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Effect of ventilation strategies for removing indoor house dust: An experimental and simulation study

机译:通风策略对清除室内灰尘的影响:实验与仿真研究

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House dust includes the mold spores or corpses and feces of the mite, among other things, which would cause allergies, asthma, and unspecific hypersensitivities. The possibility of having an allergic reaction to house dust is particularly high for children. In this study, experiments and simulations were performed to study the flow and diffusion fields affected by different location and shape of outlets. Two kinds of ventilation strategies were considered, i.e., ceiling exhaust and floor-level slit exhaust. In the experiments, for the two cases, the characteristics of airflow within the whole room are generally similar except for the airflow close to the outlet. Riboflavin particles were used as the house dust; the amount of particles in the ceiling exhaust was a little larger than that of the slit exhausted after particles decreased to the same level as the background. Flow and diffusion fields were investigated by computational fluid dynamics (CFD) simulations. The characteristics of airflow are similar for both experimental and simulation results. The particles with a diameter of 0.5-3.0 μm in the experimental data and calculated values showed good agreement. It was concluded that floor-level slit exhaust ventilation strategy produced less house dust in the whole room than the ceiling exhaust did.
机译:室内灰尘包括霉菌孢子或螨虫的尸体和粪便等,这些物质会引起过敏,哮喘和非特异性超敏反应。对儿童产生过敏反应的可能性特别高。在这项研究中,进行了实验和模拟以研究受出口的不同位置和形状影响的流动和扩散场。考虑了两种通风策略,即天花板排气和地板缝隙排气。在实验中,对于这两种情况,除了靠近出口处的气流外,整个房间内的气流特征通常相似。核黄素颗粒用作室内灰尘。天花板排气中的颗粒数量比颗粒减少到与背景相同的水平后的狭缝排气量要大一些。通过计算流体动力学(CFD)模拟研究了流场和扩散场。实验和模拟结果的气流特征相似。在实验数据和计算值中具有0.5-3.0μm直径的颗粒显示出良好的一致性。结论是,地板水平的狭缝排气通风策略在整个房间内产生的室内灰尘少于天花板排气。

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