An Integrated Approach for the Simulation Modeling and Risk Assessment of Coastal Flooding

The evaluation of storm surge flood risk is vital to disaster management and planning at national, regional and local levels, particularly in coastal areas that are affected more severely by storm surges. The purpose of this paper is to propose a new method that includes two modules for the simulati...

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Main Authors: Yazhi Zheng, Hai Sun
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Water
Subjects:
Online Access:https://www.mdpi.com/2073-4441/12/8/2076
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spelling doaj-3489c806289b4bfc8a6da6edee7ba8742020-11-25T03:45:12ZengMDPI AGWater2073-44412020-07-01122076207610.3390/w12082076An Integrated Approach for the Simulation Modeling and Risk Assessment of Coastal FloodingYazhi Zheng0Hai Sun1College of Engineering, Ocean University of China, Qingdao 266100, ChinaCollege of Engineering, Ocean University of China, Qingdao 266100, ChinaThe evaluation of storm surge flood risk is vital to disaster management and planning at national, regional and local levels, particularly in coastal areas that are affected more severely by storm surges. The purpose of this paper is to propose a new method that includes two modules for the simulation modeling and risk assessment of coastal flooding. One is a hydrodynamic module for simulating the process of the flood inundation coastal inundation arising from storm surge, which is based on a cellular automata (CA) model. The other is a risk assessment module for quantitatively estimating the economic loss by using the inundation data and land use data. The coastal areas of Pearl River estuary in China were taken as a case study. Simulation results are compared to experimental results from MIKE 21 and depth data from a social-media-based dataset, which demonstrates the effectiveness of the CA model. By analyzing flood risk, the flood area and the direct economic losses predicted are close to the actual case incurred, further demonstrating the computational reliability of the proposed method. Additionally, an automatic risk assessment platform is designed by integrating the two modules in a Geographic Information System (GIS) framework, facilitating a more efficient and faster simulation of coastal flooding. The platform can provide the governments as well as citizens of coastal areas with user-friendly, real-time graphics for coastal flood disaster preparation, warning, response and recovery.https://www.mdpi.com/2073-4441/12/8/2076coastal floodinghydrodynamic modelcellular automatarisk assessment
collection DOAJ
language English
format Article
sources DOAJ
author Yazhi Zheng
Hai Sun
spellingShingle Yazhi Zheng
Hai Sun
An Integrated Approach for the Simulation Modeling and Risk Assessment of Coastal Flooding
Water
coastal flooding
hydrodynamic model
cellular automata
risk assessment
author_facet Yazhi Zheng
Hai Sun
author_sort Yazhi Zheng
title An Integrated Approach for the Simulation Modeling and Risk Assessment of Coastal Flooding
title_short An Integrated Approach for the Simulation Modeling and Risk Assessment of Coastal Flooding
title_full An Integrated Approach for the Simulation Modeling and Risk Assessment of Coastal Flooding
title_fullStr An Integrated Approach for the Simulation Modeling and Risk Assessment of Coastal Flooding
title_full_unstemmed An Integrated Approach for the Simulation Modeling and Risk Assessment of Coastal Flooding
title_sort integrated approach for the simulation modeling and risk assessment of coastal flooding
publisher MDPI AG
series Water
issn 2073-4441
publishDate 2020-07-01
description The evaluation of storm surge flood risk is vital to disaster management and planning at national, regional and local levels, particularly in coastal areas that are affected more severely by storm surges. The purpose of this paper is to propose a new method that includes two modules for the simulation modeling and risk assessment of coastal flooding. One is a hydrodynamic module for simulating the process of the flood inundation coastal inundation arising from storm surge, which is based on a cellular automata (CA) model. The other is a risk assessment module for quantitatively estimating the economic loss by using the inundation data and land use data. The coastal areas of Pearl River estuary in China were taken as a case study. Simulation results are compared to experimental results from MIKE 21 and depth data from a social-media-based dataset, which demonstrates the effectiveness of the CA model. By analyzing flood risk, the flood area and the direct economic losses predicted are close to the actual case incurred, further demonstrating the computational reliability of the proposed method. Additionally, an automatic risk assessment platform is designed by integrating the two modules in a Geographic Information System (GIS) framework, facilitating a more efficient and faster simulation of coastal flooding. The platform can provide the governments as well as citizens of coastal areas with user-friendly, real-time graphics for coastal flood disaster preparation, warning, response and recovery.
topic coastal flooding
hydrodynamic model
cellular automata
risk assessment
url https://www.mdpi.com/2073-4441/12/8/2076
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