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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Vertical Dynamic Response of Pile Embedded in Layered Transversely Isotropic Soil
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Vertical Dynamic Response of Pile Embedded in Layered Transversely Isotropic Soil

机译:层状横观各向同性土中桩的竖向动力响应

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The dynamic response of pile embedded in layered transversely isotropic soil and subjected to arbitrary vertical harmonic force is investigated. Based on the viscoelastic constitutive relations for a transversely isotropic medium, the dynamic governing equation of the transversely isotropic soil is obtained in cylindrical coordinates. By introducing the fictitious soil pile model and the distributed Voigt model, the governing equations of soil-pile system are also derived. Firstly, the vertical response of the soil layer is solved by using the Laplace transform technique and the separation of variables technique. Secondly, the analytical solution of velocity response in the frequency domain and its corresponding semianalytical solution of velocity response in the time domain are derived by means of inverse Fourier transform and convolution theorem. Finally, based on the obtained solutions, a parametric study has been conducted to investigate the influence of the soil anisotropy on the vertical dynamic response of pile. It can be seen that the influence of the shear modulus of soil in the vertical plane on the dynamic response of pile is more notable than the influence of the shear modulus of soil in the horizontal plane on the dynamic response of pile.
机译:研究了层状横观各向同性土壤中桩体在任意竖向谐波力作用下的动力响应。基于横观各向同性介质的粘弹性本构关系,得到了横观各向同性土体在圆柱坐标系下的动力学控制方程。通过引入虚拟土桩模型和分布式Voigt模型,推导了土桩系统的控制方程。首先,利用拉普拉斯变换技术和变量分离技术解决了土层的竖向响应问题。其次,利用傅里叶逆变换和卷积定理,推导了频域速度响应的解析解及其时域速度响应的半解析解。最后,根据获得的解,进行了参数研究,研究了土的各向异性对桩竖向动力响应的影响。可以看出,垂直方向上的土的剪切模量对桩的动力响应的影响要比水平面上的土的剪切模量对桩的动力响应的影响更显着。

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