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Optimized T-Shape and Y-Shape Inclined Sound Barriers for Railway Noise Mitigation

机译:优化的T形和Y形倾斜声屏障,可减轻铁路噪声

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Performance of T-shape and Y-shape inclined noise barriers in railway noise mitigation is studied in this paper. Control of the noise attenuation and sound-map behind two conventional barriers is performed by optimal adjusting their inclination angle. Logarithmic averaging of the noise attenuation in different heights is adopted to be the objective function. A numerical model is constructed and the Steepest Descent Method (SDM) is adopted as the optimization algorithm. Validly of the modeling and solution procedure is verified by use of experimental results. Field measurements are performed and the frequency responses of different trains are loaded into the model. Optimal inclination angel is subsequently obtained for each configuration. It is found that the inclination angle can play a significant role in noise mitigation level remarkably in high elevation back regions.
机译:研究了T形和Y形倾斜声屏障在铁路减噪中的性能。通过最佳调整倾斜角度,可以控制两个常规障碍物后面的噪声衰减和声图。目标高度采用不同高度的噪声衰减的对数平均。建立了数值模型,并采用最速下降法(SDM)作为优化算法。通过使用实验结果验证了建模和求解过程的有效性。执行现场测量,并将不同列车的频率响应加载到模型中。随后为每种配置获得最佳倾斜角度。发现在高仰角后方区域中,倾斜角在降低噪声方面起着重要作用。

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