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Refined chloride mass-balance method and its application in Saudi Arabia

机译:精制氯化物质量平衡方法及其在沙特阿拉伯的应用

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The rainfall and infiltration elements of the hydrological cycle in arid regions are characterized by temporal and spatial variations that are random and sporadic. Consequently, the chloride concentration in rainfall has a similar behaviour. Despite this, the classical chloride mass balance (CMB) approach only employs arithmetic and weighted averages for recharge estimation. In this paper, the classical CMB method is modified by taking into account some perceived deficiencies in the methodology. The modified CMB method takes into consideration additional statistical parameters, namely variances and the correlation coefficient between variables concerned based on the application of the perturbation method. Strategic aquifer planning in the Kingdom of Saudi Arabia requires a quick method for estimating groundwater recharge in order to determine the temporal management of available water resources. To demonstrate the difference between the classical and the refined CMB methods, both were applied to a representative basin, i.e. Wadi Yalamlam, in the western part of Saudi Arabia. Based on the refined calculations, recharge to groundwater is found to be 11% of the effective annual rainfall. This refined method provides higher recharge rates because it takes into account the actual variability in the variables concerned and can, thus, improve the accuracy of future groundwater recharge estimation studies.
机译:干旱地区水文循环的降雨和入渗要素的特征是时空变化是随机的和零星的。因此,降雨中的氯化物浓度具有类似的行为。尽管如此,经典的氯化物质量平衡(CMB)方法仅采用算术和加权平均值进行补给估算。在本文中,经典CMB方法是通过考虑该方法中的一些已知缺陷进行修改的。改进的CMB方法基于摄动方法的应用,考虑了其他统计参数,即相关变量之间的方差和相关系数。沙特阿拉伯王国的战略含水层规划需要一种快速的方法来估算地下水补给量,以便确定可用水资源的时间管理。为了证明经典的CMB方法和改进的CMB方法之间的区别,两者都应用于一个有代表性的盆地,即沙特阿拉伯西部的Wadi Yalamlam。根据精确的计算,发现地下水补给量为有效年降雨量的11%。这种改进的方法提供了更高的补给率​​,因为它考虑了相关变量的实际可变性,因此可以提高未来地下水补给估算研究的准确性。

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