Surface Water Resources Planning in an Ungauged Transboundary Basin Using Satellite Products and the AHP Method

Seyed Kamal Ghoreishi Gharehtikan, S. Gharechelou, Emad Mahjoobi, Saeed Golian, F. Rafiei, Hossin Salehi
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Abstract

Global concern over optimizing transboundary water resources for residents is hindered by the lack of observational data, particularly in ungauged basins, mainly due to inaccessibility or security issues. Remote sensing and GIS technology provide a practical solution for monitoring and managing water resources in such basins. This research evaluates surface water resources in the Qaretikan ungauged transboundary basin using satellite products for precipitation, temperature, and evapotranspiration from 2005 to 2014. The accuracy of these datasets was assessed using statistical measures. The water balance components, i.e., precipitation and evaporation, were utilized to calculate runoff over the basin using the Justin method. Downstream environmental flow was estimated using the Lyon method, and available water was determined. This study identified a potential annual storage water of 11.8 MCM in the Qaretikan basin. The Analytic Hierarchy Process (AHP) integrated expert opinions to prioritize water usage decisions based on proposed decision options. The results revealed greenhouse cultivation water allocation as the top priority among the identified options, highlighting its importance in sustainable water resource management within the basin.
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利用卫星产品和 AHP 方法进行无测站跨界流域地表水资源规划
由于缺乏观测数据,特别是主要由于交通不便或安全问题造成的无测站流域的观测数据,全球对为居民优化跨境水资源的关注受到了阻碍。遥感和地理信息系统技术为监测和管理此类流域的水资源提供了切实可行的解决方案。本研究利用 2005 年至 2014 年的降水、温度和蒸散量卫星产品,对 Qaretikan 无测站跨界流域的地表水资源进行了评估。这些数据集的准确性通过统计方法进行了评估。利用水量平衡成分(即降水和蒸发),采用贾斯汀法计算流域径流。采用里昂法估算了下游环境流量,并确定了可用水量。这项研究确定 Qaretikan 盆地每年的潜在储水量为 11.8 兆立方米。层次分析法(AHP)综合了专家意见,根据建议的决策方案确定了用水决策的优先次序。结果表明,温室栽培用水分配是已确定方案中最优先考虑的,突出了其在流域内水资源可持续管理中的重要性。
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