郭懿萱

发布者:赵诗琳发布时间:2018-09-29浏览次数:42


讲师

中国海洋大学 海洋与大气学院

青岛市松岭路238号,266100

E-mailyixuan.guo@ouc.edu.cn


教育经历:

2016/09-2020/06中国海洋大学大气科学 学士

2020/09-2025/06北京大学气象学 博士

2023/09-2024/09苏黎世联邦理工大学 大气与气候科学研究中心 访问学者


工作经历:

2025/10-至今     中国海洋大学 海洋与大气学院  讲师


代表文章*为通讯作者

Guo, Y.*, Beyerle, U., Bevacqua, E. et al.(2025). European compound flood-heat-flood events associated with Omega patterns cannot be easily reproduced by a fully coupled model. Communications Earth & Environment 6, 491.

Yu, S., Guo, Y., & Fu, Z.* (2025). Modulation of coupled Ural–Okhotsk circulation field on winter extreme cold events over East Asia. Climate Dynamics, 63, 78.

Guo, Y., & Fu, Z.* (2024). On the persistence and related mechanisms for day–night compound humid heat extremes in the Northern Hemisphere. Environmental Research Letters, 19: 064031.

Guo, Y., & Fu, Z.* (2023). Is the western North Pacific subtropical high a necessary condition for heat waves over the mid-lower reaches of the Yangtze River? Climate Dynamics, 62, 665–678.

Guo, Y., Fu, Z.* (2023). Regional coupled and decoupled day–night compound hot extremes over the mid–lower reaches of the Yangtze River: characteristics and mechanisms. Climate Dynamics, 61, 2853–2864.

Guo, Y., Huang, Y. & Fu, Z.* (2023). What causes compound humidity-heat extremes to have different coupling strengths over the mid-lower reaches of the Yangtze River? Climate Dynamics, 60, 4099–4109.

Guo, Y., Huang, Y., & Fu, Z.* (2022). Regional compound humidity-heat extremes in the mid-lower reaches of the Yangtze River: a dynamical systems perspective. Environmental Research Letters, 17: 064032.




主要项目:

2022/01-2025/12国家自然科学基金面上项目“数据驱动的平流层-对流层耦合及其影响的因果量化”,骨干

2020/01-2023/12国家自然科学基金面上项目“时间序列可预报性及其应用”,骨干


教学活动

大气科学概论


学术兼职:

Nature HealthEnvironmental Research: Climate等期刊审稿人


研究兴趣:

复合极端天气事件,非线性动力学,陆-气相互作用,海-气相互作用





Yixuan Guo


Lecture

College of Oceanic and Atmospheric Sciences

Ocean University of China

238 Songling Rd, Qingdao 266100, China

Email: yixuan.guo@ouc.edu.cn


Education

09/2016-06/2020, B.S. in Atmospheric Science, Ocean University of China

09/2020-06/2025, Ph.D. in Meteorology, Peking University

09/2023-09/2024, Visiting Scholar in Institute for Atmospheric and Climate Science, ETH


EMPLOYMENT

12/2025-present, Lecture, Ocean University of China


PUBLICATIONS

Guo, Y.*, Beyerle, U., Bevacqua, E. et al.(2025). European compound flood-heat-flood events associated with Omega patterns cannot be easily reproduced by a fully coupled model. Communications Earth & Environment 6, 491.

Yu, S., Guo, Y., & Fu, Z.* (2025). Modulation of coupled Ural–Okhotsk circulation field on winter extreme cold events over East Asia. Climate Dynamics, 63, 78.

Guo, Y., & Fu, Z.* (2024). On the persistence and related mechanisms for day–night compound humid heat extremes in the Northern Hemisphere. Environmental Research Letters, 19: 064031.

Guo, Y., & Fu, Z.* (2023). Is the western North Pacific subtropical high a necessary condition for heat waves over the mid-lower reaches of the Yangtze River? Climate Dynamics, 62, 665–678.

Guo, Y., Fu, Z.* (2023). Regional coupled and decoupled day–night compound hot extremes over the mid–lower reaches of the Yangtze River: characteristics and mechanisms. Climate Dynamics, 61, 2853–2864.

Guo, Y., Huang, Y. & Fu, Z.* (2023). What causes compound humidity-heat extremes to have different coupling strengths over the mid-lower reaches of the Yangtze River? Climate Dynamics, 60, 4099–4109.

Guo, Y., Huang, Y., & Fu, Z.* (2022). Regional compound humidity-heat extremes in the mid-lower reaches of the Yangtze River: a dynamical systems perspective. Environmental Research Letters, 17: 064032.




Major PROJECTS

2022/01-2025/12, NSFC Project, “Data-driven stratosphere-troposphere coupling and its causal quantification”, Participant

2020/01-2023/12, NSFC Project, “Predictability and potential applications of time series analysis”, Participant


Academic part-time

Reviewers of Nature Health, Environmental Research: Climate, etc


Courses

Introduction to Atmospheric Science


Research Interests

Compound extreme events, nonlinear dynamics, land-air interaction, ocean-atmosphere interaction