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Thermal bridges in vacuum insulation panels at building scale

机译:建筑规模的真空隔热板中的热桥

摘要

In this paper a numerical analysis aimed at evaluating the thermal performance of vacuum insulation panels (VIPs) at the building scale is presented. This technology has seen considerable development over the past few years, gaining increasing penetration in the building insulation market. However, it is important to evaluate correctly the thermal bridging effect that occurs when the VIPs are coupled with joints at the building scale. To this purpose, the linear thermal transmittances of different VIP assemblies inserted in several wall configurations were assessed through a bidimensional numerical analysis. Moreover, to evaluate the influence of thermal bridges on the building energy need, quasi-steady-state simulations for a parametric building module were performed. A simple empirical model was finally built to estimate the linear thermal transmittance from basic input variables. The study demonstrates that thermal bridging effects that occur when VIPs are jointed are never negligible and they could have an important impact on the building heating energy need.
机译:本文提出了旨在评估建筑规模的真空隔热板(VIP)的热性能的数值分析。在过去的几年中,这项技术取得了长足的发展,并在建筑保温材料市场中获得了越来越多的渗透。但是,重要的是要正确评估在建筑规模上VIP与接头连接时发生的热桥效应。为此,通过二维数值分析评估了插入几种壁构造的不同VIP组件的线性热透射率。此外,为了评估热桥对建筑能源需求的影响,对参数化建筑模块进行了准稳态仿真。最终建立了一个简单的经验模型,以根据基本输入变量估算线性热透射率。研究表明,连接VIP时发生的热桥效应永远不可忽略,它们可能对建筑物的热能需求产生重要影响。

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