利用混合散热系统提高太阳能空调的性能

A. Iqbal, Ali Al-Alili
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引用次数: 0

摘要

空调系统的性能高度依赖于高压侧的环境条件,在高压侧,热量被排除到环境中。空调系统采用干式冷却系统,在冷却高峰期往往不能提供足够的冷却,或湿式冷却系统,消耗大量的水。在这项研究中,TRNSYS模拟了一种新型的混合冷却系统,该系统可以提供湿式和干式冷却,并用于封闭吸附式空调系统的冷却。这些系统的性能与混合冷却系统的性能进行了比较,一个标准的蒸汽压缩冷却系统是由一个干冷却系统冷却。在夏季,蒸汽压缩冷却系统的COPsol下降了近26%,而吸附系统的COPsol增加了约30%。同样,蒸汽压缩冷却系统的冷却能力下降了近5%,而对于吸附系统,它在夏季增加了约20%。
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Performance Enhancement of Solar Air Conditioners Using Hybrid Heat Rejection System
The performance of air conditioning systems is highly dependent on the environmental conditions of the high pressure side, where heat is rejected to the environment. Air conditioning systems utilize dry cooling systems which often don’t provide adequate cooling during peak cooling periods, or wet cooling systems which consume a lot of water. In this study, a novel hybrid cooling system that can provide both wet and dry cooling was modelled in TRNSYS, and used to provide cooling to closed sorption air conditioning systems. The performance of these systems with the hybrid cooling system was compared to the performance of a standard vapor compression cooling system being cooled by a dry cooling system. The COPsol of the vapor compression cooling system exhibited a decrease of almost 26% during the summer period, whereas the COPsol of the sorption systems increased by around 30%. Similarly, the cooling capacity of the vapor compression cooling system dropped by almost 5%, and for the sorption systems, it increased by around 20% during the summer period.
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