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Estimating the effect of semi-transparent low-height road traffic noise barriers with ultra weak variational formulation

机译:用超弱变分公式估算半透明低高度道路交通噪声屏障的效果

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abs The ultra weak variational formulation (UWVF) approach is used to study the effect of semi-transparent road traffic noise barriers of limited height. This numerical method is extended to simulate sound propagation through a porous medium, based on the Zwicker and Kosten phenomenological porous rigid-frame model. An efficient approach to calculate noise levels in multi-lane road traffic noise situations is presented. The UWVF method was validated successfully by comparison with finite-difference time-domain (FDTD) calculations, for the case of sound propagation near a porous, low-height, and complex shaped noise barrier, and for sound propagation above porous ground in a refracting atmosphere. An assessment is made of the shielding of various porous lowheight noise barriers for people on the pavement along the road. Porous barriers were shown to improve noise shielding when compared to geometrically identical rigid noise barriers.
机译:abs使用超弱变项公式(UWVF)方法来研究有限高度的半透明道路交通噪声屏障的效果。基于Zwicker和Kosten现象学的多孔刚性框架模型,该数值方法被扩展为模拟声音在多孔介质中的传播。提出了一种在多车道道路交通噪声情况下计算噪声水平的有效方法。通过与有限差分时域(FDTD)计算进行比较,UWVF方法已成功验证,用于在多孔,低高度和复杂形状的噪声屏障附近传播声音的情况,以及在折射过程中在多孔地面之上传播声音的情况大气层。对沿路人行道上的人员的各种多孔低高度隔音屏障的屏蔽进行了评估。与几何上相同的刚性噪声屏障相比,多孔屏障显示出改善的噪声屏蔽。

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