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Evaluation of the Influence of Transitional Slot Reynolds Numbers on Ventilation Efficiency in Mechanically Ventilated Enclosures

机译:过渡槽雷诺数对机械通风围栏通风效率影响的评价

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We investigate the influence of a set of transitional inlet slot Reynolds numbers (ranging from 790 to 4000) on ventilation efficiency for an indoor ventilated enclosure. These slot Reynolds numbers are directly related with supplied ventilation rates, corresponding to Air Change per Hour (ACH) 4 to 20. The low-Re-number k-£ model is applied for RANS simulation in the current study. The maximal local volume-averaged concentration and recirculation rate are employed to represent ventilation efficiency. We found that when increasing inlet velocities, i.e., increasing slot Reynolds numbers, the impact on turbulence levels and pollutant concentration distributions is considerable. The larger the inlet slot Reynolds number is, the smaller the pollutant concentration magnitude will become. The results also indicated that pollutant concentration ceases to decrease with the increase of slot Reynolds numbers. Moreover, it will be less dependent on the larger range of slot Reynolds numbers (for the current study, i.e. Res>3000) and will finally tend to show an asymptotic behavior. These findings will play an important role for the design of energy-efficient ventilation systems.
机译:我们研究了一组过渡入口槽雷诺数(范围从790到4000)对室内通风外壳的通风效率的影响。这些插槽雷诺数与供应的通风速率直接相关,对应于每小时的空气变化(ACH)4至20.在当前研究中施加低重新编号k-£型号。采用最大局部体积平均浓度和再循环率来表示通气效率。我们发现当增加入口速度时,即增加槽雷诺数,对湍流水平和污染物浓度分布的影响是相当大的。入口槽雷诺数越大,污染物浓度幅度越小。结果还表明污染物浓度随着槽雷诺数的增加而停止减少。此外,它将不太依赖于较大范围的槽雷诺数(目前的研究,即RES> 3000)并且最终倾向于显示渐近行为。这些调查结果将为节能通风系统的设计发挥重要作用。

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