Jun Gu
Also known as: 顾俊
Fudan University, University of Science and Technology of China
About
I earned my bachelor's degree in atmospheric science from the USTC in 2020. Since then, I was fortunate to acquire Ph.D. under the supervision of Prof. Chun Zhao at USTC in 2025.
My research primarily focuses on the development (optimization) and application of global storm-resolving models. Specifically, my work includes:
1. Investigating the predictability of extreme events, such as tropical cyclones and extreme precipitation in extended time scales;
2. Improving cumulus and cloud microphysics parameterization in models;
3. Conducting climate attribution studies with a global perspective;
4. Enhancing model completeness and computational efficiency!
I am dedicated to contributing to the development of global high-resolution atmospheric/Earth models, which I hope will become a vital tool to protect us in an increasingly warming and chaotic world.
Employment
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Fudan University Postdoctoral Research Scientist2025 - 2027
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University of Science and Technology of China Postdoctoral Research Scientist2025 - 2025
Education
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University of Science and Technology of China Ph.D.2020 - 2025
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University of Science and Technology of China B.S.2016 - 2020
Projects & Funding
Projects & funding information is unavailable.
Publications (21)
- Simulating Martian Atmospheric Processes and Local Dust Events with a Global Variable-Resolution Model (iAMAS-Mars) Save
- The impact of ERA5 assimilation-window discontinuities on convection-permitting forecasts of extreme precipitation: a case study of the July 2023 North China heavy rainfall Save
- Impacts of lake on diurnal evolution of surface PM2.5 concentrations around a typical megacity of China Save
- Investigating Climate Change Impacts on the 2020 Extreme Meiyu Through Global Variable‐Resolution Ensemble Subseasonal Hindcasts Save
- Dust impacts on the Indian summer monsoon: chaotic or physical effect? Save
- Comprehensive evaluation of iAMAS (v1.0) in simulating Antarctic meteorological fields with observations and reanalysis Save
- Modeling urban pollutant transport at multiple resolutions: impacts of turbulent mixing Save
- Fast Warming Over the Mongolian Plateau a Catalyst for Extreme Rainfall Over North China Save
- Excessive equatorial light rain causes modeling dry bias of Indian summer monsoon rainfall Save
- Pronounced advance on typhoon track forecast with global convection-permitting model Save