Watershed Delineation from DEM by Model Builder in ArcGIS

Ali Sadiq Abbas
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Abstract

The water level fluctuates continuously at local, continental, and global levels. Consequently, remote sensing offers extensive data for assessing the location, extent, and variability of change, including the causes and changes that occur and the reactions and repercussions of change. Considering the significance of the water level, this research focuses on describing the methodology and process to determine the water level in the Al-Zab River. This study offers a straightforward and cost-effective approach and procedure for precisely delineating flood danger regions in the Al-Zab River basin utilizing a geographic information system and the existing database. The proposed strategy for regionally dispersing flood risks combines the size of prior flood events and the geographical distribution of their causes. This approach allows for the calculation of a weighted score for each participant's causative component. The regional distribution of the flood hazard intensity level is obtained by categorizing the spatial patterns of the flood hazard index. The 30-m digital elevation model with a high resolution was utilized to evaluate the water level in this river. Furthermore, this work is considered the first step towards enhancing information management in the studied area. This study mainly aims to explain how to outline and define watersheds using ArcGIS for flood mapping. Doi: 10.28991/CEJ-2023-09-11-011 Full Text: PDF
通过 ArcGIS 中的模型生成器根据 DEM 进行流域划分
水位在地方、大陆和全球层面不断波动。因此,遥感提供了大量数据,用于评估变化的位置、程度和可变性,包括发生的原因和变化,以及变化的反应和影响。考虑到水位的重要性,本研究侧重于描述确定扎布河水位的方法和过程。本研究提供了一种直接、经济有效的方法和程序,利用地理信息系统和现有数据库精确划分扎布河流域的洪水危险区。所提出的洪水风险区域分散策略结合了以往洪水事件的规模及其成因的地理分布。这种方法可以计算出每个参与者的成因部分的加权分数。通过对洪水灾害指数的空间模式进行分类,可得出洪水灾害强度等级的区域分布情况。利用高分辨率的 30 米数字高程模型对该河流的水位进行了评估。此外,这项工作被认为是加强研究区域信息管理的第一步。本研究的主要目的是解释如何使用 ArcGIS 绘制洪水地图来勾勒和定义流域。Doi: 10.28991/CEJ-2023-09-11-011 全文:PDF
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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