首页> 外文期刊>Journal of Applied Geophysics >The influence of temperature on the dielectric permittivity and complex electrical resistivity of porous media saturated with DNAPLs: A laboratory study
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The influence of temperature on the dielectric permittivity and complex electrical resistivity of porous media saturated with DNAPLs: A laboratory study

机译:温度对多孔介质饱和DNAPLS介电常介电常数和复合电阻率的影响:实验室研究

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摘要

While some recent studies have discussed various effects of temperature on the electric and electromagnetic properties of multiphase porous media, the effect of temperature changes in multiphase porous media polluted by dense non-aqueous phase liquids (DNAPLs) has rarely been documented. We attempted to characterize how relative permittivity and electrical resistivity vary with temperature in multiphase porous media. The measurements were carried out using two different column sizes. Glass beads with a 1 mm diameter were used to simulate porous media. Spectral induced polarization (SIP) and time domain reflectometry (TDR) were used to measure complex electrical resistivity and relative permittivity, respectively. We investigated the geophysical characteristics of two DNAPL5, coal tar (CT) and chlorinated solvent (CS), from 20 to 50 degrees C; ultra-pure water was used as the reference fluid. Experimental data on the relative permittivity and complex resistivity of pure water obey empirical models, validating our experimental setup and protocol. Results demonstrated that the real parts of relative permittivity and electrical resistivity are functions of temperature in the medium with the presence or absence of a solid phase. While we did not study the imaginary part of relative permittivity, our observations in the DNAPL samples indicated that temperature increases decreased the imaginary parts of the complex electrical resistivity of DNAPLs tested, whether in the presence or absence of the solid phase. Temperature dependency of relative permittivity and complex resistivity were also studied in multiphase porous media, after drainage (80% DNAPL and 20% water) and after imbibition (8% DNAPL and 92% water). The effect of temperature increases on complex resistivity has a secondary effect on frequency domain and Cole-Cole parameters. It was found that the relationship between temperature and resistivity is linear; therefore, resistivity temperature coefficients were obtained for water and both DNAPL5 with the presence and absence of solid phase. (C) 2019 Elsevier B.V. All rights reserved.
机译:虽然最近的一些研究已经讨论了温度对多相多孔介质的电气和电磁特性的各种影响,但很少记录由致密的非水相液体(DNAPLS)污染的多相多孔介质中的温度变化的影响。我们试图表征如何在多相多孔介质中具有温度的相对介电常数和电阻率如何变化。测量使用两种不同的柱尺寸进行。使用1mm直径的玻璃珠用于模拟多孔介质。光谱诱导极化(SIP)和时域反射测量(TDR)分别用于测量复杂的电阻率和相对介电常数。我们研究了两种DNAPL5,煤焦油(CT)和氯化溶剂(CS)的地球物理特征,从20至50℃;超纯水用作参考流体。纯水遵守实证模型的相对介电常数和复杂电阻率的实验数据,验证了我们的实验设置和协议。结果表明,相对介电常数和电阻率的实际部分是培养基中温度的功能,存在或不存在固相。虽然我们没有研究相对介电常数的虚部,但我们在DNAPL样品中的观察结果表明,在存在或不存在固相的情况下,温度升高降低了DNAPLS的复杂电阻率的虚部。在多相多孔介质中,在排水(80%DNAPL和20%水)之后也研究了相对介电常数和复杂电阻率的温度依赖性,并且在吸收后(8%DNAPL和92%水)。温度升高对复杂电阻率的影响对频域和COLE-COLE参数具有二次效果。发现温度和电阻率之间的关系是线性的;因此,在存在和不存在固相的情况下,获得水和两种DNAPL5的电阻率温度系数。 (c)2019年Elsevier B.V.保留所有权利。

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