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Thermal Behavior and Measures to Prevent Condensation of a Newly Developed External Wall Panel

机译:新开发的外墙面板的热行为和防止冷凝的措施

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An external wall panel (EWP) as a novel alternative to provide spatial flexibility and improve the performance of external walls was developed. The purpose of this study was to analyze the thermal performance of this EWP. A simulation analysis was carried out to scrutinize whether it was vulnerable to condensation, considering South Korea’s weather conditions, and find countermeasures to prevent this. Results indicated that the indoor surface temperature with the measures of added insulation materials and an inserted thermal-breaker was over 16.5 °C and that these methods could prevent condensation. In addition, this study assessed unsteady-state thermal characteristics, linear thermal transmittance, and the effective thermal transmittance of EWP. Effective thermal transmittance was estimated in consideration of the heat transmittance of EWP and the linear thermal transmittance of its slabs and its connection parts. The thermal characteristics of the building envelope are needed to analyze effective thermal transmittance and linear thermal transmittance-associated thermal bridges.
机译:开发了一种外墙板(EWP)作为提供空间灵活性和改善外墙性能的新颖替代方案。本研究的目的是分析该EWP的热性能。考虑到韩国的天气状况,进行了模拟分析,以检查它是否容易凝结,并找到防止这种情况的对策。结果表明,采用添加保温材料和插入热断路器的措施,室内表面温度超过16.5°C,这些方法可以防止冷凝。此外,本研究评估了EWP的非稳态热特性,线性热传递率和有效热传递率。考虑到EWP的热传递率以及其平板和连接部件的线性热传递率,估算了有效的热传递率。需要使用建筑物围护结构的热特性来分析有效的热传输率和与线性热传输率相关的热桥。

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