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    陈活泼

    来源:协同中心 日期:2026-06-24 阅读:

    个人科研简历

    一、姓名

    陈活泼、博士、教授,北京师范大学特聘岗位(B1)

    二、研究方向

    极端气候变化、气候变异

    三、教育及工作经历

    2025-03至今 北京师范大学 教授

    2018-03 / 2025-02中国科学院大气物理研究所 研究员

    2014-02 / 2018-02中国科学院大气物理研究所 副研究员

    2012-02 / 2014-01中国科学院大气物理研究所 助理研究员

    2006-09 / 2012-01中国科学院大气物理研究所 博士

    2002-09 / 2006-07兰州大学 学士

    四、近五年(2021-2025)主持科研项目

    1、2026-01至2030-12,国家自然科学基金委员会青年科学基金项目(A类)[原国家杰出青年科学基金项目],极端气候变化与气候变异,400万,主持

    2、2025-01至2027-12,国家自然科学基金委员会国际(地区)合作与交流项目,中国和俄罗斯旱涝变化的联系及中高纬海-冰-气相互作用的影响,150万,主持

    3、2022-12至2027-11,国家重点研发计划项目课题,中国东北区域陆-气跨圈层相互作用过程和机制,600万,主持

    4、2021-01至2024-12,国家自然科学基金委员会面上项目,人类活动影响中国干旱变化的量化归因与机制研究,58万,主持

    5、2020-01至2022-12,国家自然科学基金委员会青年科学基金项目(B类)[原优秀青年科学基金项目],极端气候变化及机制研究,130万,主持

    五、近五年(2021-2025)发表学术论文列表

    1. Lang Xinyao, and Chen Huopo*, 2025:Eurasiansnowanomalyamplifying theeffect of NorthAtlantic SST oninterannualoccurrences ofspringfrostsover Northeast China.Journal of Geophysical Research: Atmospheres, 130, e2024JD042374.

    2. Yan Sichao, andChen Huopo*, 2025:The significant influence of the sea surface temperature anomalies overNorth Atlantic and the Maritime Continent on maize yield inNortheast China. Atmospheric Research, 314, 107806.

    3. Jiang Wenhao,Chen Huopo*, and Wang Huijun, 2025:Increases ofcompoundhotextremeswillsignificantlyamplify thepopulationexposureriskover themid–highlatitudes of Asia.International Journal of Climatology, 45, e8689.

    4. Du Yuchun, andChen Huopo*, 2025:PDO And AMOmodulated theinterdecadalchange inrelationship ofsummerprecipitationbetweenwesternandeasternparts ofnorthern China.International Journal of Climatology, 45, e8735.

    5. Du Yuchun, andChen Huopo*, 2025:Synergisticinfluence of Eurasiansoilmoisture and Pacificsea surface temperature anomalies on August out-of-phaseprecipitationpattern innorthern China.Journal of Geophysical Research: Atmospheres, 130, e2024JD042888.

    6. He Wenyue, and Chen Huopo*, 2025: Shift in the relationship between summer extreme humid-heat events in eastern China and tropical sea surface temperature in the mid-1990s. Geophysical Research Letters, 52, e2024GL112715.

    7.Yan Sichao,Chen Huopo*, and He Shengping, 2025:Increasing frequency of warm-dry climate-year type in Northeast China: Amajor contributor to maize yield shocks. Atmospheric Research, 321, 108084.

    8. Yan Sichao,Chen Huopo*, Du Yuchun, and He Wenyue, 2025:The intensification of soil extreme heat further accelerates the rise ofatmospheric extreme temperature over China. Advances in Climate Change Research, 16, 985-994.

    9.Wen Qixin, andChen Huopo*, 2024: Enhanced interannual variability of the spring high-temperature events over Northeast China and the associated mechanisms. Journal of Geophysical Research: Atmospheres, 129, e2024JD041645.

    10.Chen Huopo*, HeWenyue, and ZhangShuhui, 2024: Recent urbanization increases exposure to humid-heat extreme events over populated regions of China. Atmospheric and Oceanic Science Letters, 17, 100409.

    11.He Wenyue, and ChenHuopo*, 2024: Anthropogenic influence has increased the nighttime heat stress risks in eastern China. Earth’s Future, 12, e2023EF004406.

    12.Du Yuchun, ChenHuopo*, and HongHaixu, 2024: The out-of-phase pattern of summer precipitation over northern China and the possible mechanisms. International Journal of Climatology, 44, 4428-4442.

    13.He Wenyue, and ChenHuopo*, 2024:Thedipolemode ofsummerwet‐bulbtemperatureovereastern China and thepossiblemechanisms.Journal of Geophysical Research: Atmospheres, 129, e2023JD040399.

