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Performance Analysis of PCM Ceiling Coupling with Earth-Air Heat Exchanger for Building Cooling

机译:与地球 - 空气换热器耦合建筑冷却PCM天花板耦合性能分析

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摘要

In recent years, the systematic application of phase change materials (PCM) is continuously developing. In this paper, an innovative PCM ceiling coupled with earth-air heat exchanger (EAHE) cooling system was proposed for building cooling. The system aimed to combine the cooling capacity of soil and the energy storage capacity of PCM, thus improving the indoor thermal environment. Performance of the system was tested by experimental method while data analysis focused on the indoor side. To research the effect of cold storage time on the performance of the system, two different operation strategies were adopted for comparison: 8-h cold storage strategy and 12-h cold storage strategy. Moreover, a control group was set up to observe the performance of the system on indoor temperature under the same weather conditions. The result showed that the experimental room in which we installed this system could reduce peak temperature by 2.1 °C under 8-h timed cold storage strategy and 2.7 °C under 12-h timed cold storage strategy. What is more, under the two operation strategies, temperature and heat flux of the PCM ceiling had similar distribution characteristics. Different strategies mainly affected the sustainability of the system and phase transition efficiency of the PCM ceiling.
机译:近年来,系统改变材料(PCM)的系统应用是不断发展的。本文提出了一种与地球 - 空气热交换器(EAHE)冷却系统相结合的创新PCM天花板,用于建造冷却。该系统旨在将土壤的冷却能力与PCM的能量储存能力结合起来,从而改善室内热环境。通过实验方法测试系统的性能,而数据分析集中在室内侧。为了研究冷库时间对系统性能的影响,采用了两种不同的操作策略进行比较:8-H冷储存策略和12-H冷藏策略。此外,建立了一种对照组,观察系统在相同天气条件下的室内温度对室内温度的性能。结果表明,我们安装该系统的实验室可以在8-H定时冷藏策略下将峰值温度降低2.1°C,12-H定时冷藏策略下2.7°C。更重要的是,在PCM天花板的两种操作策略,温度和热通量具有相似的分布特性。不同的策略主要影响了PCM天花板系统的可持续性和相位过渡效率。

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