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Influence of turbulent boundary conditions on RANS simulations of pollutant dispersion in mechanically ventilated enclosures with transitional slot Reynolds number

机译:湍流边界条件对带有过渡槽雷诺数的机械通风柜体中污染物扩散的RANS模拟的影响

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摘要

We investigate the influence of turbulent inlet boundary conditions on indoor air-flow characteristics and pollutant dispersion in Reynolds-averaged Navier-Stokes (RANS) simulations of an indoor ventilated enclosure at a transitional slot Reynolds number. A benchmark ventilation case is considered – for comparison experimental PIV data are available. Two turbulence closure models are included in the study, i.e., a low-Reynolds-number k–ɛ model, and the SST k–ω model. When looking at velocity fields, we find that the influence of turbulent length scales at the inlet boundary on the indoor flow field is small. The influence of turbulence intensity (ranging between 2% and 30%) is considerably larger, in particular affecting the separation point of the inlet jet along the top wall. When further investigating the effect of turbulent conditions at the inlet on pollutant dispersion for a hypothetical indoor contaminant release case, we find that variations of inlet turbulent length scales lead to differences in pollutant concentration of up to 20%. Variations due to changes in inlet turbulent intensity lead to differences up to a factor 2. These findings strongly emphasize the importance of imposing realistic boundary conditions for turbulence models, refuting the common working hypothesis, often used in the indoor-ventilation literature, that varying these conditions has negligible impact on simulation results.
机译:我们在过渡槽雷诺数下的室内通风罩的雷诺平均纳维-斯托克斯(RANS)模拟中研究湍流入口边界条件对室内空气流动特性和污染物扩散的影响。考虑基准通风情况–为了进行比较,可提供实验PIV数据。研究中包括两个湍流闭合模型,即低雷诺数k–ɛ模型和SST k–ω模型。当观察速度场时,我们发现入口边界处的湍流长度尺度对室内流场的影响很小。湍流强度的影响(范围在2%到30%之间)要大得多,特别是影响沿顶壁的入口射流的分离点。当进一步研究假设的室内污染物释放情况下入口处湍流条件对污染物扩散的影响时,我们发现入口湍流长度尺度的变化会导致污染物浓度差异高达20%。由于入口湍流强度变化而导致的变化导致差异高达2倍。这些发现强烈强调了为湍流模型施加逼真的边界条件的重要性,驳斥了通常在室内通风文献中使用的共同工作假设,即改变这些假设条件对模拟结果的影响可忽略不计。

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    Cao Shijie; Meyers Johan;

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  • 年度 2013
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