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Next-generation HVAC: Prospects for and limitations of desiccant and membrane-based dehumidification and cooling

机译:下一代HVaC:干燥剂和膜基除湿和冷却的前景和局限性

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摘要

Recently, next-generation HVAC technologies have gained attention as potential alternatives to the conventional vapor-compression system (VCS) for dehumidification and cooling. Previous studies have primarily focused on analyzing a specific technology or its application to a particular climate. A comparison of these technologies is necessary to elucidate the reasons and conditions under which one technology might outperform the rest. In this study, we apply a uniform framework based on fundamental thermodynamic principles to assess and compare different HVAC technologies from an energy conversion standpoint. The thermodynamic least work of dehumidification and cooling is formally defined as a thermodynamic benchmark, while VCS performance is chosen as the industry benchmark against which other technologies, namely desiccant-based cooling system (DCS) and membrane-based cooling system (MCS), are compared. The effect of outdoor temperature and humidity on device performance is investigated, and key insights underlying the dehumidification and cooling process are elucidated. In spite of the great potential of DCS and MCS technologies, our results underscore the need for improved system-level design and integration if DCS or MCS are to compete with VCS. Our findings have significant implications for the design and operation of next-generation HVAC technologies and shed light on potential avenues to achieve higher efficiencies in dehumidification and cooling applications.
机译:近来,下一代HVAC技术作为常规除湿和冷却蒸汽压缩系统(VCS)的潜在替代产品而受到关注。先前的研究主要集中在分析特定技术或其在特定气候下的应用。必须对这些技术进行比较,以阐明一种技术可能胜过其他技术的原因和条件。在本研究中,我们基于基本热力学原理应用统一的框架,从能量转换的角度评估和比较不同的HVAC技术。正式将除湿和冷却的热力学最低工作定义为热力学基准,而选择VCS性能作为行业基准,其他技术,即基于干燥剂的冷却系统(DCS)和基于膜的冷却系统(MCS)被用作该基准。比较。研究了室外温度和湿度对设备性能的影响,并阐明了除湿和冷却过程的关键见解。尽管DCS和MCS技术具有巨大的潜力,但我们的结果强调,如果DCS或MCS与VCS竞争,则需要改进系统级设计和集成。我们的发现对下一代HVAC技术的设计和运营具有重大意义,并为在除湿和制冷应用中实现更高效率的潜在途径提供了启示。

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