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Quantifying temporal variations in water resources of a vulnerable middle eastern transboundary aquifer system

机译:量化脆弱的中东跨界含水层系统水资源的时间变化

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摘要

Freshwater resources in the arid Arabian Peninsula, especially transboundary aquifers shared by Saudi Arabia, Jordan, and Iraq, are of critical environmental and geopolitical significance. Monthly Gravity Recovery and Climate Experiment (GRACE) satellite-derived gravity field solutions acquired over the expansive Saq transboundary aquifer system were analysed and spatiotemporally correlated with relevant land surface model outputs, remote sensing observations, and field data to quantify temporal variations in regional water resources and to identify the controlling factors affecting these resources. Our results show substantial GRACE-derived terrestrial water storage (TWS) and groundwater storage (GWS) depletion rates of -9.05 +/- 0.25mm/year (-4.84 +/- 0.13km(3)/year) and -6.52 +/- 0.29mm/year (-3.49 +/- 0.15km(3)/year), respectively. The rapid decline is attributed to both climatic and anthropogenic factors; observed TWS depletion is partially related to a decline in regional rainfall, while GWS depletions are highly correlated with increasing groundwater extraction for irrigation and observed water level declines in regional supply wells.
机译:干旱的阿拉伯半岛的淡水资源,特别是沙特阿拉伯,约旦和伊拉克共有的跨界含水层,具有重要的环境和地缘政治意义。分析了在广阔的Saq跨界含水层系统上获得的月度重力恢复和气候实验(GRACE)卫星衍生的重力场解决方案,并将其与相关的地表模型输出,遥感观测资料和现场数据进行时空关联,以量化区域水资源的时间变化并确定影响这些资源的控制因素。我们的结果表明,大量GRACE衍生的陆地水存储(TWS)和地下水存储(GWS)的损耗率为-9.05 +/- 0.25mm /年(-4.84 +/- 0.13km(3)/年)和-6.52 + / -分别为0.29毫米/年(-3.49 +/- 0.15公里(3)/年)。快速下降归因于气候和人为因素。观测到的TWS损耗与区域降雨量的减少部分相关,而GWS的损耗与灌溉地下水的增加和观测的区域供应井水位下降高度相关。

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