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首页> 外文期刊>Journal of Applied Geophysics >The use of the time domain electromagnetic method to delineate saline groundwater in granular and carbonate aquifers and to evaluate their porosity
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The use of the time domain electromagnetic method to delineate saline groundwater in granular and carbonate aquifers and to evaluate their porosity

机译:使用时域电磁法描绘颗粒状和碳酸盐岩含水层中的盐水地下水并评估其孔隙度

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The use of surface geoelectric (GE)/geoetectromagnetic (GEM) methods to determine the porosity of freshwater saturated aquifers using Archie's equation leads in many cases to significant inaccuracy. This is caused by the uncertainties in determining both fluid and bulk resistivities required for calculating porosity of a rock sequence in the case of a known rock type. In order to solve the problem in coastal and other saline-water-intruded aquifers, it is proposed herein to apply the time domain electromagnetic (TDEM) method to detect first the fresh/saline water interface and then to determine the fluid and bulk resistivities of the saline water saturated portion of the aquifer. It is shown that calculating porosity of this portion of the aquifer is much more accurate than that of the freshwater saturated part. Since the porosity of the aquifer is generally invariant with regard to the location of the interface, the proposed method in many cases is applicable to the entire aquifer. The method was tested in both granular and carbonate coastal aquifers of Israel saturated with normal seawater as well as with Dead Sea concentrated brines. The cases of granular coastal aquifers exhibit a good agreement between measured porosities and those calculated using TDEM results. In the case of carbonate aquifers, the situation is more complicated due to their heterogeneity and much wider range of porosities stemming from their karstic and fractured nature. (c) 2004 Elsevier B.V. All rights reserved.
机译:在许多情况下,使用Archie方程使用地电(GE)/地磁(GEM)方法确定淡水饱和含水层的孔隙度会导致很大的误差。这是由于在已知岩石类型的情况下确定计算岩石序列的孔隙度所需的流体电阻率和体积电阻率的不确定性引起的。为了解决沿海地区和其他注入盐水的含水层的问题,在本文中提出了应用时域电磁(TDEM)方法首先检测淡水/盐水界面,然后确定水体的流体电阻率和总电阻率。含水层的盐水饱和部分。结果表明,计算含水层这一部分的孔隙度比淡水饱和部分的孔隙度要准确得多。由于含水层的孔隙率通常在界面位置方面是不变的,因此在许多情况下,所提出的方法都适用于整个含水层。该方法已在以色列的粒状和碳酸盐沿海含水层中进行了测试,这些含水层已被普通海水以及死海浓缩盐水饱和。沿岸粒状含水层的情况在测得的孔隙度和使用TDEM结果计算的孔隙度之间显示出良好的一致性。就碳酸盐含水层而言,由于其非均质性和由于其岩溶和裂缝性质而产生的孔隙范围大得多,因此情况更加复杂。 (c)2004 Elsevier B.V.保留所有权利。

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