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Integration of LCA and LCCA through BIM for optimized decision-making when switching from gas to electricity services in dwellings

Shibata, Nao; Sierra, Francisco; Hagras, Ahmed

Integration of LCA and LCCA through BIM for optimized decision-making when switching from gas to electricity services in dwellings Thumbnail


Authors

Nao Shibata

Ahmed Hagras



Abstract

This study aims to assess electric heating system retrofit options and identify the optimal solution by applying a combined LCA and LCCA approach using BIM for existing UK homes. Exemplary case study illustrating an LCA and LCCA calculation using a BIM model of a house in Bristol (UK), to assess: (baseline) gas boiler; (i) electric boiler; (ii) air source heat pump; (iii) electric boiler + PV; and (iv) ASHP + PV. The optimal option overall is (iv) ASHP + PV, which reduces the kgCO2e emitted by 77% while increasing lifetime cost by 2.1%, compared to the classic gas boiler. This research also finds that embodied carbon still has a low impact on the decision, since the main impact of heating systems like ASHP (SCOP = 3.4) is to reduce kgCO2e by improving the efficiency of old gas boilers (COP = 0.76). Electric boilers are not the optimal alternative; they reduce kgCO2e by 47% but increase the lifetime cost of the system by 105% compared to gas boilers. The change in the “carbon factor” of electricity from 0.519 kgCO2/kWh to 0.136 kgCO2/kWh means that now dwellings using electrical systems emit 35% less kgCO2 than those that use gas (0.210 kgCO2/kWh).

Journal Article Type Article
Acceptance Date Mar 16, 2023
Online Publication Date Mar 21, 2023
Publication Date Jun 1, 2023
Deposit Date Nov 19, 2023
Publicly Available Date Nov 21, 2023
Journal Energy and Buildings
Print ISSN 0378-7788
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 288
Article Number 113000
DOI https://doi.org/10.1016/j.enbuild.2023.113000
Public URL https://uwe-repository.worktribe.com/output/11455988

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