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Prediction of thermal comfort, IAQ, and energy consumption in a dense occupancy environment with the under floor air distribution system

机译:使用地板下空气分配系统预测在密集居住环境中的热舒适性,IAQ和能耗

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The objective of this study is to investigate an under floor air distribution (UFAD) system with combined and separate return and exhaust air vents regarding thermal comfort, indoor air quality (IAQ), and energy consumption. This ventilation system is used in a large indoor environment (dense occupancy), and two common types of inlet diffusers (direct and swirl) are used. Computational fluid dynamics (CFD) methods are used to predict thermal comfort conditions of occupants, IAQ and energy consumption in this space. Based on the results, direct inlet diffusers cannot lead to an acceptable temperature gradient in vertical direction in none of the examined return air vent positions, but swirl inlet diffusers can lead to an acceptable one. By precisely considering thermal comfort conditions, and IAQ made by swirl inlet diffusers, opting the upper boundary of the occupied zone (1.7 m) for return air vent position (which is the optimum case study among all the examined case studies) can lead to the best results. Moreover, the optimum return air vent position in this UFAD system can result to 10.5 percent reduction in the amount of energy consumption compared to the mixing ventilation system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是研究地板下空气分配(UFAD)系统,该系统在热舒适性,室内空气质量(IAQ)和能耗方面具有独立的回风口和排气口。该通风系统用于大型室内环境(密集使用),并且使用两种常见类型的进口扩散器(直接和漩涡形)。计算流体动力学(CFD)方法用于预测该空间中乘员的热舒适状况,室内空气质量和能耗。根据结果​​,直接进气扩散器在任何一个检查的回风口位置都无法在垂直方向上产生可接受的温度梯度,但涡流进气扩散器可以在可接受的方向上产生可接受的温度梯度。通过精确考虑热舒适条件和涡流进气扩散器产生的IAQ,选择占据区域的上边界(1.7 m)作为回风口位置(这是所有检查的案例研究中的最佳案例研究)。最好的结果。此外,与混合通风系统相比,该UFAD系统中的最佳回风口位置可减少10.5%的能耗。 (C)2015 Elsevier Ltd.保留所有权利。

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