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Vertical vibration of a single pile embedded in a frozen saturated soil layer

机译:嵌入冷冻饱和土层中的单桩的垂直振动

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The theories of elasticity and a composite solid-phase saturated porous medium were employed to investigate vertical vibration of an end-bearing pile embedded in a frozen saturated soil layer from three-dimensional axisymmetric analysis. Analytical solutions to the dynamic responses of the pile were derived by Helmholtz decomposition and variable separation in the frequency domain. The solution to the pile in a frozen saturated soil layer agreed well with that in saturated soil when the temperature was close to the frozen temperature. The resonance model of the soil layer induced by the pile vibration was established and the influence of the longitudinal waves and transverse waves caused by pile vibration on the resonance modes was depicted. Complex impedance of the pile top was presented to illustrate the effects of the freezing temperature, porosity and shear modulus of unfrozen soil. The results showed that the maintaining freezing status technology was still valid for pile vibration in permafrost over a larger frequency range; however, it might be invalid in a very low frequency due to the ice skeleton formed below the frozen temperature of the soil.
机译:采用弹性和复合固相饱和多孔介质的理论研究了从三维轴对称分析中嵌入冻结饱和土层中的末端轴承桩的垂直振动。通过Helmholtz分解和频域的可变分离来源于桩的动态响应的分析解决方案。当温度接近冷冻温度时,在冷冻饱和的土壤层中堆中的溶液良好,在饱和土中均匀。描绘了由桩振动引起的土壤层的共振模型,并描绘了纵向波和横向波在谐振模式上的桩振动引起的影响。提出了桩顶的复杂阻抗,以说明冻结温度,孔隙率和剪切模量的解冻土壤的影响。结果表明,维持冻结状态技术仍然有效地在更大的频率范围内造成多年冻土的桩振动;然而,由于在土壤的冷冻温度下方形成的冰骨架,它可能在非常低的频率下无效。

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