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Research on the Control of Wheel-rail Noise by Wheel Sound-proof Skirt for High-speed Train

机译:高速列车用车轮轨道噪声控制控制轮轨噪声的控制

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Shielding noise source is an effective way to reduce wheel-rail noise of high-speed railway. Wheel, as an important noise source, occupies a large proportion of wheel-rail noise. Therefore, shielding the wheel noise to reduce the radiated noise by installing sound-proof skirt is feasible. This paper takes transmission loss as the evaluation index, calculates and analyses the influence of different shapes and material parameters on the noise reduction effect of skirt basing on acoustic theory and statistical energy method. In order to provide a theoretical reference for reducing the noise radiation of high-speed train wheels and the choice of sound-proof skirts. The research results show that the structure and material parameters of the skirt will obviously affect the transmission loss in the whole frequency band. Under the same conditions, increasing the thickness of the skirt end face is beneficial to effectively isolate the noise; the Y-type skirt has stronger noise reduction performance than the T-type skirt; laying a higher unit mass of sound absorbing material can enhance the noise reduction effect of the skirt.
机译:屏蔽噪声源是减少高速铁路轮轨噪声的有效方法。车轮作为一个重要的噪声源,占据了较大的轮轨噪音比例。因此,屏蔽车轮噪声以通过安装隔音裙来降低辐射噪声是可行的。本文采用传输损耗作为评价指标,计算和分析不同形状和材料参数对裙边裙型对声学理论和统计能量法的影响。为了为减少高速列车车轮的噪声辐射以及隔音裙的选择提供理论参考。研究结果表明,裙部的结构和材料参数明显影响整个频带中的传输损耗。在相同的条件下,增加裙子端面的厚度有利于有效地隔离噪声; Y型裙子具有比T型裙子更强的降噪性能;铺设更高的单元质量吸音材料可以提高裙子的降噪效果。

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