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Identification of cost-optimal and NZEB refurbishment levels for representative climates and building typologies across Europe

机译:确定整个欧洲具有代表性的气候和建筑类型的最佳成本和NZEB翻新水平

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摘要

The energy consumptions of the building stock are playing a central role in the energy policy of the European Union. While the Member States are applying the Directives in force, the European Commission is working to update the regulatory framework. Specifically, it is necessary to achieve the great unrealized potential for energy savings in existing buildings. With this aim, the nearly zero-energy building (NZEB) target was introduced, and a comparative methodology framework to calculate cost-optimal levels of minimum energy performance requirements was proposed. This study focuses on the issue of building renovation, and it presents the results obtained with the application of a cost-optimal calculation method for identifying proper retrofit measures to reach cost-optimal levels and NZEB levels. The assessment takes into account an exhaustive set of passive and active renovation options and it was extended to various building types of 60s-70s (residential and non-residential) in a wide range of representative European climatic conditions. A very relevant energy-saving potential was found for all cost-optimal benchmarks, and in many cases, the obtained NZEB refurbishments have resulted interesting also from an economic point of view.
机译:建筑材料的能耗在欧盟的能源政策中起着核心作用。在成员国实施有效指令的同时,欧洲委员会正在努力更新监管框架。具体而言,有必要在现有建筑物中实现巨大的节能潜力。为此,引入了接近零能耗的建筑目标,并提出了一种比较方法框架,以计算最低能耗要求的成本最优水平。这项研究的重点是建筑物的装修问题,并介绍了使用成本最优计算方法获得的结果,该方法可用于确定适当的改造措施,以达到成本最优水平和NZEB水平。该评估考虑了一套详尽的被动和主动翻新方案,并且在广泛的具有代表性的欧洲气候条件下,扩展到了60至70年代(住宅和非住宅)的各种建筑类型。对于所有成本最佳基准,都发现了非常相关的节能潜力,并且在许多情况下,从经济角度来看,所获得的NZEB翻新工程也引起了人们的兴趣。

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