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个人信息Personal Information
副教授
教师英文名称:Yuheng Tang
教师拼音名称:tangyuheng
入职时间:2024-09-01
所在单位:人工智能学院(未来技术学院、人工智能产业学院)
办公地点:亚培楼W206
性别:男
学位:理学博士学位
职称:副教授
在职信息:在岗
毕业院校:中国科学院大学
其他联系方式Other Contact Information
邮箱 :
个人简介Personal Profile
汤雨恒,男,博士,副教授,智慧气象研究院成员。2019年6月于南京信息工程大学取得大气科学理学学士学位,2024年6月于中国科学院大气物理研究所取得气象学理学博士学位。研究方向和兴趣包括:气候动力学(南极涛动与青藏高原和东亚气候的联系)、智慧气象(人工智能、因果推断方法在气候学中的应用)等(图1)。目前已发表SCI论文二十余篇,包括Geophysical Research Letters、Environmental Research Letters、Journal of Geophysical Research: Atmospheres等学术期刊,主持国家自然科学基金青年科学基金项目(C类)、江苏省基础研究计划(自然科学基金)青年基金项目等,并获得2024年北京市优秀毕业生称号。
预计2026年有学/专硕名额,欢迎报考,一起合作~
对科研感兴趣的本科同学也可以一起做些有趣的研究~
个人主页
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ResearchGate学术主页网址:https://www.researchgate.net/profile/Yuheng-Tang
Google学术主页网址:https://scholar.google.com/citations?user=_9QylpgAAAAJ&hl=en

图1. 研究方向技术路线图
承担课程
本科生课程:《气象遥感大数据分析》、《机器学习》、《气象遥感大数据分析综合实践》、《Python气象应用实践》、《智慧气象综合实践》、《信息检索》
学术兼职
担任气象学和人工智能领域npj Climate and Atmospheric Science、Communications Earth & Environment、Journal of Geophysical Research - Machine Learning and Computation 等国际权威期刊审稿人
工作经历
2024年12月 - 至今,南京信息工程大学,副教授
2024年9月 - 2024年12月,南京信息工程大学,讲师
教育经历
2019年9月 - 2024年6月,中国科学院大气物理研究所,气象学专业,硕博连读,导师:段安民 研究员
2015年9月 - 2019年6月,南京信息工程大学,大气科学专业,学士
已发表论文
20. Xiao C, Duan A, Tang Y, et al. Machine learning prediction of summer extreme precipitation days in the middle and lower Yangtze River with SHAP explanation[J]. Atmospheric Research, 2025: 108614. (期刊分区:Q1)
19. Xiao C, Duan A, Wu G, Tang Y, et al. Antarctic sea ice anomaly: Its influence on interannual summer rainfall variability in East Asia and Adjacent Seas. Atmospheric Research, 2025: 108598. (期刊分区:Q1)
18. Duan A, Li X, Hu W,..., Tang Y, et al. Climate teleconnections among the Earth’s three poles. Science Bulletin, 2025. (期刊分区:Q1)
17. Tang Y, Hu W, Duan A, Hu D. Causal inference and mediation for summer precipitation over middle and lower reaches of the Yangtze River. Environmental Research Letters, 2025. (期刊分区:Q1)
16. Xin Y, Hu W, Duan A, Tang B, Tang Y. Evaluation of the CMIP6 models for simulating the trend of the Barents-Kara Sea compound heatwaves in boreal autumn. Atmospheric Research, 2025, 320, 108077. (期刊分区:Q1)
15. Tang, Y., & Duan, A. (2024). Linkage between the boreal spring Antarctic oscillation and the temperature dipole mode over the Tibetan Plateau in summer. Atmospheric Research, 297, 107128. (期刊分区:Q1)
14. Tang, Y., & Duan, A. (2023). Asymmetry of the Antarctic Oscillation in austral autumn. Geophysical Research Letters, 50(21), e2023GL105678. (期刊分区:Q1)
13. Tang, Y., Duan, A., & Hu, D. (2023). Influence of the Antarctic oscillation on summer precipitation over East Asia. Atmospheric Research, 292, 106847. (期刊分区:Q1)
12. Tang, Y., Duan, A., Xiao, C., & Xin, Y. (2022). The prediction of the Tibetan Plateau thermal condition with machine learning and Shapley additive explanation. Remote Sensing, 14(17), 4169. (期刊分区:Q1)
11. Tang, Y., Duan, A., & Hu, J. (2022). Surface heating over the Tibetan Plateau associated with the Antarctic Oscillation. Journal of Geophysical Research: Atmospheres, 127(17), e2022JD036851. (期刊分区:Q1)
10. Tang, Y., & Duan, A. (2021). Using deep learning to predict the East Asian summer monsoon. Environmental Research Letters, 16(12), 124006. (期刊分区:Q1)
9. Xiao, C., Duan, A., Yao, Y., Tang, Y., & Wang, Q. (2024). Role of the subtropical southern Indian Ocean in the interannual variability of Antarctic summer sea ice. Atmospheric Research, 311, 107723. (期刊分区:Q1)
8. Xin, Y., Hu, W., Duan, A., Tang, B., & Tang, Y. (2024). Mechanism for compound daytime-nighttime heatwaves in the Barents–Kara Sea during the boreal autumn and their relationship with sea ice variability. Weather and Climate Extremes, 45, 100712. (期刊分区:Q1)
7. Duan, A., Wu, G., Wang, B., Turner, A. G., Hu, J., Hu, W., ... & Tang, Y. (2024). Drivers of East Asian summer monsoon variability: Global oceans and the Tibetan Plateau. Science Bulletin. (期刊分区:Q1)
6. Hu, D., Duan, A., Tang, Y., Tang, B., & Zhang, P. (2024). Inter-model spread in East Asian Summer Monsoon onset timing linked to the tropical Pacific and Indian oceans' mean state in CMIP6 models. Atmospheric Research, 299, 107205. (期刊分区:Q1)
5. Xiao, C., Duan, A., Wu, G., Tang, Y., Peng, Y., & Hu, D. (2024). Interannual variability of August precipitation in China associated with the Antarctic sea ice anomaly. Journal of Geophysical Research: Atmospheres, 129(6), e2023JD040236. (期刊分区:Q1)
4. Gao, K., Tang, Y., Chen, D., Wang, J., & Duan, A. (2023). Influence of Arctic Sea ice and Interdecadal Pacific Oscillation on the recent increase of winter extreme snowfall in Northeast China. Atmospheric Research, 295, 107030. (期刊分区:Q1)
3. Hu, D., Duan, A., Tang, Y., & Yu, W. (2023). Delayed onset of the tropical Asian summer monsoon in CMIP6 can be linked to the cold bias over the Tibetan Plateau. Environmental Research Letters, 18(11), 114005. (期刊分区:Q1)
2. Yao, Y., Duan, A., Hu, J., & Tang, Y. (2023). Decadal modulation of the Atlantic meridional mode on the West Antarctic climate during austral winter. Journal of Climate, 36(17), 6091-6109. (期刊分区:Q1)
1. Duan, A., Peng, Y., Liu, J., Chen, Y., Wu, G., Holland, D. M., ..., Tang, Y., & Li, X. (2022). Sea ice loss of the Barents-Kara Sea enhances the winter warming over the Tibetan Plateau. npj Climate and Atmospheric Science, 5(1), 26. (期刊分区:Q1)

