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首页> 外文期刊>Permafrost and Periglacial Processes >The Effect of Confining Pressure and Water Content on Compressive Strength and Deformation of Ice-Rich Silty Sand
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The Effect of Confining Pressure and Water Content on Compressive Strength and Deformation of Ice-Rich Silty Sand

机译:围压和含水量对富冰粉质砂抗压强度和变形的影响

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摘要

The characteristics of ice-rich frozen soils are important to engineering design in cold-climate regions. Previous work has concentrated on uniaxial strength properties, and limited data exist on triaxial strength and deformation as a function of volumetric ice content and confining pressure. Triaxial compressive tests carried out on ice-rich frozen silty sand indicated that the strength decreases to a minimum and then increases up to that of pure ice for a range of volumetric ice contents. However, the effect of confining pressure on the strength depends on the volumetric ice content itself. The strength was at a nearly constant minimum level when the volumetric ice content was between 48.2 and 65.1 per cent, dominated by the cohesion of the ice matrix. In contrast, at volumetric ice contents of>27.2 to<50.2 per cent and>80.9 per cent, the strength increased with increasing confining pressure. The volumetric ice contents corresponding to maximum failure strain and minimum strength were 50.2 and 61.9 per cent, respectively. Thus, in this range an increase of about 10 per cent in volumetric ice content causes the failure strain to drop to the value for pure ice. The results indicate that there is a transition zone when the volumetric ice content is between 50.2 and 61.9 per cent that separates sample behaviour from that of frozen soil to that of pure ice. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:富含冰的冻土的特性对于寒冷气候地区的工程设计很重要。先前的工作集中在单轴强度特性上,而关于三轴强度和变形的数量有限的数据存在,该数据是体积冰含量和围压的函数。在富含冰的冻结粉质砂土上进行的三轴压缩试验表明,在一定范围的体积冰含量下,强度降低到最小,然后增加到纯冰。但是,围压对强度的影响取决于体积冰含量本身。当冰的体积含量在48.2%和65.1%之间时,强度处于几乎恒定的最低水平,主要由冰基质的内聚力决定。相比之下,在体积冰含量> 27.2至<50.2%和> 80.9%时,强度随围压的增加而增加。对应于最大破坏应变和最小强度的体积冰含量分别为50.2%和61.9%。因此,在该范围内,体积冰含量增加约10%,会使破坏应变降至纯冰的值。结果表明,当体积冰含量在50.2%至61.9%之间时,存在一个过渡区域,该区域将样品的行为与冷冻土壤的行为与纯冰的行为区分开。版权所有(c)2016 John Wiley&Sons,Ltd.

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