暴发洪水
环境科学
气候学
大洪水
洪水(心理学)
风暴
对流风暴探测
大气科学
持续时间(音乐)
降水
气候变化
气象学
地理
地质学
心理治疗师
心理学
考古
艺术
文学类
海洋学
作者
Hayley J. Fowler,Geert Lenderink,Andreas F. Prein,Seth Westra,Richard P. Allan,Nikolina Ban,Renaud Barbero,Peter Berg,Stephen Blenkinsop,Hong Xuan,Selma B. Guerreiro,Jan O. Haerter,Elizabeth Kendon,Elizabeth Lewis,Christoph Schaer,Ashish Sharma,Gabriele Villarini,Conrad Wasko,Xuebin Zhang
标识
DOI:10.1038/s43017-020-00128-6
摘要
Short-duration (1–3 h) rainfall extremes can cause serious damage to societies through rapidly developing (flash) flooding and are determined by complex, multifaceted processes that are altering as Earth’s climate warms. In this Review, we examine evidence from observational, theoretical and modelling studies for the intensification of these rainfall extremes, the drivers and the impact on flash flooding. Both short-duration and long-duration (>1 day) rainfall extremes are intensifying with warming at a rate consistent with the increase in atmospheric moisture (~7% K−1), while in some regions, increases in short-duration extreme rainfall intensities are stronger than expected from moisture increases alone. These stronger local increases are related to feedbacks in convective clouds, but their exact role is uncertain because of the very small scales involved. Future extreme rainfall intensification is also modulated by changes to temperature stratification and large-scale atmospheric circulation. The latter remains a major source of uncertainty. Intensification of short-duration extremes has likely increased the incidence of flash flooding at local scales, and this can further compound with an increase in storm spatial footprint to considerably increase total event rainfall. These findings call for urgent climate change adaptation measures to manage increasing flood risks. Short-duration rainfall extremes are determined by complex processes that are affected by the warming climate. This Review assesses the evidence for the intensification of short-duration rainfall extremes, the associated drivers and the implications for flood risks.
科研通智能强力驱动
Strongly Powered by AbleSci AI