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Wind-Tunnel Experiments for Gas Dispersion in an Atmospheric Boundary Layer with Large-Scale Turbulent Motion

机译:大型湍流运动在大气边界层中气体扩散的风洞实验

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Large-scale turbulent motions enhancing horizontal gas spread in an atmospheric boundary layer are simulated in a wind-tunnel experiment. The large-scale turbulent motions can be generated using an active grid installed at the front of the test section in the wind tunnel, when appropriate parameters for the angular deflection and the rotation speed are chosen. The power spectra of vertical velocity fluctuations are unchanged with and without the active grid because they are strongly affected by the surface. The power spectra of both streamwise and lateral velocity fluctuations with the active grid increase in the low frequency region, and are closer to the empirical relations inferred from field observations. The large-scale turbulent motions do not affect the Reynolds shear stress, but change the balance of the processes involved. The relative contributions of ejections to sweeps are suppressed by large-scale turbulent motions, indicating that the motions behave as sweep events. The lateral gas spread is enhanced by the lateral large-scale turbulent motions generated by the active grid. The large-scale motions, however, do not affect the vertical velocity fluctuations near the surface, resulting in their having a minimal effect on the vertical gas spread. The peak concentration normalized using the root-mean-squared value of concentration fluctuation is remarkably constant over most regions of the plume irrespective of the operation of the active grid.
机译:在风洞实验中模拟了增强水平气体在大气边界层中扩散的大规模湍流运动。当为角偏转和转速选择合适的参数时,可以使用安装在风洞中测试部分前部的有源栅格来产生大规模的湍流运动。在有或没有有源网格的情况下,垂直速度波动的功率谱都不会改变,因为它们受到表面的强烈影响。随有源网格的流向和横向速度波动的功率谱在低频区域增加,并且更接近于从现场观察得出的经验关系。大规模的湍流运动不会影响雷诺剪切应力,但会改变相关过程的平衡。喷射对扫掠的相对贡献被大规模的湍流运动所抑制,表明这些运动表现为扫掠事件。主动气体产生的横向大规模湍流运动增强了横向气体扩散。但是,大规模运动不会影响表面附近的垂直速度波动,从而导致它们对垂直气体扩散的影响最小。使用浓度波动的均方根值归一化的峰值浓度在羽流的大部分区域中都非常恒定,而与活动网格的运行无关。

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