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Facade Refurbishment Toolbox. Supporting the Design of Residential Energy Upgrades

机译:外墙翻新工具箱。支持住宅能源升级设计

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The starting point of the research is the need to refurbish existing residential building stock, in order to reduce its energy demand, which accounts for over one fourth of the energy consumption in the European Union. Refurbishment is a necessary step to reach the ambitious energy and decarbonisation targets for 2020 and 2050 that require an eventual reduction up to 90% in CO2 emissions. In this context, the rate and depth of refurbishment need to grow. The number of building to be renovated every year should increase, while the energy savings in renovated buildings should be over 60% reduction to current energy demand. To achieve that, not only is it necessary to find politics and incentives, but also to enable the building industry to design and construct effective refurbishment strategies. This research focuses on refurbishment of the building envelope, as it is very influential with regard to energy reduction. The early design phases are particularly important, as decisions taken during this stage can determine the success or failure of the design. Even though the design decisions made earlier can have bigger impact with lower cost and effort, most existing tools focus on post-design evaluation. The integration of all aspects during the early design phases is complex, particularly as far as energy efficient design is concerned. At this stage, architects are in search for a design direction to make an informed decision. If the designer is provided with an indication of how efficient refurbishment options are, it is possible to apply them as part of an integrated strategy rather than trying to add measures at later stages, after the strategy has been developed. Therefore, taking into account the need to refurbish residential buildings and the importance of integrated design of fa?ade refurbishment strategies, the thesis aims at answering the following question. How can the energy upgrade potential of residential fa?ade refurbishment strategies be integrated in the early design phase, in order to support decision-making? The objective of the research is to enable the design of refurbishment strategies that acknowledge the potential of energy savings. Having available an assessment of the energy performance results in informed decisions that improve the efficiency of the strategy and the final refurbished building. The answer to the research question is given by the Fa?ade Refurbishment Toolbox (FRT) approach. It consists of three different types of information that can support the decision-making of residential fa?ade refurbishment strategies. Firstly, the building envelope components that need to be addressed in an integrated refurbishment strategy are identified and different retrofitting measures for each one are proposed, composing the fa?ade refurbishment toolbox. Secondly, the measures are quantified in terms of energy upgrade potential, expressed by the simulated energy demand reduction after the application of the measure. Finally, a roadmap to the key decision aspects in the refurbishment strategy development indicates when the toolbox information can be used. The methodology used to develop the FRT approach includes organising and calculating information about component retrofitting measures. The steps of the methodology were developed in the different chapters of the thesis. The first three chapters (Chapters 2-4) comprise the theoretical background that shapes the research question, discussion of the residential building stock, energy performance and refurbishment practice. Chapters 5 and 6 describe the process of the composition of the toolbox. Finally, Chapters 7 and 8 are concerned with its further applicability, regarding the approach validation and usability. This thesis concludes with an approach to enable informed and energy-efficiency conscious decisions in the early stage of the design of refurbishment strategies. To improve the design process, the Fa?ade Refurbishment Toolbox facilitates the development of strategies in different cases and for different specifications, without limiting or dictating designers’ choices. Designing is deciding. Knowledge and information can lead to better understanding of a decision consequent and, therefore, result in better design solutions. Different buildings have different energy saving potential. They also have different specifications, performance requirements and design ambitions. All these parameters result in different refurbishment strategies. The aim of the proposed approach is not replacing the design process and generating a solution, but supporting it by providing information to lead into responsible and knowledgeable decisions. In this way, refurbishment strategies that take into account the building improvement, occupants’ comfort and efficient energy use can be designed, contributing to the greater society’s goals of CO2 emissions reduction and sustainable development.
机译:研究的出发点是需要翻新现有的住宅建筑存量,以减少其能源需求,该能源需求占欧盟能源消耗的四分之一以上。翻新是实现雄心勃勃的2020年和2050年能源和脱碳目标的必要步骤,该目标要求最终将二氧化碳排放量减少90%。在这种情况下,翻新的速度和深度需要增加。每年要翻新的建筑物数量应增加,而翻新建筑物的节能量应比当前能源需求减少60%以上。为此,不仅需要寻找政治和激励措施,而且还必须使建筑业能够设计和构建有效的翻新策略。这项研究的重点是建筑围护结构的翻新,因为它在节能方面非常有影响。早期的设计阶段特别重要,因为在此阶段做出的决定可以确定设计的成败。尽管较早做出的设计决策可以以较低的成本和精力产生更大的影响,但大多数现有工具都集中在设计后评估上。在早期设计阶段,所有方面的集成都很复杂,尤其是在节能设计方面。在此阶段,架构师正在寻找设计方向以做出明智的决定。如果向设计者提供了翻新选项的有效程度的指示,则可以将其作为集成策略的一部分应用,而不必在策略制定后尝试在以后的阶段中添加措施。因此,考虑到翻新住宅的需要和立面翻新策略的集成设计的重要性,本文旨在回答以下问题。在早期设计阶段如何整合住宅立面翻新策略的能源升级潜力,以支持决策?该研究的目的是使翻新策略的设计能够认识到节能的潜力。对能源绩效进行评估可以得出明智的决定,从而提高策略和最终翻新建筑物的效率。 Fafaade翻新工具箱(FRT)方法给出了研究问题的答案。它由三种不同类型的信息组成,这些信息可以支持住宅立面翻新策略的决策。首先,确定了需要在综合翻新策略中解决的建筑围护结构组件,并针对每个建筑围护结构提出了不同的翻新措施,组成了立面翻新工具箱。其次,根据能源升级潜力对这些措施进行量化,并通过应用该措施后模拟的能源需求减少来表示。最后,翻新策略开发中关键决策方面的路线图指明了何时可以使用工具箱信息。用于开发FRT方法的方法包括组织和计算有关组件改装措施的信息。该方法的步骤在论文的不同章节中进行了阐述。前三章(第2-4章)包括形成研究问题的理论背景,对住宅建筑存量,能源性能和整修实践的讨论。第5章和第6章介绍了工具箱的组成过程。最后,第7章和第8章关注其在方法验证和可用性方面的进一步适用性。本文最后提出了一种在翻新策略设计的早期阶段就能够进行明智且节能的决策的方法。为了改善设计过程,Faade翻新工具箱可促进在不同情况下针对不同规格制定策略,而不会限制或限制设计师的选择。设计是决定性的。知识和信息可以导致对决策的更好理解,因此可以提供更好的设计解决方案。不同的建筑物具有不同的节能潜力。它们还具有不同的规格,性能要求和设计抱负。所有这些参数导致不同的翻新策略。提出的方法的目的不是取代设计过程并生成解决方案,而是通过提供信息以引导他们做出负责任的和明智的决策来支持它。这样,可以设计出考虑建筑物改进,居住者的舒适感和高效能源使用的翻新策略,从而为更大的社会实现二氧化碳减排和可持续发展的目标做出了贡献。

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