Urbanization-induced compression effect accelerates and amplifies dry-wet abrupt alternations in Chinese cities.
作者:Shuzhe Huang, Yuan Gan, Chao Wang, Siqi Wang, Jing Chen, Xiang Zhang, Zeqiang Chen, Xi-Hui Gu, Jun Xia, Neng-Cheng Chen, Jian-Ya Gong · 发表于:Science Bulletin · 年份:2026 · DOI:10.1016/j.scib.2026.01.078 · 被引用次数:7 · 研究领域:Medicine
Rapid urbanization substantially alters hydrometeorological extremes, yet its effects on compound dry-wet abrupt alternation (DWAA) remain poorly understood. Here, we present the first multi-scale analysis of urbanization effects on DWAA across Chinese cities by integrating high-resolution observations, model simulations, and future projections. We reveal a pronounced urbanization-induced compression effect in approximately 35% of cities, whereby urbanization simultaneously accelerates transitions and amplifies the severity of both dry-to-wet and wet-to-dry alternations. Pixel-scale analysis demonstrates that 50%-95% of intra-urban areas experience this compression effect, with the strongest impacts at rapidly expanding fringes. Weather Research and Forecasting simulations further attribute these changes to coupled atmospheric-surface modifications, including enhanced urban heat/dry island and boundary layer dynamics. Under future scenarios, exposed urban populations increase nearly twofold, with DWAA transitions compressed by 14.11% and severity intensified by 48.94% by 2100. Our findings highlight the need to re-evaluate and adapt targeted urban water management strategies for compressed hydroclimatic timescales and amplified compound extremes.