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A novel low-carbon space conditioning system incorporating phase-change materials and earth–air heat exchangers

机译:一种新型的低碳空间调节系统,结合了相变材料和地球空气热交换器

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The energy expended for conditioning buildings around the world is worryingly large and increasing every year. Currently, almost half of houses around the world use some type of energy-expensive conventional air-conditioning system. These systems are high emitters of gases such as carbon dioxide and so high contributors to climate change. Consequently, alternatives must be considered. Earth–air heat exchangers (EAHEs) and phase-change materials (PCMs) may be options; they have, however, limitations. This paper proposes a novel hybrid space-conditioning system combining EAHEs with PCMs, which uses surfaces as sources of heating or cooling to provide better temperature distribution across a space and comfort enhancement with low energy use. The idea is to use an EAHE to provide cool air to discharge the PCM, consequently helping to overcome most of the limitations of both strategies. Two of a series of experiments undertaken to test the proposed system are reported in this article. The EAHE + PCM system compared with a reference room could decrease temperature swings by up to 47%. The system was proved to work although further work is required to make it commercially viable.
机译:令人担忧的是,用于调节世界各地建筑物的能源每年都在大量增加。当前,世界上几乎有一半的房屋使用某种类型的能源消耗大的常规空调系统。这些系统是二氧化碳等气体的高排放者,因此是造成气候变化的主要因素。因此,必须考虑替代方案。地空气热交换器(EAHE)和相变材料(PCM)可能是可选的;但是它们有局限性。本文提出了一种将EAHE与PCM相结合的新型混合空间调节系统,该系统利用表面作为加热或冷却的源,从而在整个空间内提供更好的温度分布,并以低能耗的方式增强舒适性。想法是使用EAHE提供冷空气以排出PCM,从而帮助克服这两种策略的大多数局限性。本文报道了为测试所提出的系统而进行的一系列实验中的两个。与参考室相比,EAHE + PCM系统可将温度波动降低多达47%。该系统已被证明可以运行,尽管还需要做进一步的工作才能使其在商业上可行。

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