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Phase Change Material Used for Masonry Joints to Reduce the Thermal Bridge Effect

机译:用于砌体连接的相变材料以减少热桥效应

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摘要

In this paper, a numerical calculation and application analysis of composite phase change material masonry mortar applied to wall parts are performed during the research process. Instead of the conventional “sandwich” phase change material wall, our research group mainly uses phase change materials in the wall parts to build masonry joints to reduce the thermal bridge effect. The influence of masonry joints on the heat transfer of the wall is demonstrated. A quantitative description of the transient heat transfer coefficient is obtained to measure the heat preservation performance of the phase change material wall. Furthermore, the influence of different proportions of phase change materials on the wall heat transfer in different external environments is discussed, supplemented by the influence of the working range and sensitivity on the heat transfer. In summary, the use of phase change materials in the construction of masonry joints is a great innovation for conventional “sandwich” phase change material walls, optimizing the form, the thermal bridge effect and the heat preservation performance of wall parts. The quantitative description of the transient heat transfer coefficient expands the development of wall heat transfer theories. In addition, the conclusions are of great guiding significance for the structure and the phase change material’s blending proportion for the innovative heat preservation phase change material wall.
机译:在研究过程中,对墙体复合相变材料砌筑砂浆进行了数值计算和应用分析。我们的研究小组取代了传统的“夹心式”相变材料墙,主要在壁部分使用相变材料来建造砖石缝,以减少热桥效应。证明了砌筑缝对墙体传热的影响。获得瞬态传热系数的定量描述,以测量相变材料壁的保温性能。此外,还讨论了不同比例的相变材料对不同外部环境中壁传热的影响,并补充了工作范围和灵敏度对传热的影响。总而言之,在传统的“三明治”相变材料墙中使用相变材料是一种巨大的创新,它可以优化壁部件的形状,热桥效应和保温性能。瞬态传热系数的定量描述扩展了壁传热理论的发展。此外,这些结论对于结构和相变材料的配合比对创新的保温相变材料壁具有重要的指导意义。

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