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Numerical investigation of thermal comfort and transport of expiratory contaminants in a ventilated office with an air curtain system

机译:带有气幕系统的通风办公室中热舒适性和呼气污染物输送的数值研究

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摘要

Air distribution systems generally focus on diluting contaminants and distributing conditioned air. However, this strategy has a potential for spreading particulate matter or bioaerosols. Thus, it is considered to be useful to create a non-uniform indoor environment to prevent such dispersion of particulate matter or bioaerosols, and an air curtain could serve for this purpose. This study investigates the effects of an air curtain system in a ventilated office to prevent the dispersion of expiratory droplets that are generated locally, while also considering thermal comfort. Droplets dispersion was modelled with computational fluid dynamics (CFD) with the Lagrangian method. In the CFD simulations, an air curtain system was installed in the middle of an office with varied factors of design, orientation and jet velocity of the air curtain system. Numerical results showed that unless there was an independent inlet and outlet for each region, the air curtain system alone could not create a non-uniform thermal environment; however, it was effective in removing and preventing dispersion of the expiratory droplets. The droplet removal performance of an air curtain system was not proportional to its jet velocity, but a velocity of 3 m/s was found to be feasible for this office. The air curtain system showed better performance than an air cleaner used to exhaust and filter the expiratory droplets.
机译:空气分配系统通常集中于稀释污染物和分配调节后的空气。但是,这种策略具有散布颗粒物或生物气溶胶的潜力。因此,认为创建不均匀的室内环境以防止微粒物质或生物气溶胶的这种分散是有用的,并且气幕可以用于该目的。这项研究调查了通风办公室中的气幕系统的作用,以防止散发局部产生的呼气飞沫,同时还考虑了热舒适性。使用拉格朗日方法,使用计算流体动力学(CFD)对液滴分散进行建模。在CFD仿真中,在办公室中间安装了一个风幕系统,该系统的设计,方向和射流速度各不相同。数值结果表明,除非每个区域都有独立的入口和出口,否则单独的气幕系统不会创造出不均匀的热环境。然而,它在去除和防止呼气液滴的散布方面是有效的。气幕系统的液滴去除性能与它的喷射速度不成正比,但是发现3 m / s的速度对于该办公室是可行的。与用来排出和过滤呼气小滴的空气滤清器相比,空气幕系统显示出更好的性能。

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