Decoding the Dynamics of Global Climate Change Hotspots: Spatial-Temporal Evolution and Shifting Drivers
ID:311 View Protection:ATTENDEE Updated Time:2025-03-27 15:24:01 Hits:507 Oral Presentation

Start Time:2025-04-19 16:20(Asia/Shanghai)

Duration:10min

Session:S1-11 专题1.11 极端气候事件的形成机理与预测技术 » S1-11专题1.11 极端气候事件的形成机理与预测技术

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Abstract
This study introduces a novel dynamical climate change hotspot index (SED), capturing variations in temperature and precipitation through average, variability, and extreme values, and utilizes EEMD to analyze nonlinear long-term trends globally. Results highlight pronounced regional disparities, with regions like the Tibetan Plateau, Mongolia, and the Arabian Peninsula emerging as persistent hotspots due to rapid warming responses. In contrast, the southeastern United States exhibits early-stage declines, though vulnerability to extreme weather is growing. A latitude-time analysis reveals asymmetric hemispheric trajectories, driven by distinct climate dynamics and anthropogenic influences. The transition from systemic temperature-driven hotspots to localized, extreme event-driven phenomena underscores the intensifying impact of extreme climate events. These findings provide critical insights into the spatial and temporal evolution of climate change impacts and highlight the necessity of region-specific adaptation strategies.
 
Keywords
Climate change, Hotspots, EEMD, Evolution, Extreme events
Speaker
季飞
副教授 兰州大学

Submission Author
季飞 兰州大学
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  • Conference Date

    Apr 17

    2025

    to

    Apr 21

    2025

  • Apr 10 2025

    Draft paper submission deadline

  • Apr 28 2025

    Registration deadline

Sponsored By
中国科学院大气物理研究所
Organized By
中国科学院大气物理研究所
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