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Water management during climate change using aquifer storage and recovery of stormwater in a dunefield in western Saudi Arabia

机译:在沙特阿拉伯西部的邓内菲尔德,利用含水层存储和雨水回收在气候变化期间进行水管理

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An average of less than 50 mm yr?1 of rainfall occurs in the hyperarid region of central Western Saudi Arabia. Climate change is projected to create greater variation in rainfall accumulation with more intense rainfall and flood events and longer duration droughts. To manage climate change and variability in ephemeral stream basins, dams are being constructed across wadi channels to capture stormwater, but a large percentage of this stored water is lost to evaporation. A dam/reservoir system located in Wadi Al Murwani in Western Saudi Arabia was recently constructed and is expected to contain a maximum stored water volume of 150 million m3. A hydrologic assessment of a dunefield lying 45 km downstream was conducted to evaluate its potential use for aquifer storage and recovery of the reservoir water. A 110 m elevation difference between the base of the dam and the upper level of the dunefield occurs, allowing conveyance of the water from the reservoir to the dunefield storage site by gravity feed without pumping, making the recharge system extremely energy efficient. Aquifer storage and recovery coupled with dams would allow water management during extreme droughts and climate change and has widespread potential application in arid regions.
机译:在沙特阿拉伯中西部的高干旱地区,平均降雨量不到50毫米yr?1。预计气候变化将使降雨积累产生更大的变化,降雨和洪水事件将加剧,干旱持续时间将更长。为了应对短暂河流盆地中的气候变化和变化,正在修建横跨旱谷的大坝以收集雨水,但是其中很大一部分储存的水由于蒸发而损失了。最近在沙特阿拉伯西部的Wadi Al Murwani建立了一个水坝/水库系统,预计最大蓄水量为1.5亿立方米。对位于下游45公里处的沙丘油田进行了水文评估,以评估其在含水层存储和储层水回收中的潜在用途。大坝的底部与沙丘的上层之间出现110 m的高低差,允许通过重力供水将水从水库输送到沙丘的存储地点而无需泵送,从而使补给系统具有极高的能源效率。含水层的存储和恢复以及水坝的建设将使极端干旱和气候变化期间的水管理成为可能,并且在干旱地区具有广泛的潜在应用。

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