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首页> 外文期刊>Water resources research >Transport properties of the Callovo-Oxfordian clay rock under partially saturated conditions
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Transport properties of the Callovo-Oxfordian clay rock under partially saturated conditions

机译:部分饱和条件下Callovo-Oxfordian粘土岩的输运性质

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A series of experiments were performed to characterize the permeability, the specific storage, the capillary pressure, the streaming potential coupling coefficient, and the electrical conductivity of a very low permeability Callovo-Oxfordian clay rock at different water saturations. The Callovo-Oxfordian formation is presently investigated as a potential host to store nuclear wastes because of its very low permeability (typically 10 nd at saturation) and high specific surface area. We first present the constitutive transport equations including an electrokinetic cross-coupling term in the generalized Darcy and Ohm constitutive equations. Then we present new experimental results using measurements of transient weight losses of samples submitted to a change in the relative humidity imposed by an automated humidity system in a hermetic chamber. These experiments are interpreted with a 1-D analytical model of the coupled hydromechanical and transport equations. The hydromechanical transport properties (relative permeability and specific storage) of this clay rock are investigated in the relative saturation range from 0.23 to 0.70. We demonstrate that below 30% in relative humidity, the flux of the vapor phase with respect to the flux of the liquid water phase cannot be neglected. The relative apparent permeability can be described by a simple power law relationship with the saturation. In addition, we measure the electrical conductivity and the streaming potential coupling coefficient at various saturations. The electrical conductivity is described by a model accounting for electrical double-layer contributions to surface conductivity. The measurement of the streaming potential coupling coefficient agrees with a power law model for the coupling coefficient versus the relative water saturation. A relationship between the exponent used to characterize the relative permeability and the second Archie's exponent used to describe the dependence of the electrical conductivity of the material with respect to the saturation is discussed.
机译:进行了一系列实验,以表征在不同水饱和度下极低渗透率的卡洛沃-牛津粘土岩的渗透率,比储量,毛细管压力,流电耦合系数和电导率。由于其极低的渗透率(饱和时通常为10nd)和高的比表面积,Callovo-Oxfordian地层目前被作为储存核废料的潜在宿主。我们首先提出本构输运方程,包括广义Darcy和Ohm本构方程中的一个电动交叉耦合项。然后,我们使用气密室中自动湿度系统施加的相对湿度变化所引起的样品瞬态重量损失的测量值来提供新的实验结果。用耦合的水力和运输方程的一维解析模型解释了这些实验。在0.23至0.70的相对饱和度范围内研究了该粘土岩石的水力传输特性(相对渗透率和比存储)。我们证明,相对湿度低于30%时,相对于液态水相通量的气相通量不能忽略。相对表观渗透率可以通过与饱和度的简单幂律关系来描述。此外,我们测量各种饱和度下的电导率和流电势耦合系数。电导率由解释电双层对表面电导率贡献的模型描述。流势耦合系数的测量结果与耦合系数对相对水饱和度的幂律模型相符。讨论了用于表征相对磁导率的指数和用于描述材料的电导率相对于饱和度的第二阿奇指数之间的关系。

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  • 来源
    《Water resources research》 |2010年第8期|P.W08514.1-W08514.17|共17页
  • 作者单位

    Department of Geophysics, Green Center, Colorado School of Mines, 1500 Illinois St., Golden, CO 80401, USA ANDRA, Chatenay-Malabry, France LGIT, UMR 5559, Equipe Volcan, Universite de Savoie, CNRS, Le-Bourget-du-Lac, France Institute of Geophysics, University of Lausanne, Lausanne, Switzerland;

    rnDepartment of Geophysics, Green Center, Colorado School of Mines, 1500 Illinois St., Golden, CO 80401, USA LGIT, UMR 5559, Equipe Volcan, Universite de Savoie, CNRS, Le-Bourget-du-Lac, France;

    rnDivision of Engineering, Colorado School of Mines, Golden, CO 80401, USA;

    rnDivision of Engineering, Colorado School of Mines, Golden, CO 80401, USA;

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