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Quantifying thermal bridge effects and assessing retrofit solutions in a Greek residential building

机译:量化热桥效应并评估希腊住宅建筑的改造解决方案

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摘要

Material and component performances are blunt instruments for appraising the thermal performance of structures. A certain amount of consumed energy is attributable to the interaction of building fabric components, where thermal bridges occur. This paper analyses the thermal bridging effect and provides a number of modelled, cost-effective retrofit approaches in Greek single family houses, in order to address thermal bridges and improve the building's energy performance. The impact of thermal bridging on the overall annual heating load was estimated at 13%. The investigated retrofit solutions achieved a decrease of the annual heating energy requirement of 4-10%. The sunspace achieved the highest energy reduction of 10%, offering ‘free’ solar heating at a reasonable payback period.
机译:材料和组件的性能是评估结构热性能的钝器。一定数量的能耗归因于发生热桥的建筑织物部件之间的相互作用。本文分析了热桥效应,并为希腊单户住宅提供了许多模型化,经济高效的改造方法,以解决热桥问题并改善建筑物的能源性能。热桥接对年度总热负荷的影响估计为13%。研究的改造解决方案使年度供暖能源需求降低了4-10%。太阳空间实现了10%的最高节能,在合理的投资回收期内提供了“免费”的太阳能供暖。

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