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Internal Contaminant Source Dilution and Filtration in Dedicated Outdoor Air Systems

机译:专用户外空气系统中内部污染物源稀释和过滤

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Heating, ventilation and air-conditioning (HVAC) systems account for more the 50% of energy use in residential buildings [1] and approximately three-quarter in healthcare environments [2]. Hence, HVAC systems are a favorable sector for sustainability with a great potential of energy savings. The engineering approach to this issue has led to the advent of newer and more sustainable technologies. Dedicated outdoor air systems (DOAS) are a case in point. By decoupling the sensible and latent loads, an enormous saving can be achieved in the amount of air to be conditioned. Ventilation systems are designed to satisfy three predominant requirements: (1) to deliver fresh air to occupants and dilute the indoor generated contaminants, (2) to control the temperature and humidity in indoor spaces, and (3) to pressurize the space. There is ample evidence that the DOAS facilitates the last two requirements with more quality and less cost, which makes it more sustainable. This work, however, focused on the effect of using this system on the first requirement, particularly with regard to the indoor generated contaminants. The results showed that compared to the traditional ventilation systems, the DOAS system less effectively treats the indoor generated contaminants. Therefore, other mechanisms such as filtration must be properly implemented to limit the contaminants level below their standard threshold.
机译:加热,通风和空调(HVAC)系统占居民建筑中的50%的能源使用[1]和大约三季度在医疗保健环境中[2]。因此,HVAC系统是可持续性的有利部门,具有巨大的节能潜力。这个问题的工程方法导致了更新和更可持续的技术的出现。专用户外空气系统(DOA)是一个案例。通过去耦性和潜在的载荷,可以在要调节的空气中实现巨大的节省。通风系统旨在满足三种主要要求:(1)将新鲜空气输送到乘员,并稀释室内产生的污染物,(2)以控制室内空间的温度和湿度,并(3)加压空间。有充分的证据表明,DoAS促进了最后两个要求,更具质量和更少的成本,使其成为可持续的。然而,这项工作的重点是使用该系统对第一个要求的影响,特别是关于室内产生的污染物。结果表明,与传统通风系统相比,DOAS系统的较少有效地治疗室内产生的污染物。因此,必须适当地实施其他机制,例如过滤,以将污染物水平限制在其标准阈值以下。

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