An energy performance baseline scenario for 19thC listed dwellings in the UK

IF 2.1 Q2 CONSTRUCTION & BUILDING TECHNOLOGY International Journal of Building Pathology and Adaptation Pub Date : 2023-02-28 DOI:10.1108/ijbpa-08-2022-0127
M. Menconi, Noel Painting, Poorang Piroozfar
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引用次数: 1

Abstract

PurposeThe inclusion of heritage dwellings in the UK decarbonization policies can contribute to cut operational carbon emissions from the building stock; this needs to be made a priority if net zero carbon targets are to be achieved. However, the energy and carbon savings potential of suitable retrofit interventions on this part of the stock is extremely variable and strictly intertwined with the range of baseline conditions of such dwellings. This study aims to propose a framework for interventions in traditional listed dwellings (TLDs) to improve their energy performance utilizing dynamic energy simulation (DES) of selected case studies (CSs) in the city of Brighton and Hove (South-East England).Design/methodology/approachTo achieve this aim, the study established a baseline scenario which provides a basis for the assessment of energy performance and thermo-hygrometric behaviour pre- and post-interventions and allows for comparison between different CSs under comparable conditions.FindingsPresenting a brief overview of the methodology adopted in this study, the paper describes the approach devised to generate such baseline scenario. The paper then compares the results obtained from simulation of normalized and baseline models with the status-quo energy consumption of the dwellings investigated (based on meter readings).Originality/valueThis analysis finally allows to highlight some key physical determinants of the baseline HEC which, in the following stage of research, proved to have a considerable effect also on the amount of energy and carbon savings achievable post retrofit interventions.
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英国19thC上市住宅的能源性能基线情景
将传统住宅纳入英国的脱碳政策可以有助于减少建筑存量的运营碳排放;如果要实现净零碳目标,这需要成为优先事项。然而,对这部分存量进行适当改造干预的能源和碳节约潜力是非常可变的,并且与此类住宅的基线条件范围严格交织在一起。本研究旨在提出一个传统上市住宅(tld)的干预框架,利用布莱顿和霍夫市(英格兰东南部)选定的案例研究(CSs)的动态能源模拟(DES)来改善其能源性能。设计/方法/方法为达致此目标,本研究建立了一个基线情景,为评估干预前后的能源表现和热湿行为提供基础,并允许在可比条件下比较不同的CSs。本文简要概述了本研究中采用的方法,并描述了为生成此类基线情景而设计的方法。然后,论文将标准化模型和基线模型的模拟结果与所调查住宅的现状能耗(基于仪表读数)进行比较。独创性/价值这一分析最终使我们能够强调基础HEC的一些关键物理决定因素,在接下来的研究阶段,这些因素被证明对改造后可实现的能源和碳节约量也有相当大的影响。
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来源期刊
CiteScore
4.80
自引率
18.20%
发文量
76
期刊介绍: The International Journal of Building Pathology and Adaptation publishes findings on contemporary and original research towards sustaining, maintaining and managing existing buildings. The journal provides an interdisciplinary approach to the study of buildings, their performance and adaptation in order to develop appropriate technical and management solutions. This requires an holistic understanding of the complex interactions between the materials, components, occupants, design and environment, demanding the application and development of methodologies for diagnosis, prognosis and treatment in this multidisciplinary area. With rapid technological developments, a changing climate and more extreme weather, coupled with developing societal demands, the challenges to the professions responsible are complex and varied; solutions need to be rigorously researched and tested to navigate the dynamic context in which today''s buildings are to be sustained. Within this context, the scope and coverage of the journal incorporates the following indicative topics: • Behavioural and human responses • Building defects and prognosis • Building adaptation and retrofit • Building conservation and restoration • Building Information Modelling (BIM) • Building and planning regulations and legislation • Building technology • Conflict avoidance, management and disputes resolution • Digital information and communication technologies • Education and training • Environmental performance • Energy management • Health, safety and welfare issues • Healthy enclosures • Innovations and innovative technologies • Law and practice of dilapidation • Maintenance and refurbishment • Materials testing • Policy formulation and development • Project management • Resilience • Structural considerations • Surveying methodologies and techniques • Sustainability and climate change • Valuation and financial investment
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