电子邮件: sidong@mail.iap.ac.cn
通信地址: 北京市朝阳区德胜门外祁家豁子华严里40号
邮政编码:
研究领域
年代际气候变化、气候模拟及预测、东亚季风、灾害性天气气候机理
招生信息
硕士及博士研究生
招生专业
招生方向
教育背景
工作经历
2022.01—今, 中国科学院大气物理研究所,研究员
2018.02—2021.12,中国科学院大气物理研究所,副研究员
2016.03—2016.09,美国国家大气研究中心气候与全球动力实验室,访问学者
2014.06—2014.09,美国国家海洋和大气管理局气候预测中心,访问学者
2010.06—2018.01,中国气象局国家气候中心
出版信息
Si, D., A. Hu, G. A. Meehl, L. Yu, N. Rosenbloom, and D. Jiang, 2025: Distinct roles of Atlantic multidecadal variability and external forcings on East Asian summer precipitation. Journal of Climate, 38(22), 6493–6503.
Ge, Y., J. Miao, D. Si, and D. Jiang, 2025: Interdecadal changes in the interannual variability of the East Asian winter temperature since 1880. Journal of Climate, 38(22), 6527–6544.
Xu, Y., D. Si, L. Cao, et al., 2025: The changes in heating and cooling energy demand in Beijing and Shanghai under global warming. Journal of Applied Meteorology and Climatology, 64(5), 413–424.
Yu, Z., D. Si, Y. Ding, X. Gao, 2025: Tropical Pacific Ocean influence on recent changes in summer rainfall over the Yangtze-Huai River valley. International Journal of Climatology, 45(7), e8819.
Han, Y., D. Si, X. Lang, et al., 2025: Impact of spring Barents Sea ice on summer Tibetan Plateau precipitation. Advances in Atmospheric Sciences, 42(10),2184−2194.
Han, Y., D. Jiang, D. Si, Y. Ma, W. Ma, W. Hu, 2024: Influence of winter northern Eurasian snow depth on the early summer Tibetan Plateau heat source during 1950-2019. Climate Dynamics, 62, 4253–4266.
Han, Y., D. Jiang, D. Si, Y. Ma, W. Ma, 2024: Time-lagged effects of spring atmospheric heat source over the Tibetan Plateau on summer precipitation in Northeast China during 1961‒2020: Role of soil moisture. Advances in Atmospheric Sciences, 41(8), 1527–1538.
Si, D., A. Hu, D. B. Jiang, et al., 2023: Atmospheric teleconnection associated with the Atlantic multidecadal variability in summer: Assessment of the CESM1 model. Climate Dynamics, 60(3-4), 1043–1060.
Yu, L. W., D. Si, et al., 2023: Tibetan Plateau booster effect on the influence of Atlantic multidecadal variability on the East Asian summer rainfall. Journal of Climate, 36(10), 3437–3452.
Zhang, Y. X., D. Si, Y. J, Liu, et al., 2023: The stratosphere-troposphere synergetic effect on the extreme low temperature event over China in late November 2022. Advances in Climate Change Research, 14(5), 671–680.
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): e1140.
Si, D., and L. W. Yu, 2023: Impact of the Atlantic multidecadal variability on East Asian summer climate in idealized simulations. Atmospheric and Oceanic Science Letters. 16(5), 100399.
Ge, Y. C., J. P. Miao, X. M. Lang, D. Si, and D. B. Jiang, 2023: Combined impacts of the Pacific decadal oscillation and Atlantic multidecadal oscillation on summer precipitation in eastern China during the medieval climate anomaly and little ice age. Journal of Geophysical Research: Atmospheres, 128(16), e2023JD038920.
Zhang, Y., D. Si, Y. Ding, et al., 2022: Influence of major stratospheric sudden warming on the unprecedented East Asian cold wave in January 2021. Advances in Atmospheric Sciences, 39(4), 576–590.
Si, D., D. Jiang, and Y. Ding, 2021: Synergistic impacts of the Atlantic and Pacific oceans on the interdecadal variations of summer rainfall in Northeast Asia. Journal of Meteorological Research, 35(5), 844–856.
Si, D., Y. Ding, and D. Jiang, 2021: A low-frequency downstream development process leading to the outbreak of a mega-cold wave event in East Asia. Journal of the Meteorological Society of Japan, 99(5), 1185–1200.
Si, D., D. Jiang, A. Hu, et al., 2021: Variations in northeast Asian summer precipitation driven by the Atlantic multidecadal oscillation. International Journal of Climatology, 41(3), 1682–1695.
