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Performance demonstration and evaluation of the synergetic application of vanadium dioxide glazing and phase change material in passive buildings

机译:二氧化钒玻璃和相变材料在被动建筑中协同应用的性能演示和评估

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摘要

One of the key methods to improve the energy saving performance of a building is to apply advanced materials or components to the building envelope. However, the two parts of a building's envelope, the transparent one and the non-transparent one, are usually investigated individually by existing literature. In this study, vanadium dioxide (VO_2) glazing, an advanced energy-efficient element applied to the transparent parts of the building envelope, and phase change material (PCM), a typical thermal storage material used to improve the non-transparent parts of the building envelope, were adopted simultaneously for the first time. The synergetic performance of VO_2 glazing and PCM, demonstrated in a full-scale, lightweight, passive room, resulted in a significant improvement in the thermal comfort degree. The Energy Saving Index (ESI) is a simple and effective indicator that can be used to evaluate the passive application performance of a single energy-efficient material or component on a common standpoint. In this work, the index was broadened to evaluate the performance of more than one material, showing that ESI is feasible and favorable to analyze the coefficient application of several building materials and/or components. Using the ESI, the performance of the synergetic application was also compared with those of the sole materials, indicating that the synergetic application has a better performance during the cooling period. Furthermore the synergetic application involves an interplay rather than a simple combination of the energy-efficient materials. The application to a heavyweight building is further discussed on the basis of performance simulations, including an economic estimation and application during the heating period.
机译:改善建筑物节能性能的关键方法之一是将先进的材料或组件应用于建筑物围护结构。但是,建筑物围护结构的两个部分,透明的和不透明的,通常由现有文献单独研究。在这项研究中,将二氧化钒(VO_2)玻璃(一种应用于建筑物外墙透明部分的先进节能元件)和相变材料(PCM)(一种用于改善建筑的非透明部分的典型蓄热材料)建筑围护结构,是首次同时采用。 VO_2玻璃和PCM的协同性能在完整,轻巧的被动房中得到了证明,从而大大提高了热舒适度。节能指数(ESI)是一种简单有效的指标,可用于从共同的角度评估单一节能材料或组件的被动应用性能。在这项工作中,该指数被扩大以评估一种以上材料的性能,表明ESI是可行的并且有利于分析多种建筑材料和/或组件的系数应用。使用ESI,还将协同应用的性能与唯一材料的性能进行了比较,表明协同应用在冷却期间具有更好的性能。此外,协同应用涉及相互作用,而不是节能材料的简单组合。在性能模拟的基础上进一步讨论了在重型建筑中的应用,包括经济估算和供暖期间的应用。

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