logo
ResearchBunny Logo
Slower-decaying tropical cyclones produce heavier precipitation over China

Earth Sciences

Slower-decaying tropical cyclones produce heavier precipitation over China

Y. Lai, X. Gu, et al.

This research conducted by Yangchen Lai, Xihui Gu, Lihong Wei, and others reveals a significant 45% slowdown in the decay rate of tropical cyclones making landfall in China. The findings highlight the urgent need for improved flood management strategies due to increased flood risks associated with slower decays and rising precipitation.

00:00
00:00
~3 min • Beginner • English
Abstract
The post-landfall decay of tropical cyclones (TC) is often closely linked to the magnitude of damage to the environment, properties, and the loss of human lives. Despite growing interest in how climate change affects TC decay, data uncertainties still prevent a consensus on changes in TC decay rates and related precipitation. Here, after strict data-quality control, we show that the rate of decay of TCs after making landfall in China has significantly slowed down by 45% from 1967 to 2018. We find that, except the warmer sea surface temperature, the eastward shift of TC landfall locations also contributes to the slowdown of TC decay over China. That is TCs making landfall in eastern mainland China (EC) decay slower than that in southern mainland China (SC), and the eastward shift of TCs landfall locations causes more TCs landfalling in EC with slower decay rate. TCs making landfall in EC last longer at sea, carry more moisture upon landfall, and have more favorable dynamic and thermodynamic conditions sustaining them after landfall. Observational evidence shows that the decay of TC-induced precipitation amount and intensity within 48 h of landfall is positively related to the decay rate of landfalling TCs. The significant increase in TC-induced precipitation over the long term, due to the slower decay of landfalling TCs, increases flood risks in China's coastal areas. Our results highlight evidence of a slowdown in TC decay rates at the regional scale. These findings provide scientific support for the need for better flood management and adaptation strategies in coastal areas under the threat of greater TC-induced precipitation.
Publisher
npj Climate and Atmospheric Science
Published On
May 03, 2024
Authors
Yangchen Lai, Xihui Gu, Lihong Wei, Liangyi Wang, Louise J Slater, Jianfeng Li, Donglei Shi, Mingzhong Xiao, Lunche Wang, Yansong Guan, Dongdong Kong, Xiang Zhang
Tags
tropical cyclones
decay rate
climate change
flood risks
precipitation
China
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 12+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny