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Vertical impedance of a pile in layered saturated viscoelastic half-space considering radial inhomogeneity

机译:考虑径向不均匀性的层状饱和粘弹性半空间中桩的竖向阻抗

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A simplified analytical approach is presented to investigated the vertical impedance of a pile embedded in layered saturated viscoelastic half-space considering radial inhomogeneity. The vertical dynamic interaction between the soil and pile is simulated by the Beam-on-Dynamic-Winkler-Foundation (BDWF) model. To characterize the variation of the soil properties in the disturbed zone around the pile, an improved complex stiffness transfer model is developed to determine the Winkler moduli based on the wave propagation theory of saturated porous medium. Vertical impedance of the pile head is obtained by solving the differential equation for axial vibration of the pile, combined with transfer-matrix formulations to deal with the layered property of the soil along the pile shaft. The validity and accuracy of the analytical solutions are demonstrated through the comparison examples for the cases of different radial variations of soil properties. Parametric studies are performed to investigate the influences of the Darcy permeability coefficient, width ratio and shear modulus ratio of the disturbed zone on the vertical impedance of the pile. It is revealed that the permeability of the pore fluid has an influence on the impedance of the pile when the Darcy permeability coefficient is large than 1 x 10(-3). In addition, the different disturbance degrees of the soil layers along the pile shaft are suggested to take into consideration in analysis of the vertical impedance of the pile embedded in layered saturated viscoelastic half space.
机译:提出了一种简化的分析方法来研究考虑到径向不均匀性的,在分层饱和粘弹性半空间中嵌入的桩的垂直阻抗。土与桩之间的竖向动力相互作用是通过动态梁维克勒基础模型(BDWF)进行模拟的。为了表征桩周围扰动区的土壤特性变化,基于饱和多孔介质的波传播理论,开发了一种改进的复刚度传递模型来确定Winkler模量。通过求解桩身轴向振动的微分方程,结合传递矩阵公式来处理桩身沿轴向的土壤分层特性,即可获得桩头的竖向阻抗。通过比较例说明了土壤性质不同径向变化情况下分析方法的有效性和准确性。进行参数研究以研究扰动区的达西渗透系数,宽度比和剪切模量比对桩的竖向阻抗的影响。结果表明,当达西渗透系数大于1 x 10(-3)时,孔隙流体的渗透率会影响桩的阻抗。另外,在分析层状饱和粘弹性半空间中桩的竖向阻抗时,建议考虑沿桩身的不同土层扰动度。

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