Flood Risk Assessment of the Middle Reach of the Helmand River, Afghanistan

IF 0.7 Q4 GEOSCIENCES, MULTIDISCIPLINARY Journal of Disaster Research Pub Date : 2024-04-01 DOI:10.20965/jdr.2024.p0455
Karimullah Sefat, R. Tsubaki
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引用次数: 0

Abstract

The middle reach of the Helmand River is prone to floods, and flood hazard analysis is necessary to manage the flood risk. As the study site is a less-developed basin where available geographical and hydrological data are limited, we must utilize available limited data to conduct the flood hazard analysis. A frequency analysis of the annual peak flow rate was performed using available hydrological data for making representative flood hydrographs. A land-use map is derived by classifying recent Landsat images. Digital elevation model derived by Advanced Land Observing Satellite, roughness coefficient correlated with the land-use map, and the representative flood hydrographs are fed into hydraulic model HEC-RAS 2D. Flood inundation area, depth, and velocity for different flood return periods are estimated. Based on local hazard intensity and vulnerability, risk maps for evacuation and vulnerability of crops on the floodplain are obtained. Spatial flood risk characteristics differ at the upstream and downstream reaches because of distinct floodplain topography. Flood countermeasures for each reach are proposed based on the spatial characteristics of the flood risk. To provide risk information for residents within the region, the flood hazard, risk, and damage maps derived in this study are published as a web map application and a mobile native application.
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阿富汗赫尔曼德河中游洪水风险评估
赫尔曼德河中游容易发生洪水,因此有必要进行洪水危害分析,以管理洪水风险。由于研究地点属于欠发达流域,可用的地理和水文数据有限,因此我们必须利用现有的有限数据进行洪水危害分析。利用现有水文数据对年峰值流量进行频率分析,以绘制具有代表性的洪水水文图。通过对最近的大地遥感卫星图像进行分类,绘制出土地利用图。高级陆地观测卫星得出的数字高程模型、与土地利用图相关的粗糙度系数以及代表性洪水水文图被输入水力模型 HEC-RAS 2D。估算出不同洪水重现期的洪水淹没面积、深度和速度。根据当地的灾害强度和脆弱性,得出洪泛区农作物的疏散和脆弱性风险图。由于洪泛区地形不同,上游和下游的洪水风险空间特征也不同。根据洪水风险的空间特征,提出了各河段的防洪对策。为了向区域内的居民提供风险信息,本研究得出的洪水灾害、风险和损失地图以网络地图应用程序和移动本地应用程序的形式发布。
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来源期刊
Journal of Disaster Research
Journal of Disaster Research GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
1.60
自引率
37.50%
发文量
113
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