电子邮件: jiangj@lasg.iap.ac.cn
通信地址: 北京市朝阳区北辰西路81号院
邮政编码: 100029
招生信息
招生专业
招生方向
教育背景
工作经历
2023-12--现在 中国科学院大气物理研究所 副研究员
2021-07--2023-12 中国科学院大气物理研究所 特别研究助理/博士后
发表论文
[1] Jiang, J., Zhou, T., Qian, Y., Li, C., Song, F., Li, H., Chen, X., Zhang, W., & Chen, Z. (2023). Precipitation regime changes in High Mountain Asia driven by cleaner air. Nature, 623: 544-549.
[2] Jiang, J., & Zhou, T. (2023). Agricultural drought over water-scarce Central Asia aggravated by internal climate variability. Nature Geoscience, 16(2), 1−8.
[3] Jiang, J., & Zhou, T. (2026). A strengthened and southward-shifted westerly jet mitigates warming-induced drying across Asian drylands. Science Advances, 12: eaed7890.
[4] Jiang, J., Zhou, T., & Zhang, W. (2025). Aerosol mitigation matters to future water availability in the global monsoon region. Science Bulletin, 70(14): 2312-2321.
[5] Jiang, J.*, Zhou, T., Man, W., & Zuo, M. (2026). Contrasting changes in rainfall structure between monsoon and adjacent dry regions under stratospheric aerosol injection. Journal of Geophysical Research: Atmospheres, 131: e2026JD046329.
[6] Jiang, J.*, & Zhou, T. (2025). Interdecadal Pacific oscillation phase dominants near-term global monsoon precipitation changes. Environmental Research Letters, 20: 064002.
[7] Jiang, J., & Zhou, T. (2025). Epochal westerly changes driven by shifts in anthropogenic aerosol emissions across Eurasia since 1940. Journal of Climate. 38(22): 6745-6761.
[8] Jiang, J., Zhou, T., & Cao, B. (2024). Surface warming constraint projects less permafrost thawing in High Mountain Asia. Geophysical Research Letters, 51, e2024GL110465.
[9] Jiang, J., & Zhou, T. (2023). Observational constraint on the contributions of greenhouse gas emission and anthropogenic aerosol removal to Tibetan Plateau future warming. Geophysical Research Letters, 50(17).
[10] Lu, C., Jiang, J.*, Chen, R., Ullah, S., Yu, R., Lott, F., Tett, S., & Dong, B. (2021). Anthropogenic influence on 2019 May-June extremely low precipitation in southwestern China. Bulletin of the American Meteorological Society, 102(1), S97–S102.
[11] Jiang, J., & Zhou, T. (2021). Human-induced rainfall reduction in drought-prone northern Central Asia. Geophysical Research Letters, 48(7).
[12] Jiang, J., Zhou, T., Chen, X., & Wu, B. (2021). Central Asian precipitation shaped by the tropical Pacific decadal variability and the Atlantic multidecadal variability. Journal of Climate, 34(18), 7541–7553.
[13] Jiang, J., Zhou, T., Chen, X., & Zhang, L. (2020). Future changes in precipitation over Central Asia based on CMIP6 projections. Environmental Research Letters, 15(5), 054009.
[14] Jiang, J., Zhou, T., Wang, H., Qian, Y., Noone, D., & Man, W. (2020). Tracking moisture sources of precipitation over central Asia: A study based on the water-source-tagging method. Journal of Climate, 33(23), 10339–10355.
[15] Jiang, J., & Zhou, T. (2019). Global monsoon responses to decadal sea surface temperature variations during the twentieth Century: Evidence from AGCM simulations. Journal of Climate, 32(22), 7675–7695.
[16] Jiang, J., Zhou, T., & Zhang, W. (2019). Evaluation of satellite and reanalysis precipitable water vapor data sets against radiosonde observations in Central Asia. Earth and Space Science, 6(7), 1129–1148.
[17] 江洁, 周天军, 张文霞. (2022). 近60年来中国主要流域极端降水演变特征. 大气科学, 46(3), 707−724.
[18] 江洁, 周天军, 吴波, 邹立维. (2019). 耦合模式FGOASLS-s2海洋同化试验模拟的西北太平洋海气相互作用特征, 大气科学, 43(3), 467−482.