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Experimental study of a stiff wave barrier in gelatine

机译:明胶中硬波屏障的实验研究

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摘要

Railway induced vibrations and re-radiated noise in buildings can be mitigated by means of wave barriers in the soil. Numerical simulations demonstrate that a stiff wave barrier, consisting of a material that is stiffer than the surrounding medium, can be very effective if the stiffness contrast between the barrier and the medium is sufficiently large. This paper presents results of a lab experiment that has been carried out to validate these findings, using gelatine instead of soil in order to reduce the wavelengths and thus the scale of the test setup. An expanded polystyrene beam is employed as wave barrier, while a non-contact measurement procedure is applied for visualizing the waves in the gelatine, based on reflections of a grid of laser rays. The experimental results are found to be in line with the numerical predictions, confirming the vibration reduction effectiveness of stiff wave barriers. (C) 2014 Elsevier Ltd. All rights reserved.
机译:可以通过土壤中的波障来减轻铁路中建筑物引起的振动和辐射噪声。数值模拟表明,如果屏障和介质之间的刚度对比度足够大,则由比周围介质更硬的材料组成的硬波屏障会非常有效。本文介绍了一个实验室实验的结果,该实验已通过使用明胶代替土壤来验证这些发现,以减少波长,从而减少测试装置的规模。使用扩展的聚苯乙烯光束作为波障,同时基于激光栅格的反射,采用非接触式测量程序来可视化明胶中的波。实验结果与数值预测相符,证实了硬波屏障的减振效果。 (C)2014 Elsevier Ltd.保留所有权利。

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