洪水淹没绘图和生态水力学分析,以最大限度地减少支流的粮食排放

Ziana Ziana, A. Azmeri, A. Yulianur, E. Meilianda, M. Mubarak
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引用次数: 0

摘要

生态水力分析从支流的布置开始。本研究利用DEMNAS数据进行空间分析,利用ArcGIS对洪水淹没区域进行制图,以最大限度地减少下游洪水径流的排放。使用HEC-RAS版本5.0.7分析回归期洪水点。所需的数据是河流的横截面、断面之间的距离、曼宁粗糙度数、汛期洪流量和河流坡度。地形图、流域和洪水水位之间的整合,可以显示可能受到淹没洪水影响的区域,从而计算洪水淹没极限和洪水淹没面积。本研究考察了适当的生态水力设计,以减少流量,确定容易发生洪水的位置,并定量描述洪水影响的程度。结果采用生态水工法得到的设计边界宽度为100 m,在现有河界布置前,淹没高度为0.30 ~ 1.13 m,河界布置后,流量可减少到113.09 ~ 209 m3/s,淹没高度为0 ~ 0.31 m。研究结果表明,边界布置可以为防洪措施提供效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mapping of Flood Inundation and Eco-hydraulic Analyses to Minimize Food Discharge in Tributaries
Eco-hydraulic analyses begin with the arrangement of tributaries. This research aimed to minimize the discharge of flood run-off downstream and map the flood inundation by spatial analysis uses DEMNAS data and mapping of flood inundation areas using ArcGIS. Analysis of return period flood points using HEC-RAS version 5.0.7. The data needed is the cross section of the river, the distance between the sections, the Manning's roughness number, the return period flood discharge and the slope of the river. The integration between topographic maps, watersheds and flood water levels can display areas that are potentially affected by inundation floods, so that the flood inundation limits and flood inundation areas can be calculated. This research examined proper eco-hydraulics design so that it could reduce discharge, identify locations prone to flooding, and describe the magnitude of the flood impact quantitatively. The results eco-hydraulic method obtained the design border width of 100 m, the condition before the existing river border arrangement was carried out, the inundation height was 0.30 – 1.13 m and after the river border arrangement the discharge could be reduced to 113.09 – 209 m3/s and the inundation height is 0 – 0.31 m. Based on the research results, it is known that border arrangement can provide benefits for flood control measures.
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