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Contribution of large-vehicle vibration and bridge vibration to low-frequency noise generation characteristics

机译:大型车辆振动和桥梁振动对低频噪声产生特性的贡献

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摘要

It is essential to elucidate the generation factors and propagation process of bridge vibrations and low frequency noises with respect to optimal design and safety. However, previous studies have only reported on the individual vibration generation factors. Moreover, available studies that compare and examine these factors under the same conditions are insufficient. In this investigation, we aim to carefully examine the contribution of bridge vibration and low-frequency noise generation to its design and safety by performing a vibration test on an actual large bridge by driving a test vehicle across it. Experimental results of stress, displacement, vibration acceleration, and low-frequency-sound pressure level for each part of the bridge showed that the influence of the traveling speed and the type of vehicle suspension were significant factors with respect to the generation and propagation of bridge vibration and low frequency noise. Furthermore, the contribution analysis of the factors via quantification theory type I showed that traveling speed, traveling position, presence or absence of loading, speed of travel, and type of suspension contributed to the low-frequency-sound pressure level. (C) 2019 Elsevier Ltd. All rights reserved.
机译:对于最佳设计和安全性,必须阐明桥梁振动和低频噪声的发电因子和传播过程。然而,以前的研究仅报告了个体振动产生因子。此外,在相同条件下比较和检查这些因素的可用研究不足。在这项调查中,我们旨在通过在其上驾驶测试车辆在实际大桥上进行振动测试,仔细检查桥梁振动和低频噪声产生对其设计和安全的贡献。桥梁每个部分的应力,位移,振动加速度和低频声压水平的实验结果表明,关于桥梁的产生和传播的行驶速度和车辆悬架的影响是显着的因素振动和低频噪声。此外,通过量化理论类型的因素的贡献分析我表明,行进速度,行进位置,负载,行进速度和悬架类型有助于低频声压水平。 (c)2019 Elsevier Ltd.保留所有权利。

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