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A hydrogeophysical model of the relationship between geoelectric and hydraulic parameters of anisotropic aquifers

机译:各向异性含水层地电参数与水力参数关系的水文地球物理模型

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摘要

An electrical resistivity method has been used to determine aquifer parameters in the Ganga-Yamuna interfluve in northern India. An existing relationship between the geoelectrical and hydraulic parameters has been modified for the case of an anisotropic aquifer. The hydrogeological framework in the upper part of the Ganga-Yamuna interfluve is evaluated by using existing relationships between hydraulic parameters and geoelectrical parameters for alluvial aquifers. On the basis of aquifer geometry, the area has been divided into two hydraulic units: the western Yamuna flood plain and the Ganga flood plain towards the east. The resistivity data collected in parts of the study area are first interpreted in terms of true resistivity and thicknesses of subsurface layers. The electrical parameters (resistivity and thicknesses) are subsequently correlated with the available pumping test data. Distinct correlations between transmissivity and modified transverse resistance are obtained for the two hydraulic units. A four-parameter model consisting of hydraulic conductivity, modified longitudinal resistivity, modified transverse resistance and hydraulic anisotropy is presented for the anisotropic aquifer underlain by conductive fine grained sediments. The model has been validated at a number of locations, where aquifer parameters are known from pumping test data.
机译:一种电阻率方法已被用来确定印度北部恒河-亚穆纳河汇流层中的含水层参数。对于各向异性含水层,已经修改了地电参数和水力参数之间的关系。通过利用冲积含水层的水力参数和地电参数之间的现有关系,评估了恒河—亚穆纳河汇流区上部的水文地质框架。根据含水层的几何形状,该区域被分为两个水力单元:西部的亚穆纳洪水平原和向东的甘加洪泛平原。首先根据真实电阻率和地下层厚度来解释在研究区域的部分中收集的电阻率数据。随后将电参数(电阻率和厚度)与可用的抽气测试数据相关联。对于两个液压单元,获得了透射率和修正的横向阻力之间的明显相关性。建立了由导电细粒沉积物组成的各向异性含水层的四参数模型,该模型由水力传导率,修正的纵向电阻率,修正的横向电阻和水力各向异性组成。该模型已经在许多地方进行了验证,在这些地方从抽水试验数据中可以知道含水层参数。

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