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Enhancement options for separate sensible and latent cooling air-conditioning systems

机译:单独的显热和潜冷空调系统的增强选项

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摘要

The performance of desiccant wheel (DW)-assisted separate sensible and latent cooling (SSLC) air-conditioning systems has been greatly improved by the application of divided heat exchangers, resulting in 7% and 46% increases in COP for R410A and CO_2 systems, respectively. The paper simulated new performance-enhancing options that include evaporative cooling, a sensible wheel (SW) and an enthalpy wheel (EW) to the SSLC systems. The application of evaporative cooling to the SSLC system further improves the system COP by 7% and 14% respectively. By applying an EW to the SSLC systems, the COP is improved by 39% and 40% respectively. The DW-assisted SSLC technology also can be adopted for the dedicated outdoor system (DOS). It is concluded that only the EW is effective for enhancing the DW-assisted SSLC DOS systems because it lowers not only the cooling requirement of the vapor compression cycle, but also the heat requirement for DW regeneration.
机译:分离式热交换器的应用大大改善了干燥剂轮(DW)辅助的显热和潜冷(SSLC)空调系统的性能,R410A和CO_2系统的COP分别提高了7%和46%,分别。本文模拟了SSLC系统的新性能增强选项,包括蒸发冷却,灵敏轮(SW)和焓轮(EW)。蒸发冷却应用于SSLC系统可进一步将系统COP分别提高7%和14%。通过将EW用于SSLC系统,COP分别提高了39%和40%。专用室外系统(DOS)也可以采用DW辅助的SSLC技术。结论是,只有EW才能有效地增强DW辅助的SSLC DOS系统,因为它不仅降低了蒸气压缩循环的冷却要求,而且降低了DW再生的热量要求。

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