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首页> 外文期刊>International Journal of Modern Physics, C. Physics and Computers >A variable turbulent Schmidt number formulation by numerical simulation of atmospheric plume dispersion
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A variable turbulent Schmidt number formulation by numerical simulation of atmospheric plume dispersion

机译:大气羽流分散数值模拟变种湍流施密特数制定

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摘要

Turbulent Schmidt number as an important parameter in computational fluid dynamic (CFD) simulations is strongly dependent on height, whereas it is mostly considered to be constant in the literature. This paper presents a new variable turbulent Schmidt number formulation which can calculate the relative concentrations (RCs) in neutral atmospheric conditions more accurately. To achieve this aim, RCs from continuous releases are calculated in different distances by the analytical Gaussian plume mode. CFD simulations are carried out for single stack dispersion on a flat terrain surface and an inverse procedure is then applied so that different turbulent Schmidt numbers are used as inputs to determine the RCs to select the "best-fit" turbulent Schmidt number value. This process is continued for different heights to fit a curve to obtain the new formulation for turbulent Schmidt number varying with height. The values are compared with experimental results. The comparison indicates that the new formulation for turbulent Schmidt number is more accurate and reliable than previous research works.
机译:湍流施密特号作为计算流体动态(CFD)模拟中的重要参数强烈依赖于高度,而其主要被认为是恒定的文献。本文提出了一种新的可变湍流施密特编号制剂,可以更准确地计算中性大气条件中的相对浓度(RCS)。为实现此目的,通过分析高斯羽毛模式的不同距离计算来自连续版本的RC。 CFD仿真在平坦地形表面上进行单堆叠色散,然后施加逆过程,使得不同的湍流施密特数用作确定RC选择“最适合”湍流施密度值的输入。该过程继续进行不同的高度以适合曲线,以获得具有高度变化的湍流施密特数的新配方。将这些值与实验结果进行比较。比较表明,湍流施密特数的新配方比以前的研究作品更准确可靠。

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