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Three-dimensional simulation of track on poroelastic half-space vibrations due to a moving point load

机译:运动点载荷引起的多孔弹性半空间振动轨迹的三维模拟

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An analytical approach is used to investigate dynamic responses of a track system and the poroelastic half-space soil medium subjected to a moving point load under three-dimensional condition. The whole system is divided into two separately formulated substructures, the track sub-system and the ground. The ballast supporting rails and sleepers is placed on the surface of the ground. The rail is modeled by introducing the Green function for an infinitely long Euler beam subjected to the action of the moving point load and the reaction of sleepers represented by a continuous mass. Using the double Fourier transform, the governing equations of motion are then solved analytically in the frequency-wave-number domain. The time domain responses are evaluated by the inverse Fourier transform computation for a certain load velocities. Computed results show that dynamic responses of the soil medium are considerably affected by the fluid phase as well as the load velocity.
机译:分析方法用于研究三维条件下轨道系统和多孔弹性半空间土壤介质在受动点载荷作用下的动力响应。整个系统分为两个单独制定的子结构,即轨道子系统和地面。镇流器支撑轨和轨枕放置在地面上。通过对无限长的欧拉梁引入格林函数对轨道进行建模,该无限长的欧拉梁受到移动点载荷和以连续质量表示的轨枕的作用。使用双傅立叶变换,然后在频率波数域中解析求解运动的控制方程。时域响应是通过逆傅立叶变换计算对特定负载速度进行评估的。计算结果表明,土壤介质的动力响应受流体相和载荷速度的影响很大。

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