Complex Electrical Resistivity and Dielectric Permittivity Responses to Dense Non-aqueous Phase Liquids' Imbibition and Drainage in Porous Media: A Laboratory Study

IF 1 4区 工程技术 Q4 ENGINEERING, GEOLOGICAL
Mohammad Ali Iravani, J. Deparis, H. Davarzani, S. Colombano, R. Guérin, A. Maineult
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引用次数: 2

Abstract

The effective techniques for remediation of sites polluted by dense non-aqueous phase liquids (DNAPLs) remains a challenge. Among the various technical monitoring methods, there is an increasing interest in studying the geophysical characteristics of contaminated soils, as indicators of the progress in clean-up programs. This work sought to investigate the variation of the electrical complex resistivity and the relative permittivity by analyzing the results obtained from spectral induced polarization (SIP) and time domain reflectometry (TDR). Different series of measurements during drainage and imbibition of DNAPLs in porous media were done to validate the clean-up process on sites polluted by DNAPLs. Therefore, a methodology based on laboratory work was designed and carried out to study the electrical complex resistivity (both in magnitude and phase) in the frequency range 0.183 Hz to 20 kHz, and the relative dielectric permittivity at 70 MHz. The experiments were done on small 1D cells. In these cells, glass beads were used as a porous medium. Two different fluid couples, i.e., coal tar (CT)/water and canola oil (CO)/salty ethanol (SE), were used to produce two-phase flow. Our findings highlight that due to the high resistivity of CO and CT, an increase in water saturation led to decrease in amplitude and phase. Saturation change of SE had the same effect on resistivity but no relationship was found for phase and saturation for the mixture CO and SE. It is also showed that the complex resistivity and relative permittivity measurements were compatible with generalized Archie's law and complete complex refractive index method (CRIM) model as two empirical models for defining the correlation between the electrical resistivity, relative permittivity, and saturation of each phase in the multiphase porous medium.
致密非水相液体在多孔介质中吸排的复电阻率和介电常数响应:实验室研究
非水相液体污染场地的有效修复技术仍然是一个挑战。在各种技术监测方法中,人们对研究污染土壤的地球物理特征越来越感兴趣,作为清理计划进展的指标。本文通过分析光谱诱导极化(SIP)和时域反射(TDR)测量结果,探讨了复合电阻率和相对介电常数的变化规律。通过对多孔介质中DNAPLs的排吸过程进行一系列测量,验证了DNAPLs对污染场地的净化效果。为此,设计并实施了一种基于实验室工作的方法,研究了0.183 Hz ~ 20 kHz频率范围内的复电阻率(幅度和相位)以及70 MHz频率下的相对介电常数。实验是在小型1D细胞上进行的。在这些细胞中,玻璃珠被用作多孔介质。采用两种不同的流体对,即煤焦油(CT)/水和菜籽油(CO)/盐乙醇(SE)产生两相流。我们的研究结果强调,由于CO和CT的高电阻率,含水饱和度的增加导致振幅和相位的降低。SE的饱和度变化对电阻率有相同的影响,但CO和SE混合物的相和饱和度变化没有关系。复电阻率和相对介电常数的测量结果与广义阿奇定律和完全复折射率法(CRIM)模型一致,可作为定义多相多孔介质中各相电阻率、相对介电常数和饱和度之间关系的经验模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Environmental and Engineering Geophysics
Journal of Environmental and Engineering Geophysics 地学-地球化学与地球物理
CiteScore
2.70
自引率
0.00%
发文量
13
审稿时长
6 months
期刊介绍: The JEEG (ISSN 1083-1363) is the peer-reviewed journal of the Environmental and Engineering Geophysical Society (EEGS). JEEG welcomes manuscripts on new developments in near-surface geophysics applied to environmental, engineering, and mining issues, as well as novel near-surface geophysics case histories and descriptions of new hardware aimed at the near-surface geophysics community.
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