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首页> 外文期刊>Energy and Buildings >An approach to integrate energy efficiency upgrade into refurbishment design process, applied in two case-study buildings in Northern European climate
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An approach to integrate energy efficiency upgrade into refurbishment design process, applied in two case-study buildings in Northern European climate

机译:一种将能效升级集成到翻新设计过程中的方法,应用于北欧气候中的两座案例研究建筑

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摘要

Given the low renewal rate of the building stock, refurbishment of the existing residential buildings is the obvious solution to improve the environmental performance of the building sector. Even though awareness has been raised and building construction industry acknowledges the need for integrated solutions, there is lack of specialised knowledge in the early stages of the strategy development. Moreover, the detailed carrying out of the measures has to fit to the individual project. The paper discusses an integrated approach to refurbishment as a way to upgrade the energy efficiency of the residential stock. The approach aims to integrate the energy performance into the design process of the refurbishment strategy. Different refurbishment options are proposed, systematically organised in a "toolbox" and the impact of each option is assessed. Our methodology gives, in the early design stages, an indication on the retrofitted components' efficiency. Based on multi-residential case-study buildings, we applied the proposed design approach, which resulted in improvement up to 90% on heating energy need. The toolbox supports the decision-making process of refurbishment projects by defining the impact of the choices, resulting in strategies that address all the relevant building components and achieve significant improvement in energy efficiency.
机译:鉴于房屋更新率较低,对现有住宅建筑进行翻新是改善建筑部门环境绩效的明显解决方案。尽管已经提高了意识,并且建筑施工行业认识到需要集成解决方案,但是在策略制定的早期阶段仍缺乏专业知识。此外,这些措施的详细执行必须适合各个项目。本文讨论了一种翻新的综合方法,以作为提高住宅库存能源效率的一种方法。该方法旨在将能源性能整合到翻新策略的设计过程中。提出了不同的翻新方案,并在“工具箱”中进行了系统地组织,并对每种方案的影响进行了评估。在设计的早期阶段,我们的方法可以提供有关改装组件效率的指示。基于多住宅案例研究建筑,我们采用了建议的设计方法,从而将供暖能源需求提高了90%。该工具箱通过定义选择的影响来支持翻新项目的决策过程,从而制定出解决所有相关建筑组件并显着提高能效的策略。

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