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Design of Divided Condensers for Desiccant Wheel-Assisted Separate Sensible and Latent Cooling AC Systems

机译:干燥剂轮辅助分离式显冷空调系统的冷凝器设计

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A desiccant wheel-assisted separate sensible and latent cooling air-conditioning system improves the energy efficiency of conventional air-conditioning systems by increasing the evaporating temperature of the refrigerant for sensible cooling. With the addition of a desiccant wheel into the air-conditioning system, the system integration requires a further study to ensure that the desiccant wheel receives sufficient hot air for its regeneration while maximizing the entire air-conditioning system's coefficient of performance. This paper discusses the application of divided condensers which are specifically designed for such systems in order to meet the goals. In-house developed heat exchanger design software was used to evaluate different layouts of divided condensers. The different layouts were compared to each other in terms of outlet air temperature profile. A parametric study was also conducted to explore the possible design with less material cost than a baseline condenser. Finally, the performance of the desiccant wheel-assisted separate sensible and latent cooling air-conditioning systems with various efficiency-enhancing options were simulated under the summer test condition according to the AHRI standard 210/240 for performance rating of unitary air-conditioning and air-source heat pump equipment to investigate its energy saving potential.
机译:干燥剂车轮辅助的显热和潜热分离式空调系统通过提高制冷剂的显热温度来提高传统空调系统的能效。在空调系统中增加了干燥剂轮之后,系统集成需要进一步研究,以确保干燥剂轮获得足够的热空气以进行再生,同时最大化整个空调系统的性能系数。本文讨论了专为此类系统设计的,满足目标的分凝器的应用。内部开发的热交换器设计软件用于评估分隔式冷凝器的不同布局。就出口空气温度曲线而言,将不同的布局进行了相互比较。还进行了参数研究,以探索与基准冷凝器相比材料成本更低的可能设计。最后,根据AHRI标准210/240,在夏季测试条件下,模拟了具有各种效率提升选项的除湿轮辅助分离式显热和潜冷空调系统的性能,以评估整体空调和空气的性能。源热泵设备,以研究其节能潜力。

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