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首页> 外文期刊>International journal of geomechanics >Freezing Strain Model for Estimating the Unfrozen Water Content of Saturated Rock under Low Temperature
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Freezing Strain Model for Estimating the Unfrozen Water Content of Saturated Rock under Low Temperature

机译:低温下饱和岩石未冻结含水量的冻结应变模型

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摘要

The freeze-thaw damage of rock is mainly induced by the 9% volumetric expansion of frozen water. It has already been demonstrated that unfrozen water exists in porous material at the freezing point. Accurate estimation of unfrozen water content is important for evaluating freeze-thaw damage and understanding freezing processes in rock. To derive the unfrozen water content, the freezing process of pore water and freezing strain of saturated rock under low temperature were studied. Based on the cumulative distribution curve of pore size, the unfrozen water content is proved to be an exponential function of freezing temperature. Unfrozen water mainly occupies nanopores and has no effect on the freezing strain of rock. The freezing strain of rock under subzero temperature is composed of matrix shrinkage caused by falling temperature and pore expansion by pore-ice pressure. Thus, a theoretical model that accommodates the relationship between freezing strain and unfrozen water content considering the phase transition is proposed according to saturated poroelasticity theory. Using this model, the unfrozen water content can be accurately calculated by measuring the freezing strain of saturated rock. Three examples of freezing strain tests demonstrate that the freezing strains derived from this theoretical model are in good agreement with the experimental values for saturated rock with different porosities and that the unfrozen water content can be easily and accurately determined.
机译:岩石的冻融破坏主要是由9%的冻水体积膨胀引起的。已经证明在冻结点多孔材料中存在未冻结的水。准确估算未冻结水含量对于评估冻融损伤和了解岩石的冻结过程非常重要。为了得出未冻结的含水量,研究了孔隙水的冻结过程和饱和岩石在低温下的冻结应变。根据孔径的累积分布曲线,证明了未冻结水含量是冻结温度的指数函数。未冻结的水主要占据纳米孔,对岩石的冻结应变没有影响。低于零温度的岩石冻结应变由温度下降引起的基体收缩和孔隙冰压力引起的孔隙扩张组成。因此,根据饱和孔隙弹性理论,提出了一种考虑相变而适应冻结应变与未冻结水含量之间关系的理论模型。使用该模型,可以通过测量饱和岩石的冻结应变来精确计算未冻结的含水量。冻结应变测试的三个示例表明,从该理论模型得出的冻结应变与具有不同孔隙率的饱和岩石的实验值非常吻合,并且可以轻松而准确地确定未冻结的含水量。

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