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Experimental Research on Using Form-stable PCM-Integrated Cementitious Composite for Reducing Overheating in Buildings

机译:利用形状稳定的PCM集成水泥基复合材料减少建筑物过热的实验研究

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This paper investigates the potential of using form-stable phase change material (FS-PCM) integrated cement mortars in building envelopes to prevent overheating and to improve summer thermal comfort. The FS-PCM integrated cement mortar was applied as the interior surface plastering mortar of a full-scale test hut and compared with identical test huts built on cement plasterboard (OCB) and gypsum plasterboard (GPB). The test huts were exposed to outdoor climatic conditions, and indoor thermal behaviours were continuously monitored throughout the summer period. The effects of PCM in reducing the overheating was analysed by the intensity of thermal discomfort ( ITD over ) and frequency of thermal discomfort ( FTD over ) for overheating during the summer days. The comparison between different test huts showed that the application of PCM integrated cement mortars reduced the peak indoor temperature by up to 2.4 °C, compared to GPB and OCB test rooms. More importantly, the analysis of overheating effects revealed that at lower intensive thermal discomfort levels, FS-PCM largely reduces FTD over . As the intensity of thermal discomfort increases, the reduction in ITD over becomes dominant. At highly intensive thermal discomfort levels, the reduction was neither apparent in the intensity of thermal discomfort nor the period of discomfort.
机译:本文研究了在建筑物围护结构中使用形状稳定的相变材料(FS-PCM)集成水泥砂浆的潜力,以防止过热并改善夏季的热舒适性。 FS-PCM集成水泥砂浆被用作全面测试小屋的内表面抹灰砂浆,并与水泥石膏板(OCB)和石膏石膏板(GPB)上建造的相同测试小屋进行了比较。测试小屋暴露在室外气候条件下,并且在整个夏季持续监测室内热行为。通过夏季夏季热不适的强度(ITD超过)和热不适的频率(FTD超过)来分析PCM在减少过热中的作用。不同测试小屋之间的比较表明,与GPB和OCB测试室相比,PCM集成水泥砂浆的使用将室内峰值温度降低了2.4°C。更重要的是,对过热影响的分析表明,在较低的强烈热不适水平下,FS-PCM大大降低了FTD。随着热不适强度的增加,ITD的降低将占主导地位。在高度强烈的热不适水平下,热不适的强度和不适持续时间均未见明显减少。

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