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Effect of stack height and exhaust velocity on pollutant dispersion in the wake of a building

机译:烟囱高度和排气速度对建筑物尾流污染物扩散的影响

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The dispersion of pollutants exhausted from a building roof stack located in the wake of a tower is investigated by means of the realizable k-£ turbulence model. Variations in stack height and pollutant exhaust velocity are considered to assess their influence on the distribution of pollutant concentrations in the neighbourhood of the emitting building. In order to determine optimum locations for fresh-air intakes, the worst case is considered, namely when the wind originates directly upstream of the tower and places the emitting building in its wake. Special attention is given to the evolution of the plume and distribution of pollutant concentrations on the roof and windward wall of the emitting building, as well as on the leeward wall of the upwind tower. Simulation results are compared to wind tunnel experiments conducted in a boundary layer wind tunnel. For this particular configuration, the paper shows that increasing the stack height has an effect similar to that obtained by increasing the momentum ratio, but with some differences, depending upon which wall of the two buildings is considered. On the emitting building, the leeward wall has the lowest concentration values for all stack heights and momentum ratios considered; thus this is the best location for fresh-air intakes. However, for the tower, fresh-air intakes should not be located on the leeward wall due to high pollutant concentrations. The results show completely different pollutant dispersion patterns from those for an isolated building. This highlights the importance of accounting for structures that lie in close proximity to the emitting building.
机译:通过可实现的k-£湍流模型研究了位于塔后的建筑物屋顶烟囱排放的污染物的扩散。考虑烟囱高度和污染物排放速度的变化,以评估其对排放建筑物附近污染物浓度分布的影响。为了确定用于新鲜空气进气的最佳位置,考虑了最坏的情况,即当风直接在塔架的上游发出并将排放建筑物置于其尾流处时。要特别注意发射建筑物的屋顶和迎风壁以及逆风塔的背风壁上羽流的演变以及污染物浓度的分布。将模拟结果与在边界层风洞中进行的风洞实验进行了比较。对于此特定配置,本文表明,增加堆栈高度的效果与通过增加动量比获得的效果相似,但有一些区别,这取决于考虑的是两座建筑物的哪面墙。在发射建筑物上,对于所有考虑的烟囱高度和动量比,背风墙的浓度值最低。因此,这是获取新鲜空气的最佳位置。但是,对于塔来说,由于高污染物浓度,新鲜空气进气口不应位于背风壁上。结果表明,污染物的散布方式与隔离建筑物的散布方式完全不同。这突出了考虑靠近发射建筑物的结构的重要性。

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