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Air quality in street canyons: a case study

机译:街道峡谷的空气质量:一个案例研究

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Keeping the air quality acceptable has become an important task for decision makers as well as for non-governmental organizations. Particulate and gaseous emissions of pollutants from auto-exhausts are responsible for rising discomfort, increasing airway diseases, decreasing productivity and the deterioration of artistic and cultural patrimony in urban centers. Air quality limit values, which are aimed at protecting public health, are frequently exceeded especially in streets and other urban hotspots. Within these streets, pedestrians, cyclists, drivers and residents are likely to be exposed to pollutant concentrations exceeding current air quality standards.In order to give the right support to decision makers for air pollution control, a suitable microscale dispersion model must be used to investigate phenomenon The paper presents the results obtained by utilizing a three dimensional numerical model based on Reynolds-averaged Navier-Stokes equations to simulate the fluid-flow development and pollutant dispersion within an isolated street canyon. Finally, the authors tested the reliability of the same code examined resemblances and differences between the measured data coming from a survey measurement within the canyon and the data coming from the code.
机译:保持空气质量合格已成为决策者和非政府组织的重要任务。汽车尾气中污染物的颗粒和气体排放导致不舒适感加剧,呼吸道疾病增加,生产力下降以及城市中心的艺术和文化遗产恶化。旨在保护公众健康的空气质量限值经常被超过,特别是在街道和其他城市热点地区。在这些街道中,行人,骑自行车的人,驾驶员和居民很可能暴露于超过当前空气质量标准的污染物浓度。 为了向决策者提供正确的空气污染控制支持,必须使用合适的微尺度弥散模型来研究现象。本文介绍了利用基于雷诺平均Navier-Stokes方程的三维数值模型进行模拟所获得的结果隔离的街道峡谷内的流体流动发展和污染物扩散。最后,作者测试了同一代码的可靠性,该代码检查了相似性以及峡谷内勘测数据与代码数据之间的相似性和差异。

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