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Energy performance comparison of a 3-fluid and 2-fluid liquid desiccant membrane air-conditioning systems in an office building

机译:办公楼中3液体和2流体液干燥剂膜空调系统的能量性能比较

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In this paper, the cooling and dehumidifying capacities of two liquid desiccant membrane air-conditioning (M-LDAC) systems are investigated and compared when installed in an office building located in a hot-humid climate (Miami, Florida). The building HVAC system consists of a radiant cooling system to cover the sensible load and either a 2-fluid or 3-fluid M-LDAC system to meet the latent load. The systems are simulated over the warmest week of the year using TRNSYS simulation software and modelled using a previously developed analytical model for the 2-fluid M-LDAC system and empirical models for the 3-fluid M-LDAC systems. Sensitivity studies are performed where the systems are evaluated under different latent load conditions due to different occupant densities and infiltration rates. The 2-fluid and 3-fluid M-LDAC systems can meet the latent loads at lower occupant densities and infiltration rates but fail to provide thermal comfort conditions as occupancy and infiltration rates increase. It is concluded that the 3-fluid M-LDAC system uses less energy to meet the latent load than the 2-fluid M-LDAC system. The 2-fluid M-LDAC system consumes 50% more energy than the 3-fluid M-LDAC system to provide thermal comfort to the office building during the weekly simulation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本文中,在安装在热潮气候(佛罗里达州迈阿密)的办公楼中,研究了两个液滴膜空调(M-LDAC)系统的冷却和除湿能力。 HVAC系统的建筑包括辐射冷却系统,以覆盖明智的载荷和2流体或3流体M-LDAC系统以满足潜在负载。使用Trnsys仿真软件在今年的最温暖的一周中模拟系统,并使用先前开发的用于2流体M-LDAC系统的分析模型和3流体M-LDAC系统的经验模型建模。由于不同的乘员密度和渗透速率,在不同潜在的载荷条件下评估系统的敏感性研究。 2流体和3流体M-LDAC系统可以以较低的乘员密度和渗透率满足潜伏的载荷,但不能为占用和渗透率增加提供热舒适条件。得出结论,3流体M-LDAC系统使用更少的能量来满足比2流体M-LDAC系统的潜在负载。 2流体M-LDAC系统的能量比3流体M-LDAC系统更多,在每周模拟期间为办公楼提供热舒适度。 (c)2019 Elsevier Ltd.保留所有权利。

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