthly evolution over Northeast China.Climate Dynamics, 58:1383-1401.
46.Gu LT,Sun JQ*, Yu S, Zhang MQ, 2021: Footprints of Pacific Decadal Oscillation in the interdecadal variation ofconsecutive cloudy–rainy events in southern China.Atmospheric Research, 257: 105609.
47.Li XX,Sun JQ*, Zhang MQ, Zhang Y, Ma JH, 2021: Possible connection between declining Barents Sea ice and interdecadal increasing northeast China precipitation in May.International Journal of Climatology, 41: 6270-6282.
48.Ming J,Sun JQ*, 2021: Enhanced relationship between central tropical Pacific sea surface temperature and Eurasian surface air temperature during boreal summers.Journal of Climate, 34: 5939-5953.
49.Nie YB,Sun JQ*, 2021: Synoptic-scale circulation precursors of extreme precipitation events over southwest China during the rainy season.Journal of Geophysical Research-Atmospheres, 126: e2021JD035134.
50.Yu S,Sun JQ*, 2021: Conditional impact of boreal autumn North Atlantic SST anomaly on winter tropospheric Asian polar vortex.Climate Dynamics, 56: 855-871.
六、荣誉获奖:
2024年:中国科学院优秀导师
2017年:中国气象学会气象科学技术进步成果一等奖(短期气候预测系统的研制与应用,第一完成人)
2017年:“学笃风正”创新贡献奖
2015年:中国科学院青年创新促进会优秀会员
2014年:国家自然科学二等奖(气候预测的若干新理论与新方法研究,第三完成人)