    14.Xu Huiwen, ChenHuopo*, HeWenyue, and ChenLefeng, 2024: Contributions of anthropogenic greenhouse gases and aerosol emissions to changes in summer precipitation over southern China. Journal of Geophysical Research: Atmospheres, 129, e2023JD040331.

    15.Jiang Wenhao, ChenHuopo*, andWangHuijun, 2024: Changes incompoundhotextremes over themid–highlatitudes of Asia and theunderlyingmechanisms. Journal of Climate, 37, 3479-3491.

    16.Du Yuchun, andChenHuopo*, 2024: Evaluation of CMIP6 model performance in simulating the PDO and its future change. Atmospheric and Oceanic Science Letters,17, 100449.

    17.He Wenyue, and ChenHuopo*, 2023: More extreme-heat occurrences related to humidity in China. Atmospheric and Oceanic Science Letters,16, 100391.

    18.Wen Qinxin, and ChenHuopo*, 2023: Changes in drought characteristics over China during 1961-2019. Frontiers in Earth Science, 11, 1138795.

    19.Ai Yawen, ChenHuopo*, and SunJianqi, 2023: The underestimation of spring precipitation over South China is caused by the weak simulations of the dynamic motion in CMIP6 models. International Journal of Climatology, 43, 2586-2600.

    20.He Wenyue, ChenHuopo*, and MaJiehua, 2023: Variations in summer extreme hot-humid events over eastern China and the possible associated mechanisms. Journal of Climate, 36, 3801-3815.

    21.Liu Yong, YuShui, and ChenHuopo*, 2023: Contribution of PDO to decadal variations of glaze dipole pattern in China. Journal of Climate, 36, 3261-3274.

    22.Liu Yong, and ChenHuopo*, 2022: Future warming accelerates lake variations in the Tibetan Plateau. International Journal of Climatology, 42, 8687-8700.

    23.Lin Wenqing, and ChenHuopo*, 2022: Daily snowfall events on the Eurasian continent: CMIP6 models evaluation and projection. International Journal of Climatology, 42, 6890-6907.

    24.Jiang Wenhao, ChenHuopo*, and ShiZuoqiao, 2022: Anthropogenic influence on extreme temperature changes over the mid-high latitudes of Asia. International Journal of Climatology, 42, 8619-8631.

    25.Xu Huiwen, ChenHuopo*, and WangHuijun, 2022: Increased populations will be exposed to the dangerous precipitation extremes across China in the future. Frontiers in Earth Science, 10, 963042.

    26.Chen Huopo*, and SunJianqi, 2022: Future changes in daily snowfall events over China based on CMIP6 models. Atmospheric and Oceanic Science Letters, 15, 100137.

    27.Chen Huopo*, HeWenyue, SunJianqi, and ChenLefeng, 2022: Increases of extreme heat-humidity days endanger future populations living in China. Environmental Research Letters, 17, 064013.

    28.Xu Huiwen, ChenHuopo*, and WangHuijun, 2022: Detectablehumaninfluence onchanges inprecipitationextremes across China. Earth’s Future, 10, e2021EF002409.

    29.Xu Huiwen, ChenHuopo*, and WangHuijun, 2022: Future changes in precipitation extremes across China based on CMIP6 models. International Journal of Climatology, 42, 635-651.

    30.Lin Wenqing, and ChenHuopo*, 2022: Changes in the spatial-temporal characteristics of daily snowfall events over the Eurasian continent from 1980 to 2019. International Journal of Climatology, 42, 1841-1853.

    31.LiuYong, ChenHuopo*, LiHua, ZhangGuoqing, and WangHuijun, 2021: What induces the interdecadal shift of the dipole patterns of summer precipitation trends over the Tibetan Plateau?. International Journal of Climatology, 41, 5159-5177.

    32.Xu Huiwen, ChenHuopo*, and WangHuijun, 2021: Interannual variation in summer extreme precipitation over Southwestern China and the possible associated mechanisms. International Journal of Climatology, 41, 3425-3438.

    33.Liu Yong, ChenHuopo*, and HuXiaoyu, 2021: The unstable relationship between the precipitation dipole pattern in the Tibetan Plateau and summer NAO. Geophysical Research Letters, 48, e2020GL091941. doi.org/10.1029/2020GL091941.

    34.Chen Huopo*, andSunJianqi, 2021: Significant increase of the global population exposure to increased precipitation extremes in the future. Earth's Future, 9, e2020EF001941.

    35.Chen Huopo*, and SunJianqi, 2021: Anthropogenic influence has increased climate extreme occurrence over China. Science Bulletin, 66, 749-752.

    六、荣誉获奖:

    1、2024年度江苏省自然科学奖一等奖(第四完成人)

    2、2023年度中央和国家机关“四好”党员

    3、2023年度科爱十周年最佳论文奖

    4、2020年度中国科学院大气物理研究所“学笃风正”创新贡献奖

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