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多孔介质中冰预融理论

Theory of ice premelting in porous media.

作者信息

Hansen-Goos Hendrik, Wettlaufer J S

机构信息

Department of Geology and Geophysics, Yale University, New Haven, Connecticut 06520, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Mar;81(3 Pt 1):031604. doi: 10.1103/PhysRevE.81.031604. Epub 2010 Mar 26.

Abstract

Premelting describes the confluence of phenomena that are responsible for the stable existence of the liquid phase of matter in the solid region of its bulk phase diagram. Here we develop a theoretical description of the premelting of water ice contained in a porous matrix, made of a material with a melting temperature substantially larger than ice itself, to predict the amount of liquid water in the matrix at temperatures below its bulk freezing point. Our theory combines the interfacial premelting of ice in contact with the matrix, grain-boundary melting in the ice, and impurity and curvature induced premelting, with the latter occurring in regions which force the ice-liquid interface into a high curvature configuration. These regions are typically found at points where the matrix surface is concave, along contact lines of a grain boundary with the matrix, and in liquid veins. Both interfacial premelting and curvature induced premelting depend on the concentration of impurities in the liquid, which, due to the small segregation coefficient of impurities in ice are treated as homogeneously distributed in the premelted liquid. Our principal result is an equation for the fraction of liquid in the porous medium as a function of the undercooling, which embodies the combined effects of interfacial premelting, curvature induced premelting, and impurities. The result is analyzed in detail and applied to a range of experimentally relevant settings.

摘要

预熔描述了一系列现象的汇聚,这些现象导致物质在其体相图的固体区域中液相的稳定存在。在此,我们针对包含在多孔基质中的水冰的预熔过程展开了理论描述,该多孔基质由一种熔点远高于冰本身的材料制成,目的是预测在低于其体相凝固点的温度下基质中液态水的含量。我们的理论综合了与基质接触的冰的界面预熔、冰中的晶界熔化以及杂质和曲率诱导的预熔,其中后者发生在迫使冰 - 液界面形成高曲率构型的区域。这些区域通常出现在基质表面为凹面的点处、沿着晶界与基质的接触线以及在液脉中。界面预熔和曲率诱导预熔均取决于液体中杂质的浓度,由于冰中杂质的偏析系数较小,杂质在预熔液体中被视为均匀分布。我们的主要成果是一个关于多孔介质中液体分数与过冷度关系的方程,该方程体现了界面预熔、曲率诱导预熔和杂质的综合影响。我们对结果进行了详细分析,并将其应用于一系列与实验相关的情形。

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