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Thermal performance and optimized thickness of active shape-stabilized PCM boards for side-wall cooling and under-floor heating system

机译:用于侧壁冷却和地板采暖系统的有源形状稳定PCM板的热性能和优化厚度

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摘要

Phase change materials (PCMs) have the potential to maintain thermal comfort of occupants while reducing the energy consumption due to their high energy storage capacity. In this paper, thermal performance of active heat conduction-enhanced shape-stabilized phase change material (HCE-SSPCM) encapsulated boards, fitted with active hot/chilled water pipes were investigated for side-wall cooling and for incorporation in an under-floor heating system. Numerical model based on finite difference method was developed to study the effect of HCE-SSPCM on annual heating/cooling energy consumption saving and indoor air relative temperature fluctuation rate reduction. Our study shows that there exists an optimal location for HCE-SSPCM according to thermal resistance value of each layer and ambient conditions. The recommended thickness and thermal conductivity of HCE-SSPCM wallboard were 30-60mm and 1-1.5Wm(-1)K(-1). Compared to the room without HCE-SSPCM boards, the maximum annual heating energy consumption saving would be 16.2%. Indoor air relative temperature fluctuation rate for heating would be reduced by 41.3%. The maximum annual cooling energy consumption saving would be 4.53%. Indoor air relative temperature fluctuation rate for cooling would be reduced by 56.2%. Our research provided scientific evidences for application of PCMs to reduce energy consumption in residential buildings without sacrificing indoor thermal comfort.
机译:相变材料(PCM)的潜力是保持乘员的热舒适感,同时由于其高的储能能力而降低了能耗。本文研究了装有主动热/冷水管的主动导热增强形状稳定相变材料(HCE-SSPCM)封装板的热性能,以进行侧壁冷却并结合到地板采暖中系统。建立了基于有限差分法的数值模型,研究了HCE-SSPCM对年度供暖,制冷能耗的节省和室内空气相对温度波动率的降低的影响。我们的研究表明,根据每层的热阻值和环境条件,存在HCE-SSPCM的最佳位置。 HCE-SSPCM墙板的建议厚度和导热系数为30-60mm和1-1.5Wm(-1)K(-1)。与没有HCE-SSPCM板的房间相比,每年最多可节省16.2%的采暖能耗。室内空气加热的相对温度波动率将降低41.3%。每年最多可以节省4.53%的制冷能耗。用于冷却的室内空气相对温度波动率将降低56.2%。我们的研究为在不牺牲室内热舒适性的前提下应用PCM降低住宅建筑能耗提供了科学依据。

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