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Experimental Investigation Of Averaging Time Effects On Building Influenced Atmospheric Dispersion Under Different Meteorological Stability Conditions

机译:不同气象稳定性条件下平均时间对建筑物影响大气弥散的影响的实验研究

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Field experiments were carried out to measure concentration and concentration fluctuation distributions on the surfaces of a complex shaped building under different stability conditions and to investigate the dependence of these distributions on the averaging time. Meteorological conditions varied from neutral to unstable. The measurements were conducted for two different building orientations to the mean wind direction. Periods of 30 min were selected based on the mean wind direction being normal to either the long or the short building wall within ±10 degrees. For shorter averaging times, the selected concentrations corresponded to the 1, 3, 5, 10 or 15 min periods in which each detector was indicating the highest average within this 30 min period. Averaging time seems to influence more the values of these maximum mean concentrations under unstable conditions than under neutral conditions on all the building walls, while the influence of averaging time is weaker in the case of the wind impinging on the short building wall under neutral conditions. Averaging time seems to have a stronger influence on concentration fluctuation intensity under unstable conditions, while the influence of averaging time on concentration fluctuation intensity is similar for both building orientations investigated. A power law function was found to describe well the dependence of the concentration on averaging time for all examined cases. The absolute values of the power law exponent p measured on the building surface are often higher than the values presented in the literature for open terrain.
机译:进行了现场试验,以测量复杂形状的建筑物在不同稳定性条件下的浓度和浓度波动分布,并研究这些分布对平均时间的依赖性。气象条件从中性到不稳定。针对相对于平均风向的两个不同建筑物方向进行了测量。根据平均风向垂直于建筑物的长或短墙在±10度以内,选择30分钟。对于较短的平均时间,选定的浓度对应于1、3、5、10或15分钟的时间段,其中每个检测器均指示这30分钟内的最高平均值。在不稳定条件下,平均时间似乎比在所有建筑物墙壁上的中性条件下对这些最大平均浓度值的影响更大,而在中性条件下风撞击短建筑物壁的情况下,平均时间的影响则较弱。在不稳定的条件下,平均时间似乎对浓度波动强度的影响更大,而两个研究方向的平均时间对浓度波动强度的影响相似。发现幂律函数很好地描述了所有检查案例中浓度对平均时间的依赖性。在建筑物表面上测得的幂律指数p的绝对值通常高于开放地形中文献中给出的值。

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