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Effect of inclined soil layers on surface vibration from underground railways using the thin-layer method

机译:薄层法倾斜土层对地下铁路地表振动的影响

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Noise and vibration from underground railways is a documented disturbance for individuals living or working near subways. Numerical models are used to investigate and understand vibration propagation from these underground railways, although the models commonly include simplifying assumptions (i.e., assuming the soil is a horizontally layered, homogenous half-space). Such simplifying assumptions add a level of uncertainty to the predictions that is not well understood. The goal of the current paper is to quantify the effect of including layer inclination angles up to 5° in relation to the surface. The thin-layer method (TLM) is introduced as an efficient and accurate means of simulating vibration from underground railways in arbitrarily layered half-spaces. The TLM is an element-based approach that uses the analytical wave equation to describe vibration in the horizontal direction, whereas assuming displacements in the vertical direction can be described by using a linear shape-function. The method is used to simulate a half-space with an inclined layer and is shown to be both accurate and computationally faster than a boundary-element model in predicting surface RMS velocities. The sensitivity of surface vibrations to inclination angle is also investigated, and the results suggest that small inclination angles of 5° or less can cause significant variation in RMS response of approximately 5 dB.
机译:有记录的地下铁路噪声和振动对居住在地铁附近或在地铁附近工作的个人造成了干扰。尽管数值模型通常包括简化的假设(即假设土壤是水平分层的均匀半空间),但仍使用数值模型来研究和理解这些地下铁路的振动传播。这种简化的假设给预测增加了一定程度的不确定性,而这种不确定性尚不能很好地理解。当前论文的目的是量化包括相对于表面最多5°的层倾斜角的影响。引入薄层方法(TLM)作为模拟任意层状半空间中地下铁路振动的有效且准确的手段。 TLM是一种基于元素的方法,使用解析波方程来描述水平方向上的振动,而假设可以使用线性形状函数来描述垂直方向上的位移。该方法用于模拟具有倾斜层的半空间,并且在预测表面RMS速度方面比边界元模型更精确且计算速度更快。还研究了表面振动对倾角的敏感性,结果表明,小于或等于5°的小倾角会导致RMS响应大约5 dB的显着变化。

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