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Indoor pollutant mixing time in an isothermal closed room: an investigation using CFD

机译:等温密闭室内的室内污染物混合时间:使用CFD的调查

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We report on computational fluid dynamics (CFD) predictions of mixing time of a pollutant in an unventilated, mechanically mixed, isothermal room. The study aims to determine: (1) the adequacy of the standard Reynolds Averaged Navier Stokes two-equation (k - epsilon) turbulence model for predicting the mixing time under these conditions and (2) the extent to which the mixing time depends on the room airflow, rather than the source location within the room. The CFD simulations modeled the 12 mixing time experiments performed by Drescher et al. (Indoor Air 5 (1995) 204) using a point pulse release in an isothermal, sealed room mechanically mixed with variable power blowers. Predictions of mixing time were found in good agreement with experimental measurements, over an order of magnitude variation in blower power. Additional CFD simulations were performed to investigate the relation between pollutant mixing time and source location. Seventeen source locations and five blower configurations were investigated. Results clearly show large dependence of the mixing time on the room airflow, with some dependence on source location. We further explore dependence of mixing time on the velocity and turbulence intensity at the source location. Implications for positioning air-toxic sensors in rooms are briefly discussed. (C) 2003 Elsevier Ltd. All rights reserved. [References: 16]
机译:我们报告了在通风,机械混合,等温室内污染物的混合时间的计算流体力学(CFD)预测。该研究旨在确定:(1)标准的雷诺兹平均Navier斯托克斯二方程(k-epsilon)湍流模型是否足够,以预测在这些条件下的混合时间;以及(2)混合时间取决于房间的气流,而不是房间内的源位置。 CFD仿真模拟了Drescher等人进行的12个混合时间实验。 (Indoor Air 5(1995)204)在机械密封地与可变功率鼓风机混合的等温,密封室中使用点脉冲释放。在鼓风机功率的一个数量级变化中,发现混合时间的预测与实验测量结果非常吻合。进行了额外的CFD模拟,以研究污染物混合时间与污染源位置之间的关系。调查了十七个气源位置和五个鼓风机配置。结果清楚地表明,混合时间对房间气流的依赖性很大,而对源位置的依赖性也很大。我们进一步探索混合时间对源位置处的速度和湍流强度的依赖性。简要讨论了在房间内放置空气毒性传感器的含义。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:16]

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