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Electrical cross effects in porous media with ice inclusions. 1. Diffusion mechanism

机译:具有冰夹杂物的多孔介质中的电交叉效应。 1.扩散机制

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This paper is the first part of the theoretical work devoted to electrical cross effects in biporous media with ice inclusions. The fine-pored part of the medium is saturated by the electrolytic solution.rnA heat and mass transfer problem is formulated for an elementary cell of the medium on basis of diffusion mechanism. An equation set is proposed for finding the temperature, pressure, concentration, and electric potential fields. All the heat and mass flows through the cell depend on the cross thermodynam-ical forces.rnIn the closed system the electric polarization induced by temperature gradient depends on the hydro-conductivity of the fine-pored medium, the solution concentration and the ice content. At the low solution concentration and the high hydroconductivity the thermoelectric potential difference may be as great as 150 mV K~(-1).rnIn the open system the ice presence has no effect on the diffusion potential difference induced by concentration gradient.
机译:本文是致力于含冰夹杂物的双孔介质中电交叉效应的理论工作的第一部分。介质的细孔部分被电解液饱和。rn基于扩散机理,提出了介质基本单元的传热传质问题。提出了一个方程组来查找温度,压力,浓度和电势场。所有流过电池的热量和质量都取决于交叉的热动力。在密闭系统中,温度梯度引起的极化取决于细孔介质的水电导率,溶液浓度和冰含量。在低溶液浓度和高水电导率下,热电势差可能高达150 mV K〜(-1)。在开放系统中,冰的存在对浓度梯度引起的扩散电势差没有影响。

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