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高塔对通过城市邻里模型的气流和扩散的影响:第2部分。污染物扩散。

The effect of a tall tower on flow and dispersion through a model urban neighborhood: part 2. Pollutant dispersion.

作者信息

Brixey Laurie A, Heist David K, Richmond-Bryant Jennifer, Bowker George E, Perry Steven G, Wiener Russell W

机构信息

Alion Science and Technology, P.O. Box 12313, Research Triangle Park, NC 27709, USA.

出版信息

J Environ Monit. 2009 Dec;11(12):2171-9. doi: 10.1039/b907137g. Epub 2009 Nov 6.

Abstract

This article is the second in a two-paper series presenting results from wind tunnel and computational fluid dynamics (CFD) simulations of flow and dispersion in an idealized model urban neighborhood. Pollutant dispersion results are presented and discussed for a model neighborhood that was characterized by regular city blocks of three-story row houses with a single 12-story tower located at the downwind edge of one of these blocks. The tower had three significant effects on pollutant dispersion in the surrounding street canyons: drawing the plume laterally towards the tower, greatly enhancing the vertical dispersion of the plume in the wake of the tower, and significantly decreasing the residence time of pollutants in the wake of the tower. In the wind tunnel, tracer gas released in the avenue lee of the tower, but several blocks away laterally, was pulled towards the tower and lifted in the wake of the tower. The same lateral movement of the pollutant was seen in the next avenue, which was approximately 2.5 tower heights downwind of the tower. The tower also served to ventilate the street canyon directly in its wake more rapidly than the surrounding areas. This was evidenced by CFD simulations of concentration decay where the residence time of pollutants lee of the 12-story tower was found to be less than half the residence time behind a neighboring three-story building. This same phenomenon of rapid vertical dispersion lee of a tower among an array of smaller buildings was also demonstrated in a separate set of wind tunnel experiments using an array of cubical blocks. A similar decrease in the residence time was observed when the height of one block was increased.

摘要

本文是一篇两篇系列论文中的第二篇,展示了在理想化城市邻里街区中气流和扩散的风洞及计算流体动力学(CFD)模拟结果。文中给出并讨论了一个模型街区的污染物扩散结果,该街区以三层排屋组成的规则城市街区为特征,其中一个街区的下风边缘有一座12层的塔楼。该塔楼对周围街道峡谷中的污染物扩散有三个显著影响:将羽流向塔楼横向吸引,极大地增强了塔楼尾流中羽流的垂直扩散,以及显著缩短了塔楼尾流中污染物的停留时间。在风洞中,在塔楼背风面的大道上、但横向距离几个街区处释放的示踪气体被吸引向塔楼,并在塔楼尾流中上升。在下一条大道上也观察到了污染物的相同横向移动,该大道位于塔楼下游约2.5个塔楼高度处。塔楼还使得其尾流中的街道峡谷比周围区域更快地通风。这在浓度衰减的CFD模拟中得到了证明,其中发现12层塔楼背风面污染物的停留时间不到相邻三层建筑后面停留时间的一半。在另一组使用立方体块阵列的风洞实验中,也证明了在一排较小建筑物中塔楼背风面快速垂直扩散的相同现象。当一个块体的高度增加时,观察到了类似的停留时间减少现象。

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