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首页> 外文期刊>Journal of Hazardous Materials >A theory of ventilation estimate over hypothetical urban areas
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A theory of ventilation estimate over hypothetical urban areas

机译:假设城市地区的通风估算理论

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摘要

Urban roughness is a major factor governing the flows and scalar transport in the atmospheric boundary layer (ABL) but our understanding is rather limited. The ventilation and pollutant removal of hypothetical urban areas consisting of various types of street canyons are examined using computational fluid dynamics (CFD). The aerodynamic resistance, ventilation efficiency, and pollutant removal are measured by the friction factor f, air exchange rate (ACH), and pollutant exchange rate (PCH), respectively. Two source configurations of passive tracer, ground-level-only (Tracer 0) and all-solid-boundary (Tracer 1) are employed to contrast their transport behavior. It is found that the ventilation and pollutant removal are largely attributed to their turbulent components (over 60%). Moreover, with a consistent support from analytical solution and CFD results, the turbulent ACH is a linear function of the square root of the friction factor (ACH' proportional to f(1/2)) regardless of building geometry. Tracer 0 and Tracer 1 exhibit diversified removal behavior as functions of friction factor so analytical parameterizations have not yet been developed. In view of the large portion of aged air removal by turbulence, it is proposed that the aerodynamic resistance can serve as an estimate to the minimum ventilation efficiency of urban areas. (C) 2015 Elsevier B.V. All rights reserved.
机译:城市粗糙度是控制大气边界层(ABL)中流量和标量传输的主要因素,但我们的理解相当有限。使用计算流体动力学(CFD)检查了由各种类型的街道峡谷组成的假定城市地区的通风和污染物去除。空气阻力,通风效率和污染物去除分别通过摩擦系数f,空气交换率(ACH)和污染物交换率(PCH)进行测量。被动示踪剂的两种源配置,仅地平面(迹线0)和全固体边界(迹线1)用于对比其传输行为。发现通风和污染物去除在很大程度上归因于其湍流成分(超过60%)。而且,在分析解决方案和CFD结果的一致支持下,不管建筑物的几何形状如何,湍流ACH都是摩擦系数平方根的线性函数(ACH'与f(1/2)成比例)。示踪剂0和示踪剂1表现出多样化的去除行为,作为摩擦因数的函数,因此尚未开发出分析参数化方法。考虑到通过湍流去除大量的老化空气,建议将空气动力学阻力用作城市地区最低通风效率的估计值。 (C)2015 Elsevier B.V.保留所有权利。

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