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首页> 外文期刊>The Annals of occupational hygiene. >CFD simulation of contaminant decay for high reynolds flow in a controlled environment.
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CFD simulation of contaminant decay for high reynolds flow in a controlled environment.

机译:CFD模拟在受控环境中高雷诺流动的污染物衰减。

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This study examines the usage of computational fluid dynamics (CFDs) for estimating the time-elapsed decay of contaminants within a chamber experiencing high Reynolds flow. CFD results were compared with measurements taken at a controlled facility. In addition, parameters of the CFD simulation were examined; namely the effects of turbulence and inertial transport at high Reynolds number ventilating flows, as well as inlet duct configuration and its effect on the inlet velocity profile. The agreement between the computational and experimental clearance times was quite good, with percent errors as low as -5.32% at high flow rate and -11.8% at the lower flow rate. This study determined that for high Reynolds flow, diffusive transport effects may be ignored as the majority of mass is transported via the bulk stream, i.e. momentum transport. In addition, resolving the inlet velocity profile was of prime importance for accurate simulation of ventilating flows and prediction of contaminant washout. This was done by including the inlet duct geometry in the computational domain. In addition, it was found that despite different flow rates, the predicted contaminant washout took approximately 12-13% longer than predicted assuming instantaneous mixing. Furthermore, percent error between computational and experimental data as low as -5.32% shows that CFD is a useful tool for studying ventilation phenomena.
机译:这项研究检查了使用计算流体力学(CFD)来估计经历雷诺兹高流动的腔室内污染物随时间的衰减的方法。将CFD结果与在受控工厂进行的测量进行比较。另外,检查了CFD模拟的参数。即在高雷诺数通风流量下的湍流和惯性传输的影响,以及进气道的配置及其对进气速度分布的影响。计算清除时间和实验清除时间之间的一致性非常好,在高流速下误差百分比低至-5.32%,在低流速下误差低至-11.8%。这项研究确定,对于高雷诺流量,由于大部分质量都是通过散装流运输的,即动量运输,因此可以忽略扩散运输的影响。此外,解析进气速度曲线对于准确模拟通风流和预测污染物冲刷至关重要。这是通过在计算域中包括进口管道的几何形状来完成的。此外,发现尽管流速不同,但预计的污染物冲刷时间比假设瞬时混合的预计时间长约12-13%。此外,计算和实验数据之间的误差百分比低至-5.32%,表明CFD是研究通风现象的有用工具。

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