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Reduction of air pollution levels downwind of a road with an upwind noise barrier

机译:降低带有顺风屏障的道路顺风的空气污染水平

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摘要

We propose a dispersion model to estimate the impact of a solid noise barrier upwind of a highway on air pollution concentrations downwind of the road. The model, based on data from wind tunnel experiments conducted by , assumes that the upwind barrier has two main effects: 1) it creates a recirculation zone behind the barrier that sweeps the emissions from the highway back towards the wall, and 2) it enhances vertical dispersion and initial mixing. By combining the upwind barrier model with the mixed wake model for a downwind barrier described in , we are able to model dispersion of emissions from a highway with noise barriers on both sides. The model provides a good description of measurements made in the wind tunnel. The presence of an upwind barrier causes reductions in concentrations relative to those measured downwind of a road with no barriers. The reduction can be as large as that caused by a downwind barrier if the recirculation zone covers the width of the highway. Barriers on both sides of the highway result in larger reductions downwind of the barriers than those caused by a single barrier either upwind or downwind. As expected, barrier effects are small beyond 10 barrier heights downwind of the highway. We also propose a tentative model to estimate on-road concentrations within the recirculation zone induced by the upwind barrier.
机译:我们提出了一种弥散模型,以估算高速公路上风的固体噪声屏障对公路下风的空气污染浓度的影响。该模型基于进行的风洞实验的数据,假定上风屏障具有两个主要作用:1)在屏障后面创建了一个再循环区域,将来自高速公路的排放物扫回墙壁,并且2)增强了垂直分散和初始混合。通过将迎风屏障模型和混合尾流模型混合用于迎风屏障,我们能够对两侧带有噪声屏障的高速公路的排放扩散进行建模。该模型很好地描述了在风洞中进行的测量。相对于无障碍道路的顺风测量,存在迎风屏障会导致浓度降低。如果回流区覆盖了高速公路的宽度,则减小的幅度可能与顺风屏障引起的减小幅度一样大。公路两侧的障碍比顺风或顺风的单个障碍导致的顺风减少更大。不出所料,在高速公路顺风方向超过10个障碍物高度时,障碍物影响很小。我们还提出了一个暂定模型,以估计逆风屏障引起的回流区内的道路浓度。

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