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Dynamic Response of a Circular Tunnel Embedded in a Saturated Poroelastic Medium due to a Moving Load

机译:荷载作用下埋入饱和多孔弹性介质中圆形隧道的动力响应

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Dynamic response of a circular tunnel embedded in a porous medium and subjected to a moving axisymmetric ring load is investigated in this paper. In this study, two scalar potentials and two vectorial potentials are introduced to represent the displacements for the solid skeleton and the pore fluid. Based on Biot's theory and applying the Fourier transformation on time variable, a set of frequency domain governing equations for the potentials are obtained. Performing the Fourier transformation on the axial coordinate, closed-form general solutions for the potentials with arbitrary constants are obtained. Using the closed-form general solutions and boundary conditions along the tunnel surface, the arbitrary constants involved in the potentials are calculated. Representations for the displacements, the stresses and the pore pressure are derived in terms of the closed-form potentials. Analytical inversion of the Fourier transformation with respect to frequency and numerical inversion of the Fourier transformation with respect to the axial wave number lead to numerical solutions for the displacements, the stresses and the pore pressure in the porous medium. Numerical results demonstrate the soil response due to a high speed load is quite different from those due to a static load or a lower speed load. These differences become more pronounced when the velocity of moving load approaches the velocities of elastic waves of a porous medium.
机译:本文研究了埋在多孔介质中的圆形隧道的动态响应,并对其进行了轴对称的环形移动。在这项研究中,引入了两个标量势和两个矢量势来表示固体骨架和孔隙流体的位移。基于比奥理论,对时间变量进行傅立叶变换,得到了一组电位的频域控制方程。在轴向坐标上执行傅立叶变换,获得具有任意常数的势的闭式一般解。使用封闭形式的一般解和沿隧道表面的边界条件,计算出电位中涉及的任意常数。位移,应力和孔隙压力的表示是根据封闭形式的电势得出的。相对于频率的傅立叶变换的解析反演和相对于轴向波数的傅立叶变换的数值反演导致了多孔介质中位移,应力和孔隙压力的数值解。数值结果表明,由于高速载荷引起的土壤响应与由于静态载荷或较低速度引起的响应大不相同。当移动负载的速度接近多孔介质的弹性波速度时,这些差异变得更加明显。

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