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Effect of freeze-thaw on freezing point and thermal conductivity of loess

机译:冻融对黄土冻结点和导热率的影响

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Evaluation of freeze-thaw induced instability of loess slopes required a rational estimation of thermal indexes of loess. Freezing point and thermal conductivity of loess after freeze-thaw were determined by laboratory tests, and correlations with mesoscopic structure were discussed by SEM tests. Freezing point of loess grows nonlinearly with water content but rarely correlated with dry density, while it varies significantly within initial five freeze-thaw cycles, beyond which little effect was noted. Thermal conductivity increases positively with water content or at higher dry densities. Besides, bi-directional changes with dry density were noticed. SEM images prove that large aggregates decrease after freeze-thaw with weak bonding between particles, leading to a loosened soil structure, which corresponds to the variation of thermal indexes. Empirical models for the two indexes were proposed based on data fitting.
机译:冻融诱导的黄土斜坡诱导不稳定性的评估需要对黄土的热索引的合理估算。 通过实验室试验确定冻融后黄土的冷冻点和导热率,通过SEM测试讨论了与介绍结构的相关性。 黄土冻结点与水含量不间断地生长,但很少与干密度相关,而在最初的五个冻融周期内显着变化,超出了效果不大。 导热率随着水含量或更高的干燥密度而增加。 此外,注意到具有干密度的双向变化。 SEM图像证明了在颗粒之间的冻融粘合后的冻结后的大聚集体减少,导致松散的土壤结构,这对应于热折射率的变化。 基于数据配件提出了两种指标的经验模型。

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