Global expansion of tropical cyclone precipitation footprint

Author:

Qin LianjieORCID,Zhu LaiyinORCID,Liu BaoyinORCID,Li ZixuanORCID,Tian Yugang,Mitchell GordonORCID,Shen Shifei,Xu WeiORCID,Chen JianguoORCID

Abstract

AbstractPrecipitation from tropical cyclones (TCs) can cause massive damage from inland floods and is becoming more intense under a warming climate. However, knowledge gaps still exist in changes of spatial patterns in heavy TC precipitation. Here we define a metric, DIST30, as the mean radial distance from centers of clustered heavy rainfall cells (> 30 mm/3 h) to TC center, representing the footprint of heavy TC precipitation. There is significant global increase in DIST30 at a rate of 0.34 km/year. Increases of DIST30 cover 59.87% of total TC impact areas, with growth especially strong in the Western North Pacific, Northern Atlantic, and Southern Pacific. The XGBoost machine learning model showed that monthly DIST30 variability is majorly controlled by TC maximum wind speed, location, sea surface temperature, vertical wind shear, and total water column vapor. TC poleward migration in the Northern Hemisphere contributes substantially to the DIST30 upward trend globally.

Funder

The Faculty Research and Creative Activities Award from Western Michigan University

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

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