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Wind tunnel measurements of turbulent boundary layer flows over arrays of ribs and cubes

机译:湍流边界层的风洞测量在肋骨和立方体的阵列上流动

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Understanding the effect of building morphology on the flow aloft is important to the ventilation and pollutant removal in cities. This study examines the dynamics over hypothetical urban areas in isothermal conditions using wind tunnel experiments. Different configurations of rib-type and cube-type arrays are designed to model hypothetical rough urban surfaces. The mean and fluctuating velocities are measured by hot-wire anemometry with X -wire probes. The results show that significant variations of fluctuating velocities and momentum fluxes are clearly observed in the near-wall region, depicting the inhomogeneous flow in response to the presence of roughness elements in the lower part of turbulent boundary layer. Comparing the variables over different rough surfaces, the roof-level fluctuating velocities and momentum fluxes increase with increasing surface roughness. Quadrant analyses and frequency spectra collectively suggest that the fresh air entrainment and aged air removal are enhanced over rougher surfaces. Larger energy-carrying turbulence motions contribute mostly to the more efficient ventilation over urban areas.
机译:了解建筑形态对高空流动的影响对于城市的通风和污染物去除很重要。本研究使用风洞实验研究了等温条件下假设城市地区的动力学。设计了肋形和立方体形阵列的不同配置来模拟假设的粗糙城市表面。均值和波动速度通过X线探针通过热线风速仪测量。结果表明,在近壁区域清楚地观察到脉动速度和动量通量的显着变化,描绘了由于湍流边界层下部中存在粗糙元素而引起的非均匀流动。比较不同粗糙表面上的变量,顶面波动速度和动量通量随表面粗糙度的增加而增加。象限分析和频谱共同表明,较粗糙的表面增强了新鲜空气的夹带和老化空气的去除。较大的携带能量的湍流运动主要有助于城市地区更有效的通风。

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