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Numerical investigation and analysis of indoor air quality in a room based on impinging jet ventilation

机译:基于撞击喷射通风的室内室内空气质量的数值调查与分析

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This study presents numerical investigation and analysis of carbon dioxide transport (CO2) within an isothermal three-dimensional room using impinging jet ventilation (IJV). The IJV is an effective strategy for use in buildings. The study is carried out under turbulent and transient flow regime. The URANS equations supplemented with energy and concentration equations are solved using the scStream code. We are targeting primarily the efficiency of the ventilation εC and the index of indoor air quality (I_(IAQ)). The ventilation flow rate is 50 m~3.h~(-1). Here, our ultimate aim is to analyse the behaviour of the flow and repartition of CO2 inside the room. The RNG k—ε model was adopted to handle the turbulence. CFD simulations were systematically checked through available experimental and/or numerical results. The obtained results indicated that the IJV ensures a homogeneous concentration distribution and a velocity of the ambient air less than 0.25 m.s~(-1). This is in agreement with the recommendations of ASHRAE Standard 55. The comparative results demonstrate that the IJV evacuates sufficiently the CO2 and ensures good air quality in an acceptable time.
机译:本研究介绍了使用撞击喷射通风(IJV)在等温三维室内二氧化碳转运(CO2)的数值研究和分析。 IJV是建筑物中使用的有效策略。该研究是在湍流和瞬态流动状态下进行的。补充有能量和浓度方程的Urans方程使用SCStream代码进行了解决。我们主要瞄准通风εc的效率和室内空气质量指数(I_(IAQ))。通风流速为50米〜3.H〜(-1)。在这里,我们的最终目标是分析房间内部的流量和重新分析的行为。采用RNG k-ε模型来处理湍流。通过可用的实验和/或数值结果系统地检查了CFD模拟。所得结果表明,IJV确保了均匀的浓度分布和环境空气的速度小于0.25μm〜(-1)。这与ASHRAE标准55的建议一致。比较结果表明,IJV足够疏散二氧化碳并确保在可接受的时间内良好的空气质量。

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