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Chair fan-enhanced displacement ventilation for high IAQ: Effects on particle inhalation and stratification height

机译:高IAQ的座椅风扇增强型排风:对颗粒吸入和分层高度的影响

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摘要

Displacement ventilation (DV) is widely employed in buildings to achieve a high indoor air quality at 100% fresh air at floor level. To reduce energy consumption, common practice dictates selection of the minimum supply flow rate to provide a stratification height just above the breathing zone. While this practice generally results in acceptably low gas contaminant mixing ratios in the breathing zone, it may not be sufficient to protect occupants from particulate phase contaminants, since the latter tend to accumulate at a lower height under the influence of gravity. The aim of this work was to investigate the possibility of reducing breathing zone particle concentrations in DV conditioned spaces by installing fans in the arm rests of office chairs. By blowing air upwards, these chair fans (CF) can shift the equilibrium particle accumulation height out of the breathing zone, and create an envelope of clean air around the occupant. The proposed combination of DV and CF system performance was investigated theoretically and empirically using computational fluid dynamics (CFD) and controlled chamber studies involving aerosolized particles, respectively, and potential energy savings were evaluated with respect to conventional DV. It was found that with the appropriate selection of the CF flow rate, it is possible to realize a 30% reduction in DV energy use for a given level of thermal comfort and IAQ covering the inhalable particle range. Interestingly, oversized CF can result in increased contaminant exposure relative to the DV-only system. We report CF selection methodology to avoid this outcome.
机译:置换通风(DV)广泛用于建筑物中,以在地板水平100%的新鲜空气下获得较高的室内空气质量。为了减少能耗,通常的做法是选择最小的供气流量,以在呼吸区域的上方提供分层高度。尽管这种做法通常会导致呼吸区域内的气体污染物混合比率低至可接受的水平,但可能不足以保护乘员免受颗粒相污染物的影响,因为颗粒相污染物会在重力的影响下积聚在较低的高度。这项工作的目的是研究通过在办公室椅子的扶手上安装风扇来降低DV条件空间中呼吸区颗粒浓度的可能性。通过向上吹空气,这些座椅风扇(CF)可以将平衡颗粒的堆积高度移出呼吸区域,并在乘员周围形成一圈干净的空气。 DV和CF系统性能的拟议组合分别使用计算流体力学(CFD)和涉及雾化颗粒的受控室研究进行了理论和经验研究,相对于传统DV评估了潜在的节能效果。已经发现,通过适当选择CF流量,对于给定水平的热舒适性和覆盖可吸入颗粒物的IAQ,可以将DV能耗降低30%。有趣的是,相对于仅使用DV的系统,超大CF可能导致污染物暴露增加。我们报告CF选择方法,以避免这种结果。

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