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Numerical simulation of airflow and particle distributions with floor circular swirl diffuser for underfloor air distribution system in an office environment

机译:用于办公环境中地板空气分配系统的地板圆形旋流扩散器的气流和粒子分布的数值模拟

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In the present study, an underfloor air distribution (UFAD) system with a circular swirl diffuser was simulated in an office room using a three-dimensional model when thermal sources were present in the room. An Eulerian-Lagrangian model was used to predict the characteristics of air and particle phases. In the Lagrangian particle model, the effects of drag, lift, Brownian, and thermophoresis forces were considered. The results showed that the circular swirl diffuser has better airflow and thermal conditions compared with the circular direct diffusers. It was also shown that the studied UFAD system provides good thermal comfort condition. The local and mean normalized particle concentrations in different heights of the room were found reasonable, and the particle removal efficiency was between 55 and 65% for all the particle sizes. The results also showed that the large particles due to their large weight stayed in lower heights of the room and deposited on the floor. The particle concentration in the breathing zone of manikins was also investigated, and it showed that though the manikins seated close to inlet registers have appropriate thermal comfort, they encounter the highest particle concentration in their breathing zone.
机译:在本研究中,当在房间中存在热源时,使用三维模型在办公室室中模拟具有圆形旋流漫射器的下层空气分布(UFAD)系统。 eulerian-lagrangian模型用于预测空气和颗粒阶段的特征。在拉格朗日粒子模型中,考虑了阻力,升力,布朗和热孔力的影响。结果表明,与圆形直接扩散器相比,圆形旋流漫射器具有更好的气流和热条件。还表明研究的UFAD系统提供了良好的热舒适条件。发现所有颗粒尺寸的局部和平均常规颗粒浓度在房间的不同高度中的局部颗粒浓度为55至65%。结果还表明,由于其大重量而导致的大颗粒保持在房间的较低高度并沉积在地板上。还研究了Manikins的呼吸区中的颗粒浓度,并且它表明,虽然坐在入口寄存器接近入口寄存器的Manikins具有适当的热舒适性,但它们遇到呼吸区中的最高颗粒浓度。

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