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Application of thermal battery in the ice storage air-conditioning system as a subcooler

机译:热电池在蓄冰空调系统中作为过冷器的应用

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This article experimentally investigates the thermal performance of a thermal battery used in the ice storage air-conditioning system as a subcooler. The thermal battery utilizes the superior heat transfer characteristics of two-phase closed thermosyphon and eliminates the drawbacks found in convectional energy storage systems. Experimental investigations are first conducted to study the thermal behavior of thermal battery under different charge temperatures (- 5℃ to - 9℃) in which water is used as the energy storage material. This study also examines the thermal performance of the subcooled ice storage air conditioner under different cooling loads. Experimental data of temperature variation of water, ice fraction, refrigerant mass flow rate and coefficient of performance (COP) are obtained. The results show that supercooling phenomenon appears in the water and it can be ended when the charge temperature is lower than - 6℃. The system gives 28% more cooling capacity and 8% higher COP by the contribution of the thermal battery used as a subcooler.
机译:本文通过实验研究了蓄冰空调系统中用作过冷器的热电池的热性能。该热电池利用了两相封闭式热虹吸管的卓越传热特性,并消除了对流储能系统中的缺点。首先进行实验研究以研究在以水为储能材料的不同充电温度(-5℃至-9℃)下热电池的热行为。这项研究还研究了不同冷却负荷下过冷冰蓄冷空调的热性能。获得了水,冰含量,制冷剂质量流量和性能系数(COP)的温度变化的实验数据。结果表明,过冷现象出现在水中,当进料温度低于-6℃时可以结束。通过将热电池用作过冷器,该系统可将冷却能力提高28%,将COP提高8%。

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