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首页> 外文期刊>Proceedings of the institution of civil engineers >The influence of freeze-thaw cycles on the shear strength of illite clay
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The influence of freeze-thaw cycles on the shear strength of illite clay

机译:冻融循环对伊利石黏土抗剪强度的影响

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Geo-energy infrastructure, such as ground source heat systems (thermo-active structures), induce thermal cycles that can result in changes of the bearing capacity of soil by changing, for example, the void ratio, soil structure, unit weight and hydraulic conductivity. The influence of repeated freeze-thaw (FT) cycles and different freezing rates on the shear strength of a frost-susceptible illite clay was investigated. Samples were subjected to between one and 20 FT cycles, and the shear strength of the thawed material was determined using undrained unconsolidated triaxial tests. After the shear strength decrease due to the first FT cycle, a transitory shear strength recovery occurred between one and three freezing cycles, followed by a shear strength decrease between three and seven FT cycles, which then approached an equilibrium value. Computed tomography scans showed ice lenses increased in size moving away from the freezing surface, and more uniform ice distribution with increasing FT cycles. Changing the freezing rate yielded differences in the formation and structure of ice lenses perpendicular to the freezing direction. The observed failure plane typically coincides with the plane of the largest ice lens due to formation of a slurry layer after thawing.
机译:诸如地源热系统(热活性结构)之类的地能基础设施会诱发热循环,这些热循环会通过改变空隙率,土壤结构,单位重量和水力传导率而导致土壤承载力的变化。 。研究了反复冻融(FT)循环和不同的冷冻速率对易受霜冻的伊利石粘土的剪切强度的影响。对样品进行1至20个FT循环,并使用不排水的非固结三轴试验确定解冻材料的剪切强度。在由于第一个FT循环而使剪切强度下降之后,在一个和三个冷冻周期之间发生了短暂的剪切强度恢复,随后在三个和七个FT周期之间发生了剪切强度下降,然后达到了平衡值。计算机断层扫描显示,冰透镜的尺寸从冻结表面移开,并且随着FT循环的增加,冰的分布更加均匀。改变冷冻速率会导致在垂直于冷冻方向的冰晶的形成和结构上产生差异。由于解冻后形成了浆液层,因此观察到的破坏平面通常与最大冰晶平面重合。

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