阿尔及利亚上切利夫冲积含水层地下水流的直接和反演序列模型

Ourdia Kaben, Djamel Maizi, Mebarka Takorabt
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引用次数: 0

摘要

上切里夫平原位于阿尔及利亚首都阿尔及尔西南 125 公里处。该地区的特点是其无压含水层包含在小普利奥-第四纪的异质充填物中。如今,该含水层已被严重开采,以满足该地区的家庭、工业和农业需求。为了更好地了解该含水层的水文地质运行情况,我们亟需通过数值建模来管理地下水资源。在这项工作中,我们采用了一种基于直接问题和逆问题顺序求解的方法。在直接问题的情况下,稳态流模拟显示测量压水位和计算压水位之间持续存在巨大差异,这反映了含水层的异质性。直接法根据概念模型进行分区,然后输入反演法。反演法除了速度快、收敛性好之外,还可以减少直接法与测量结果之间的差异。主要结果表明,含水层的水力传导性分布不均匀,最高值出现在含水层的中部和西北部,而最低值则出现在含水层的东部、北部和南部。此外,反演模型对地下水流预算的计算表明,雨水补给是含水层的主要输入量,为 462.5x103 立方米/天,而含水层最重要的出口是切里夫瓦迪,流量为 627x103 立方米/天。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sequential Direct and Inverse Modeling of Underground Flows in the Upper Cheliff Alluvial Aquifer, Algeria
The Upper Cheliff plain lies 125 km south-west of Algiers, capital city of Algeria. It is characterized by its unconfined aquifer contained in a heterogeneous filling of Mio-Plio-Quaternary age. Nowadays, this aquifer is severely exploited to meet the domestic, industrial and agricultural needs in the region. Groundwater resources management by means of numerical modeling is highly required in order to improve our knowledge of the hydrogeological operation of this aquifer. In this work we implemented an approach based on a sequential solving of the direct and inverse problems. In the case of the direct problem, steadystate flow simulations revealed the persistence of large discrepancies between the measured and calculated piezometric levels, which reflect the heterogeneity of the aquifer. The zonation provided by the direct method, based on the conceptual model, is then fed in the inverse method. The latter, in addition to its speed and its convergence, made it possible to reduce the disparities with measurements as noted in the direct method. The main results highlight a heterogeneous hydraulic conductivity distribution which reaches its highest values in the central and north-western sectors of the aquifer, whereas the lowest values are found in the eastern, northern and southern sectors of the aquifer. Furthermore, calculation of the groundwater flow budget by the inverse model showed that rainfall recharge is the main input into the aquifer with 462.5x103 m3/day, whereas the most important outlet of the aquifer is the Cheliff Wadi with a flow rate of 627x103 m3/day.
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