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Active desiccant integration with packaged rooftop HVAC equipment

机译:与干燥的屋顶HVAC设备主动集成干燥剂

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Current research indicates a direct correlation between indoor air quality and fresh air ventilation rates which supports requirements for building ventilation standards calling for continuous supply and increased amounts of ventilation to help assure safe and healthy interior air environments [O. Seppanen, W.J. Fisk, M.J. Mendell, Ventilation rates and health, ASHRAE Journal (August) (2002) 56-58; C.C. Downing, C.W. Bayer, Classroom indoor air quality vs. ventilation rate, ASHRAE Trans., 1993, Vol. 99, Part 2, Paper Number DE-93-19-1, pp. 1099-1103. [1,2]]. Off-the-shelf, packaged rooftop equipment used to air condition most facilities is not designed to handle the increased or continuous supply of outdoor air necessary to comply with building ventilation codes written to this new standard [American Society of Heating, Refrigerating, and Air Conditioning Engineers, Inc. (ASHRAE), Ventilation for acceptable indoor air quality, Standard 62-1989, 1791 Tullie Circle, NE, Atlanta, GA 30329. [3]].Integration of a rooftop, unitary air conditioner with an active desiccant module (ADM) allows the use of a standard rooftop air conditioner with a thermally regenerated active desiccant component to provide a compact, cost-effective, and simple-to-use packaged system for efficiently pre-treating and supplying ventilation air adequate to ensure healthy indoor environments. By designing a combined vapor-compression/active desiccant system with the desiccant component positioned after it conventional cooling coil, the dehumidification effectiveness of the desiccant is significantly enhanced because it operates on cold, saturated, or nearly saturated, air leaving the evaporator. "Post-coil" rather than the normally used, "pre-coil" desiccant arrangement also minimizes the regeneration temperature required for the active desiccant, allows for partial bypass and post-cooling of the desiccated air after recombination, and dramatic decreases in the overall size for the pre-conditioning unit. (c) 2005 Elsevier Ltd. All rights reserved.
机译:当前的研究表明,室内空气质量与新鲜空气通风率之间存在直接关系,可以满足要求持续供应和增加通风量以确保安全健康的室内空气环境的建筑通风标准的要求。 Seppanen,W.J.Fisk,M.J.Mendell,“通风率和健康”,ASHRAE Journal(August)(2002)56-58。抄送Downing,C.W. Bayer,《室内空气质量与通风率的关系》,ASHRAE Trans。,1993年,第1期。 99,第2部分,论文编号DE-93-19-1,第1099-1103页。 [1,2]]。用于大多数设施的用于空调的现成的,包装好的屋顶设备,其设计并不是为了应付增加或持续供应的室外空气,而室外空气的供应必须符合该新标准[美国采暖,制冷和空气协会Conditioning Engineers,Inc.(ASHRAE),通气以获取可接受的室内空气质量,标准62-1989,1791 Tullie Circle,NE,亚特兰大,GA30329。[3]。将屋顶一体式空调与有源干燥剂模块集成在一起(ADM)允许使用带有热再生活性干燥剂成分的标准屋顶空调,以提供紧凑,经济高效且易于使用的包装系统,以有效地进行预处理和供应足以确保室内健康的通风空气环境。通过设计组合的蒸汽压缩/活性干燥剂系统,将干燥剂组分放置在常规冷却盘管之后,该干燥剂的除湿效率会大大提高,因为它对离开蒸发器的冷,饱和或接近饱和空气进行操作。 “后卷材”而不是通常使用的“前卷材”干燥剂布置还使活性干燥剂所需的再生温度降至最低,重组后可对干燥的空气进行部分旁路和后冷却,并且总体上显着降低预处理单元的大小。 (c)2005 Elsevier Ltd.保留所有权利。

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