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Estimation the Physical Variables of Rainwater Harvesting System Using Integrated GIS-Based Remote Sensing Approach

机译:基于集成GIS的遥感估算雨水收集系统的物理变量

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摘要

Geographic Information System (GIS) are an intelligence technique skilled to extract, store, manage and display the spatial information for various applications of water resources management. Practically, arid and semi-arid environments suffer from several restrictions (e.g., lack of socio-economic and physical data, limited precipitation, and poor rain water management). In this research, Remote Sensing (RS) approach was integrated with GIS conducted to estimate the physical variables of reservoir system (i.e., elevation-area-volume curve). First and foremost, computing an accurate and reliable elevation-area-volume curve is a challenging task for the purpose of identifying the optimal depth, minimum surface area and maximum reservoir storage. Accordingly, a field study consisting of three constructed small earth dams were demonstrated the use of the geospatial approach in the western desert of Iraq, where the elevation-area-volume curve was extracted. The surface areas and the reservoir volumes that were obtained from field survey and spatial intelligence techniques were compared. A comprehensive analysis have been carried out for the evaluation purposes. The results indicate that the proposed approach efficiently applied with remarkable level of accuracy.
机译:地理信息系统(GIS)是一种智能技术,能够为水资源管理的各种应用提取,存储,管理和显示空间信息。实际上,干旱和半干旱环境受到若干限制(例如,缺乏社会经济和物理数据,降水有限以及雨水管理不善)。在这项研究中,遥感(RS)方法与GIS进行了集成,以估算储层系统的物理变量(即高程-面积-体积曲线)。首先,要确定最佳深度,最小表面积和最大储层量,计算准确可靠的高程-容积曲线是一项艰巨的任务。因此,在三个西部小水坝组成的野外研究中,我们证明了在伊拉克西部沙漠中使用地理空间方法提取了海拔-面积-体积曲线。比较了通过实地调查和空间智能技术获得的表面积和储层体积。为了评估目的,已经进行了综合分析。结果表明,所提出的方法有效地应用了显着水平的准确性。

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