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Analyses of Thermal Comfort and Indoor Air Quality under Stratum, Displacement and Mixing Ventilation Systems

机译:分层,置换和混合通风系统下的热舒适性和室内空气质量分析

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The well-designed ventilation system ensures thermal comfort, indoor air quality and yield energy saving by avoiding excessive high values of Air Changes per Hour (ACH). Stratum ventilation has been a recently proposed air distribution system. The current CFD research investigates the performance of stratum ventilation in an office by using two values of the air change per hour, changing the exhaust location, and changing the supply location. In addition, the numerical model studied the displacement ventilation and mixing ventilation and their results were compared with that of stratum ventilation. The temperature, velocity distribution, CO2 concentration, ventilation effectiveness, effective draft temperature, and air diffusion performance index (ADPI) are discussed for all cases. The model was built and the mesh was generated using gambit~® 2.3.16 yielding 1.4 million cells. In addition, the model was simulated using Fluent~® 14. Model validation was done against experimental data using standard k-ε model turbulence model with acceptable agreement to ensure the reliability of the Computational Fluid Dynamic (CFD). From the research, the air change per hour (ACH) has a large effect on the stratum ventilation performance, and it was found that using 5 ACH gives better conditions in terms of thermal comfort and indoor air quality. The supply location is recommended to be above the occupant height to ensure that, the air reaches the breathing zone well. From investigating the stratum, displacement and mixing ventilations, the stratum ventilation provides better velocity, temperature, CO_2 concentration, ventilation effectiveness, and air diffusion performance index and ensures thermal comfort and indoor air quality.
机译:经过精心设计的通风系统可避免避免每小时换气量(ACH)过高,从而确保了热舒适性,室内空气质量并节省了能源。地层通风是最近提出的空气分配系统。当前的CFD研究通过每小时使用两个空气变化值,更改排气位置和更改供应位置来调查办公室中层通风的性能。另外,对置换通风和混合通风进行了数值模型研究,并将其结果与地层通风进行了比较。讨论了所有情况下的温度,速度分布,CO2浓度,通风效率,有效通风温度和空气扩散性能指数(ADPI)。建立模型,并使用gambit®2.3.16生成网格,产生140万个单元。此外,使用Fluent®14对模型进行了仿真。使用具有可接受一致性的标准k-ε模型湍流模型对实验数据进行了模型验证,以确保计算流体动力学(CFD)的可靠性。根据研究,每小时换气量对地层通风性能有很大影响,并且发现使用5 ACH可以在热舒适性和室内空气质量方面提供更好的条件。建议将供应位置设置在乘员高度上方,以确保空气很好地到达呼吸区域。通过调查地层通风,置换通风和混合通风,地层通风可提供更好的速度,温度,CO_2浓度,通风效果和空气扩散性能指标,并确保热舒适性和室内空气质量。

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