How far can low emission retrofit of terraced housing in Northern Ireland go?

Ben James, J. Mondol, Trevor Hyde, Aoife Houlihan Wiberg
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Abstract

With both global and national targets to reduce GHG emissions the improvement of existing buildings will be key to realising these ambitions. How this can be achieved, and the impact of whole-life emissions from retrofit remains a key question. This paper investigates the potential of retrofit to reduce and limit lifecycle Greenhouse Gas (GHG) emissions resulting from an existing house, typical of one of the predominant housing typologies in Northern Ireland. Through the use of lifecycle assessment (LCA) a range of retrofit scenarios are considered for an early 20th century, solid wall, terraced house, to understand the impacts of retrofit on lifecycle emissions. A range of retrofit scenarios were modelled and simulated, considering both embodied and operational emissions over the building’s lifetime, to understand how net emissions can be reduced. The results show that although fabric and some technological measures can reduce emissions by over 60% when applied in isolation, a holistic approach is required to achieve the greatest reductions. Although operation remains the largest single source of emissions, the results also show the importance of taking a holistic approach to the assessment of retrofit with varying lifecycle stages responsible for considerable emissions. It is seen that emissions reductions of up to 99% may be possible when taking a holistic approach to retrofit and its assessment, considering whole-life emissions. This study highlights the potential benefits of retrofit and how it could be effectively applied to the existing housing stock in Northern Ireland creating low-emission or net-zero emission buildings.
北爱尔兰排屋的低排放改造能走多远?
全球和各国都有减少温室气体排放的目标,改善现有建筑将是实现这些目标的关键。如何实现这一目标,以及改造产生的全生命周期排放的影响仍然是一个关键问题。本文研究了现有房屋改造在减少和限制生命周期温室气体(GHG)排放方面的潜力。通过使用生命周期评估(LCA),对一栋 20 世纪早期的实墙排屋进行了一系列改造,以了解改造对生命周期排放的影响。对一系列改造方案进行了建模和模拟,同时考虑了建筑生命周期内的内含排放量和运行排放量,以了解如何减少净排放量。结果表明,虽然单独采用结构和某些技术措施可以减少 60% 以上的排放量,但要实现最大的减排效果,还需要采用整体方法。虽然运行仍是最大的单一排放源,但结果也显示了采用整体方法评估改造的重要性,因为不同的生命周期阶段都会产生大量排放。如果采用整体方法进行改造和评估,并考虑整个生命周期的排放,减排量可高达 99%。这项研究强调了改造的潜在好处,以及如何将其有效地应用于北爱尔兰现有的住房存量,创造低排放或净零排放建筑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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