Si, D., D. Jiang, and H. J. Wang, 2020: Intensification of the Atlantic multidecadal variability since 1870: Implications and possible causes. Journal of Geophysical Research: Atmospheres, 125(11), e2019JD030977.
Xu, Y., P. Zhao, D. Si, et al., 2020: Development and preliminary application of a gridded surface air temperature homogenized dataset for China. Theoretical and Applied Climatology, 139(1-2), 505–516.
Jiang, D., D. Si, et al., 2020: Evaluation of East Asian summer climate prediction from the CESM large-ensemble initialized decadal prediction project. Journal of Meteorological Research, 34(02), 67−78.
Si, D., A. Hu, H. J. Wang, and Q. C. Chao, 2019: Predicting the Atlantic multidecadal variability from initialized simulations. Journal of Climate, 32(24), 8701–8711.
Si, D., P. Zhao, and M. H. Wang, 2019: Inter-decadal change of the middle-upper tropospheric land-sea thermal contrast in the late 1990s and the associated Northern Hemisphere hydroclimate. International Journal of Climatology, 39(7), 3271–3281.
丁一汇, 司东, 柳艳菊, 王遵娅, 李怡, 赵亮, 宋亚芳, 2018: 论东亚夏季风的特征、驱动力与年代际变化. 大气科学, 42(3), 533–558.
Si, D., and A. Hu, 2017: Internally generated and externally forced multidecadal oceanic modes and their influence on the summer rainfall over East Asia. Journal of Climate, 30(20), 8299–8316.
Si, D., and Y. H. Ding, 2016: Oceanic forcings of the interdecadal variability in East Asian summer rainfall. Journal of Climate, 29(21), 7633–7649.
Si, D., Z. Z. Hu, A. Kumar, B. Jha, P. Peng, W. Wang, and R. Han, 2016: Is the interdecadal variation of the summer rainfall over eastern China associated with SST. Climate Dynamics, 46(1-2), 135–146.
Hu, Y. M., D. Si, Y. J. Liu, and L. Zhao, 2016: Investigations on moisture transports, budgets and sources responsible for the decadal variability of precipitation in southern China. Journal of Tropical Meteorology, 22(3), 402–411.
Han, R. Q., H. Wang, Z. Z. Hu, A. Kumar, W. J. Li, L. N. Long, J. K. E. Schemm, P. T. Peng, W. Q. Wang, D. Si, X. L. Jia, M. Zhao, G. A. Vecchi, T. E. Larow, Y. K. Lim, S. D. Schubert, S. J. Camargo, N. Henderson, J. A. Jonas, and K. J. E. Walsh, 2016: An assessment of multimodel simulations for the variability of western North Pacific tropical cyclones and its association with ENSO. Journal of Climate, 29(18), 6401–6423.
Ding, Y. H., D. Si, Y. Sun, Y. J. Liu, and Y. F. Song, 2014: Inter-decadal variations, causes and future projection of the Asian summer monsoon. Engineering Sciences, 12(02), 22–28.
Ding, Y. H., Y. J. Liu, S. J. Liang, X. Q. Ma, Y. X. Zhang, D. Si, P. Liang, Y. F. Song, and J. Zhang, 2014: Interdecadal variability of the East Asian winter monsoon and its possible links to global climate change. Journal of Meteorological Research, 28(5), 693–713.
Si, D., and Y. H. Ding, 2013: Decadal change in the correlation pattern between the Tibetan Plateau winter snow and the East Asian summer precipitation during 1979-2011. Journal of Climate, 26(19), 7622–7634.
Si, D., and Y. H. Ding, 2012: The tropospheric biennial oscillation in the East Asian monsoon region and its influence on the precipitation in China and large-scale atmospheric circulation in East Asia. International Journal of Climatology, 32(11), 1697–1716.
Si, D., and Y. H. Ding, 2012: A numerical simulation of the impact of tropical western Pacific sst anomalies on the decadal shift of the Meiyu belt. Journal of Meteorological Research, 26(4), 467–475.
Si, D., Y. H. Ding, and Y. J. Liu, 2009: Decadal northward shift of the Meiyu belt and the possible cause. Chi. Sci. Bull., 54(24), 4742–4748.
司东, 丁一汇, 柳艳菊, 2009: 全球海气耦合模式(BCC_CM1.0)对江淮梅雨降水预报的检验. 气象学报, 67(6), 947–960.
Si, D., H. M. Xu, M. Wen, and J. H. He, 2008: Analysis of the westward extension of western pacific subtropical high during a heavy rain period over southern China in June 2005. Journal of Tropical Meteorology, 14(2), 93–96.