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STUDY ON NOISE-ATTENUATING EFFECT OF NOISE BARRIERS WITH SPHERE DIFFUSERS IN URBAN RAIL TRANSIT

机译:城市轨道交通球体扩散器噪声衰减噪声衰减效应

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Noise-attenuating effect of noise barriers is largely influenced by their structural design.It is of great importance to study on the optimization of the structure of noise barriers with diffusers in urban rail transit system,noise barriers with sphere diffusers are chose to be the object of this study.The finite-infinite element coupling method is applied for calculating insertion loss in the two-dimensional model by ACTRAN whose reliability is proved by comparison with relevant dissertations,that is the calculation result of Muradali A.and Fyfe K.R.in 1998.Also,the roadbed model without noise barrier is verified by the test carried out in Rail Transit Comprehensive Test Line in Tongji University.Afterwards,qualitative and quantitative analyses are separately done for influences of different diffuser spacing and width on noise-attenuating effect of noise barriers with sphere diffusers.Based on the reliability of the roadbed model without noise barrier by using ACTRAN,regular changes can be figured out by verifying the spacing or width of the diffusers on the surface of the noise barriers.To be more specific,noise-attenuating effect can be improved by reducing the diffuser spacing or increasing the diffuser width,which can provide theoretical foundation for standard design on optimizing noise barriers.
机译:噪声衰减噪声损伤的效果主要受其结构设计的影响。它对于研究对城市轨道交通系统中的扩散器的噪声屏障结构的优化非常重要,具有球体扩散器的噪声屏障被选择为物体在这项研究中。通过与相关论文的比较来证明其可靠性证明其可靠性的有限无限元素耦合方法,即穆拉达利A.和Fyfe Krin 1998的计算结果计算。此外,通过同济大学轨道运输综合测试线路进行的测试,无噪音屏障的路基模型。在令人诉讼,定性和定量分析中,分别进行了分别的影响,以实现不同扩散器间距和宽度对噪声屏障的噪声衰减效果的影响通过球体扩散器。通过使用Actran的路基模型的可靠性,通过Actran,常规改变C通过验证噪声屏障表面上的扩散器的间隔或宽度来辨认出来。通过减少扩散器间隔或增加漫射宽度,可以提高更具体的,可以提高噪声衰减效果,这可以为其提供理论基础优化噪声屏障的标准设计。

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