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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Scaling of building affected plume rise and dispersion in water channels and wind tunnels-Revisit of an old problem
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Scaling of building affected plume rise and dispersion in water channels and wind tunnels-Revisit of an old problem

机译:建筑物的缩放影响羽状上升和在水道和风洞中的扩散-回顾一个老问题

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The high cost and site-specific results of field experiments have made water channels and wind tunnels important tools for the investigation of urban air quality. However, the applicability of laboratory studies depends on the correct scaling of the dominant physical properties. Simulation of the urban dispersion problems in laboratory facilities requires correct scaling of mean flow, plume rise, and turbulence governed plume spread. In this paper, a method for scaling the urban dispersion parameters in water channels and wind tunnels is presented. This method has been previously proposed and studied for the plume rise from isolated stacks; however, it has not been evaluated for cases of plume rise affected by surrounding buildings. Water channel experiments show that plume rise associated with relatively low-level buoyant sources in urban areas is highly affected by the complex flows induced by surrounding buildings, an effect which current plume rise models are not able to accurately reproduce. Based on these experiments, a new method for calculating the plume rise in urban areas, which accounts for the effect of surrounding buildings, is developed. The similarity of flow and plume rise, by matching the densimetric Froude number and relaxing initial density condition at the source, enables correct scaling of the concentration measurements from the laboratory to the field through the non-dimensional Gaussian dispersion model. This technique allows us to investigate the dispersion of buoyant emissions from low-level sources in urban areas through water channel or wind tunnel simulations. The sensitivity of this scaling technique under specific urban conditions is investigated.
机译:现场试验的高成本和特定地点的结果已使水通道和风洞成为研究城市空气质量的重要工具。但是,实验室研究的适用性取决于主要物理特性的正确缩放。要模拟实验室设施中的城市分散问题,需要正确缩放平均流量,羽流上升和湍流控制的羽流扩散。本文提出了一种缩放水道和风洞中城市扩散参数的方法。先前已经提出并研究了这种方法,用于隔离堆中的烟羽上升。但是,尚未对周围建筑物影响羽状上升的案例进行评估。水道实验表明,与城市中相对较低水平的浮力源相关的羽状上升受到周围建筑物引起的复杂流动的强烈影响,当前的羽状上升模型无法准确地再现这种影响。基于这些实验,开发了一种计算城市区域羽状上升的新方法,该方法考虑了周围建筑物的影响。流量和羽流上升的相似性,通过匹配密度Froude数和放宽源头的初始密度条件,可以通过无量纲的高斯色散模型对从实验室到现场的浓度测量值进行正确缩放。通过这项技术,我们可以通过水道或风洞模拟研究城市中低水平排放源产生的浮力散布情况。研究了这种缩放技术在特定城市条件下的敏感性。

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