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Scale and Numerical Modelling of a Metro Rail Viaduct with Sound Absorption to Reduce In-Car and Wayside Noise

机译:发声吸收的地铁高架桥的规模和数值模型,减少汽车和路边噪声

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A scale model of a 2-car metro train on a slab track rail viaduct was employed to investigate the reduction of in-car and wayside noise when acoustic treatments were added to the inside face of the edge noise barrier and within the four-foot. The performance of the acoustic treatments was evaluated in full octaves for the full-scale frequency range of 31.5 Hz to 2 kHz. The scale model results were compared with general rail noise modelling prediction formulae and with numerical modelling results using ODEON. The model results confirmed that the interior noise level experienced by passengers is likely to increase with the addition of viaduct edge noise barriers and that wayside noise levels are reduced due to the noise barrier effect. With the addition of acoustic panels on the inside face of the viaduct edge barrier and within the four-foot, in-car and wayside noise levels reduce.
机译:使用平板轨道铁路高架桥上的2-Car Metro火车的比例模型来研究在边缘噪声屏障的内表面和四英尺内时,在向外处理时减少车载和路边噪声。 在满量程频率范围为31.5Hz至2kHz的全速率范围内评价声学处理的性能。 将比例模型结果与一般轨道噪声建模预测公式进行比较,并使用odeon的数值模拟结果。 模型结果证实,乘客经历的内部噪音水平可能随着高架桥边缘噪声屏障而增加,并且由于噪声屏障效应而降低了路边噪声水平。 随着高架边缘屏障的内表面和四英尺,车内和路边噪声水平的加入声板。

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