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Experimental Study on Heat Storage and Release Processes of Composite Phase Change Wall under Short Intermittent Heating Conditions

机译:短间歇加热条件下复合相变壁蓄热和释放过程的实验研究

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During intermittent heating, the short intermittent conditions are common in meeting rooms of office buildings and school classrooms. The thermal process of building envelope has coupling effects on the indoor thermal environment in the frequent start-stop of heating equipment. This paper integrated phase change materials (PCMs) with building envelope to improve its thermal performance. Measurements were carried out to study the dynamic thermal process of composite phase change wall (composite-PCW) in case 1 (heating 1h + suspension lh) and case 2 (hating 2h + suspension 2h). Results showed that: 1) the indoor air temperature fluctuations were around 14°C and 18°C respectively for case 1 and case 2 when the indoor thermal processes reached relatively stable. 2) The heat storage of composite-PCW could maintain the inner surface temperature relatively constant, so that the inner surface temperature fluctuations were only 5°C and 6°C respectively for case 1 and case 2.3) The heat storage utilization rates of the last cycles were 5.08% and 14.86% for case 1 and case 2. Thus, the heat transferred into the wall during the heating period was stored inside the wall to improve the indoor thermal environment by rational use to maintain the inner surface temperature during the cooling-down period.
机译:在间歇性加热期间,短暂的间歇性条件在办公楼和学校教室的会议室中很常见。建筑包络的热处理在加热设备的频繁启动时对室内热环境具有耦合效应。本文综合相变材料(PCM),建筑包络,以提高其热性能。进行测量以研究复合相变壁(复合 - PCW)的动态热过程(加热1H +悬浮液LH)和壳体2(铰接2H +悬浮液2H)。结果表明:1)当室内热过程达到相对稳定时,室内空气温度波动分别为14°C和18°C和壳体2。 2)复合PCW的储热可以保持内表面温度相对恒定,使内表面温度波动分别仅为5°C和6°C,案例1和案例2.3)最后的蓄热利用率循环为5.08%和14.86%,案例1和壳体2.因此,在加热周期内传递到壁中的热量被储存在墙壁内,以通过合理用途改善室内热环境,以在冷却期间保持内表面温度。下期。

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