Spatial Heterogeneity Analysis of Short-Duration Extreme Rainfall Events in Megacities in China

Given the fact that researchers require more specific spatial rainfall information for storm flood calculation, hydrological risk assessment, and water budget estimates, there is a growing need to analyze the spatial heterogeneity of rainfall accurately. This paper provides insight into rainfall spa...

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Main Authors: Qi Zhuang, Shuguang Liu, Zhengzheng Zhou
Format: Article
Language:English
Published: MDPI AG 2020-11-01
Series:Water
Subjects:
Online Access:https://www.mdpi.com/2073-4441/12/12/3364
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spelling doaj-90049579348e4a588615469a267e550c2020-12-01T00:04:29ZengMDPI AGWater2073-44412020-11-01123364336410.3390/w12123364Spatial Heterogeneity Analysis of Short-Duration Extreme Rainfall Events in Megacities in ChinaQi Zhuang0Shuguang Liu1Zhengzheng Zhou2Department of Hydraulic Engineering, Tongji University, Shanghai 200092, ChinaDepartment of Hydraulic Engineering, Tongji University, Shanghai 200092, ChinaDepartment of Hydraulic Engineering, Tongji University, Shanghai 200092, ChinaGiven the fact that researchers require more specific spatial rainfall information for storm flood calculation, hydrological risk assessment, and water budget estimates, there is a growing need to analyze the spatial heterogeneity of rainfall accurately. This paper provides insight into rainfall spatial heterogeneity in urban areas based on statistical analysis methods. An ensemble of short-duration (3-hr) extreme rainfall events for four megacities in China are extracted from a high-resolution gridded rainfall dataset (resolution of 30 min in time, 0.1° × 0.1° in space). Under the heterogeneity framework using Moran’s I, LISA (Local Indicators of Spatial Association), and semi-variance, the multi-scale spatial variability of extreme rainfall is identified and assessed in Shanghai (SH), Beijing (BJ), Guangzhou (GZ), and Shenzhen (SZ). The results show that there is a pronounced spatial heterogeneity of short-duration extreme rainfall in the four cities. Heterogeneous characteristics of rainfall within location, range, and directions are closely linked to the different urban growth in four cities. The results also suggest that the spatial distribution of rainfall cannot be neglected in the design storm in urban areas. This paper constitutes a useful contribution to quantifying the degree of spatial heterogeneity and supports an improved understanding of rainfall/flood frequency analysis in megacities.https://www.mdpi.com/2073-4441/12/12/3364extreme rainfallshort durationspatial heterogeneitymegacities
collection DOAJ
language English
format Article
sources DOAJ
author Qi Zhuang
Shuguang Liu
Zhengzheng Zhou
spellingShingle Qi Zhuang
Shuguang Liu
Zhengzheng Zhou
Spatial Heterogeneity Analysis of Short-Duration Extreme Rainfall Events in Megacities in China
Water
extreme rainfall
short duration
spatial heterogeneity
megacities
author_facet Qi Zhuang
Shuguang Liu
Zhengzheng Zhou
author_sort Qi Zhuang
title Spatial Heterogeneity Analysis of Short-Duration Extreme Rainfall Events in Megacities in China
title_short Spatial Heterogeneity Analysis of Short-Duration Extreme Rainfall Events in Megacities in China
title_full Spatial Heterogeneity Analysis of Short-Duration Extreme Rainfall Events in Megacities in China
title_fullStr Spatial Heterogeneity Analysis of Short-Duration Extreme Rainfall Events in Megacities in China
title_full_unstemmed Spatial Heterogeneity Analysis of Short-Duration Extreme Rainfall Events in Megacities in China
title_sort spatial heterogeneity analysis of short-duration extreme rainfall events in megacities in china
publisher MDPI AG
series Water
issn 2073-4441
publishDate 2020-11-01
description Given the fact that researchers require more specific spatial rainfall information for storm flood calculation, hydrological risk assessment, and water budget estimates, there is a growing need to analyze the spatial heterogeneity of rainfall accurately. This paper provides insight into rainfall spatial heterogeneity in urban areas based on statistical analysis methods. An ensemble of short-duration (3-hr) extreme rainfall events for four megacities in China are extracted from a high-resolution gridded rainfall dataset (resolution of 30 min in time, 0.1° × 0.1° in space). Under the heterogeneity framework using Moran’s I, LISA (Local Indicators of Spatial Association), and semi-variance, the multi-scale spatial variability of extreme rainfall is identified and assessed in Shanghai (SH), Beijing (BJ), Guangzhou (GZ), and Shenzhen (SZ). The results show that there is a pronounced spatial heterogeneity of short-duration extreme rainfall in the four cities. Heterogeneous characteristics of rainfall within location, range, and directions are closely linked to the different urban growth in four cities. The results also suggest that the spatial distribution of rainfall cannot be neglected in the design storm in urban areas. This paper constitutes a useful contribution to quantifying the degree of spatial heterogeneity and supports an improved understanding of rainfall/flood frequency analysis in megacities.
topic extreme rainfall
short duration
spatial heterogeneity
megacities
url https://www.mdpi.com/2073-4441/12/12/3364
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AT shuguangliu spatialheterogeneityanalysisofshortdurationextremerainfalleventsinmegacitiesinchina
AT zhengzhengzhou spatialheterogeneityanalysisofshortdurationextremerainfalleventsinmegacitiesinchina
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