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Experimental investigation of latent thermal energy storage in high-rise residential buildings in Toronto

机译:多伦多高层住宅楼层潜热能储存的实验研究

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Recent architectural trends in high-rise apartments are characterized by highly transparent facades. Higher window to wall ratios (WW) entail larger thermal exchanges, and consequently longer thermal discomfort periods and increased energy consumptions for space conditioning. This study investigates the potential of passive latent heat storage using Phase Change Materials (PCM) as a retrofit measure in high-rise apartments in Toronto. A novel composite PCM system comprised of two commercial PCM products with different melting temperatures of 21.7 癈 and 25 癈 is proposed. This system is experimentally investigated using small scale test cells exposed to the weather of Toronto from July to October 2016. Five different tests were conducted while different variables were monitored to assess the indoor temperature and heat storage patterns. Results indicate significant extreme temperature reduction and daily temperature fluctuations reduced by 6 癈 using the PCM system investigated in this paper. Moreover, incorporating two melting points in one zone proves to be very effective both in summer and fall months.
机译:高层公寓的最近建筑趋势是由高度透明的外墙为特色。窗口比墙壁比(WW)更高的窗口需要更大的热交换器,因此温度不适,并增加空间调节的能量消耗。本研究调查了使用相变材料(PCM)作为多伦多高层公寓的改造措施的被动潜热储存的潜力。提出了一种新型复合PCM系统,包括两个具有不同熔化温度为21.7‰和25‰的商用PCM产品。通过从7月至2016年7月暴露于多伦多天气的小规模测试单元进行实验研究。进行了五种不同的测试,同时监测不同的变量以评估室内温度和储热图案。结果表明,使用本文研究的PCM系统,显着的极端温度降低和每日温度波动减少6‰。此外,在一个区域中包含两个熔点证明在夏季和秋季的情况下非常有效。

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