冻融对土壤工程特性影响的研究进展

C. Guodong, P. Vermeer, Q. Ji-Lin
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引用次数: 9

摘要

冻作用是一种风化过程,由于低温作用使土壤的工程性质发生了很大的变化,这已成为人们普遍认识的问题。在寒冷地区,刚经历冻融的土壤往往会改变其性质。因此,必须重视冻融对工程结构稳定性和变形的影响。本文在大量文献研究的基础上,从目前的研究现状出发,对这一课题的研究成果进行了综述。从技术上讲,冻土的冻融行为包括以下几个方面:调查手段和测试技术、物理力学性质和机理分析。典型的研究成果取自各种资源,并在此列出。冻融对土壤性质的影响可以概括为:尽管密度变化,但土壤的渗透性普遍增加;松散土和致密土的密度变化方向相反;原状土的结构可以发生改变,应力-应变曲线峰值不像冻结前那么明显;强度变化与以往的研究结果并不一致。本文对前人的研究作了评述,并就一些值得关注的问题提出了进一步研究的设想。建议考虑原始状态,如应力状态、密度和预固结比,以便进行更系统的研究。同时,冻融过程中的变形随时间的变化可以作为颗粒结合变化的可靠证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
STATE-OF-THE-ART OF INFLUENCE OF FREEZE-THAW ON ENGINEERING PROPERTIES OF SOILS
It has become a common understanding that frost action is a kind of weathering process, which considerably changes engineering properties of soils due to cryogenical actions. Soils newly exposed to freeze-thaw in cold regions tend to change their properties. Therefore, care must be taken with respect to the freeze-thaw induced influence on stability and deformation of engineering constructions. With a view of the state-of-the-art, this paper reviews the general findings of the research on this topic on the basis of an extensive literature study. Technically, the following aspects of soil behavior regarding freeze-thaw are included: the means of investigation and testing techniques, physical and mechanical properties as well as mechanism analysis. Typical research results are taken from various resources and listed herein. The influences of freeze-thaw on soil properties can be summarized that, permeability of soils is generally increased despite of the change of density; densities of loose and dense soils are changed in the opposite way; structure of undisturbed soils can be changed, as the results peak in the stress-strain curve is not as pronounced as that in the pre-freezing ones; strength change is not well in agreement from the previous studies. The authors' comments on previous studies and ideas for further investigation with regard to particularly concerned aspects are given. It is suggested that the original state, such as stress state, density and preconsolidation ratios should be taken into consideration for a more systematic investigation. Meanwhile, the deformation versus time during freezing and thawing may serve as a sound proof of change in particle bondings.
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