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Research on composite-phase change materials (PCMs)-bricks in the west wall of room-scale cubicle: Mid-season and summer day cases

机译:房间小隔间西壁复合相变材料(PCMs)砖的研究:季节中期和夏季情况

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This paper aims to evaluate the effect of applying PCMs into building walls for the improvement of thermal performance in mid-season and summer days. A kind of shape-stabilized PCMs is incorporated into cement mortar to make the PCMs-bricks. Phase change temperature range and latent heat is 15.80 -22.28 degrees C and 61.44 kJ/kg, respectively: Experimental test of the wall is conducted in room-scale cubicle (3.25 m*3.86 m*2.91 m) in mid-season and summer days for a long time, and comparisons are made with a regular energy-saving wall. Results show that the composite-PCMs wall is in the core phase change temperature range from March 29 to April 30, during which fluctuation and maximum value of the interior wall surface temperature are obviously reduced. However, an insufficiency of liquid to solid phase transition has been observed in the days approaching April 30. Moreover, situations become serious after April 30 since the PCMs do not experience phase change any more. The above parameters become greater for the composite-PCMs wall, so does the interior wall surface heat flow. Maximum values of the interior wall surface temperature and heat flow are both higher for the composite-PCMs wall under either free-floating or air-conditioning cases in summer; an increase of about 43.23% of the heat transferred into the room is observed for a representative sunny day. Discussions about the optimization of the composite-PCMs wall are also conducted. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文旨在评估将PCM应用于建筑物墙壁以改善夏季和夏季的热力性能的效果。将一种形状稳定的PCM掺入水泥砂浆中以制​​成PCM砖。相变温度范围和潜热分别为15.80 -22.28摄氏度和61.44 kJ / kg:在夏季和夏季,在房间小隔间(3.25 m * 3.86 m * 2.91 m)中进行壁的实验测试长期以来,与常规节能墙进行了比较。结果表明,复合材料PCM壁在3月29日至4月30日处于核心相变温度范围内,在此期间内壁表面温度的波动和最大值明显减小。然而,在接近4月30日的日子里,已经观察到从液相到固相的不足。此外,由于PCM不再经历相变,因此情况在4月30日之后变得更加严重。对于复合PCM壁,上述参数变得更大,内壁表面的热流也变得更大。夏季自由浮动或空调情况下,复合PCM壁的内壁表面温度和热流的最大值均较高。在一个有代表性的晴天,观察到传递到房间的热量增加了约43.23%。还对复合PCM壁的优化进行了讨论。 (C)2017 Elsevier Ltd.保留所有权利。

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