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Research Article

Integrated framework for space- and energy-efficient retrofitting in multifunctional buildings: A synergy of agent-based modeling and performance-based modeling

Yuchi Shen1( )Xinyi Hu2Xiaotong Wang1Mengting Zhang3Lirui Deng1Wei Wang1,4( )
School of Architecture, Southeast University, Nanjing, Jiangsu Province, 210096, China
Department of Electrical Engineering and Automation, Aalto University, 02150 Espoo, Finland
Faculty of Innovation and Design, City University of Macau, Macao, China
Key Laboratory of Urban and Architectural Heritage Conservation (Southeast University), Ministry of Education, China
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Abstract

This research investigates retrofitting strategies for multifunctional spaces within educational buildings, employing agent-based and performance-based modeling to support decision-making. An experimental matrix was developed, reflecting three usage scenarios (reading, exhibition, lecture) across four retrofitting schemes. An agent-based model was developed to delineate intricate human behaviors in space and examined the self-organizing behaviors of 30 agents for each scheme in every scenario, evaluating six metrics on spatial efficiency and visual experience. Calibrated models, derived from real data and processed through DesignBuilder software, evaluated three metrics: energy use, thermal comfort, and visual comfort. The research then incorporated metrics from the agent-based model and performance simulation to develop a method for discussing the decision-making process in retrofit strategies. The findings indicate that the optimal retrofitting solution for multifunctional spaces is heavily influenced by the distribution of usage scenarios. Given the substantial influence of space metrics on selecting the optimal retrofit scheme, the proposed framework effectively facilitates decision-making for building retrofits by providing a holistic evaluation of both spatial and energy criteria.

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Building Simulation
Pages 1579-1600

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Cite this article:
Shen Y, Hu X, Wang X, et al. Integrated framework for space- and energy-efficient retrofitting in multifunctional buildings: A synergy of agent-based modeling and performance-based modeling. Building Simulation, 2024, 17(9): 1579-1600. https://doi.org/10.1007/s12273-024-1148-z

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Received: 04 March 2024
Revised: 22 April 2024
Accepted: 16 May 2024
Published: 27 July 2024
© Tsinghua University Press 2024