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Desiccant Dehumidification with Hydronic Radiant Cooling System for Air-Conditioning Applications in Humid Tropical Climates

机译:用于湿润热带气候中空调应用的循环辐射冷却系统的干燥剂除湿

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This paper discusses the feasibility of a hybrid desiccant dehumidification system combined with chilled ceiling for air-conditioning applications in humid tropical climates. The study presents a design/operation guide of the hybrid system. The study also indicates definite merit of the hybrid system when the ventilation air requirement of the conventional system is above a certain threshold. This is particularly so in many practical applications, where a high ventilation air requirement is desirable or mandated, such as operating theaters and certain hospital wards. A trial run on the facility indicates the viability of the scheme, particularly the absence of condensation/sweating of chilled panels. In the same context the facility developed to conduct experiments is described. For a space loading of 0.1 kW/m~2 (31.71 Btu/h·ft~2), any ventilation rate above 2% for a conventional system offers opportunity for downsizing chiller capacity of the hybrid system. Based on an indicative energy analysis, the proposed hybrid system becomes more energy efficient than a conventional system when the required ventilation rate is 30% and above.
机译:本文讨论了混合干燥剂除湿系统与冷冻天花板结合在潮湿热带气候中用于空调的可行性。该研究提出了混合系统的设计/操作指南。研究还表明,当常规系统的通风空气需求高于特定阈值时,混合动力系统具有一定的优势。在需要或要求高通风空气的许多实际应用中,例如手术室和某些医院病房,尤其如此。在该设施上进行的试运行表明了该方案的可行性,特别是没有冷却板的冷凝/发汗现象。在相同的背景下,描述了为进行实验而开发的设备。对于0.1 kW / m〜2(31.71 Btu / h·ft〜2)的空间负载,常规系统的任何高于2%的通风率都为减小混合动力系统的冷水机组容量提供了机会。基于指示性能量分析,当所需通风率大于或等于30%时,提出的混合动力系统将比常规系统更节能。

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