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Experimental Measurements of Expected Mass Fraction in a Contaminant Plume

机译:污染物羽流中预期质量分数的实验测量

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The sudden release of a quantity of gas into the atmospheric boundary layer produces a contaminant cloud. The expected mass fraction function provides a relatively simple measure of the contaminant concentration values found within the cloud and represents the ensemble-averaged fraction of the conserved release mass found at the different contaminant concentration intervals as the cloud evolves. The plume generated by a line source in grid turbulence is used to investigate the expected mass fractionfunction as it applies to scalar concentration values found on a typical line normal to the plume axis. Simultaneous particle image velocimetry and planar laser induced fluorescence are used to measure velocity and concentration fields, respectively. Themeasured expected mass fraction functions are observed to be approximately self-similar when concentration values are normalized by the centreline mean concentration. The moments of the expected mass fraction function are observed to be simply related to the centreline moments of the probability density function of scalar concentration. Arguments based on a source fluid, non-source fluid decomposition of the scalar probability density function are used to explain these observations. The results are compared with the theoretical and experimental results established for a line source of scalar in grid turbulence.
机译:大量气体突然释放到大气边界层中会产生污染物云。预期质量分数函数提供了一个相对简单的量度,可测量云中发现的污染物浓度值,并表示随着云的发展,在不同污染物浓度间隔处发现的保守释放质量的总体平均分数。由线源在网格湍流中产生的羽流用于研究预期的质量分数函数,因为它适用于在垂直于羽流轴的典型线上找到的标量浓度值。同时粒子图像测速和平面激光诱导荧光分别用于测量速度场和浓度场。当浓度值通过中心线平均浓度归一化时,观测到的预期质量分数函数近似自相似。观察到预期质量分数函数的矩与标量浓度的概率密度函数的中心线矩简单相关。使用基于标量概率密度函数的源流体,非源流体分解的参数来解释这些观察结果。将结果与为网格湍流中的标量线源建立的理论和实验结果进行比较。

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