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首页> 外文期刊>Environmental Geology >Use of chloride-mass balance and environmental isotopes for evaluation of groundwater recharge in the alluvial aquifer, Wadi Tharad, western Saudi Arabia
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Use of chloride-mass balance and environmental isotopes for evaluation of groundwater recharge in the alluvial aquifer, Wadi Tharad, western Saudi Arabia

机译:沙特阿拉伯Wadi Tharad冲积含水层中氯离子​​质量平衡和环境同位素在评估地下水补给中的应用

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摘要

Groundwater recharge estimation has become a priority issue for humid and arid regions, especially in regions like Saudi Arabia, where the precipitation varies over space and time as a result of topography and seasonality. Wadi Tharad is a typical arid area in western Saudi Arabia. Within its drainage area of 400 km(2), the groundwater system shows a graded hydrochemical zonation from the hydrocarbonate in the upper reach to the chloride zone in the lower reach. The saturation index (SI) varies depending on the concentrations of carbonate minerals; the mean for calcite and dolomite is about in equilibrium (e.g., zero value). As halite and gypsum indices are negative, it is undersaturated. Isotopic compositions of H and O in the groundwater show that the groundwater recharge resources are mainly from meteoric water. The chloride-mass balance method was refined to estimate the amount of recharge, which is probably 11% of the effective annual rainfall. These results can be used to improve the accuracy of future groundwater management and development schemes.
机译:在潮湿和干旱地区,尤其是在沙特阿拉伯这样的地区,地下水补给的估算已成为一个优先事项,在这些地区,由于地形和季节性,降雨随时间和空间变化。瓦迪塔拉德(Wadi Tharad)是沙特阿拉伯西部的典型干旱地区。在其400 km(2)的流域内,地下水系统显示出从上游的碳酸盐岩到下游的氯化物区域的分级水化学分区。饱和度指数(SI)取决于碳酸盐矿物的浓度。方解石和白云石的平均值大约处于平衡状态(例如零值)。由于盐岩和石膏指数为负,因此饱和度较低。地下水中H和O的同位素组成表明,地下水的补给资源主要来自陨石水。改进了氯-质量平衡法以估算补给量,这大概是有效年降雨量的11%。这些结果可用于提高未来地下水管理和开发计划的准确性。

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