相互依存
环路图
风险分析(工程)
认证
关键成功因素
可持续设计
等级制度
过程管理
工程类
业务
环境经济学
计算机科学
持续性
系统动力学
市场经济
生物
生态学
人工智能
经济
政治学
法学
出处
期刊:Journal of building material science
[Bilingual Publishing Co.]
日期:2025-06-11
卷期号:7 (2): 153-174
标识
DOI:10.30564/jbms.v7i2.9770
摘要
Green buildings represent a crucial solution for reducing carbon emissions in the construction sector, which accounts for approximately one-third of global energy-related emissions. However, high initial costs remain a significant barrier to widespread adoption of sustainable construction practices. This study addresses the critical gap in understanding how cost factors interconnect throughout the entire lifecycle of green building projects. Using a comprehensive life cycle approach combined with Interpretive Structural Modeling (ISM) and MICMAC (Matrix of Cross-Impact Multiplications Applied to Classification) methodologies, this research examines 20 key factors influencing green building construction costs across four major phases: planning and design, construction and building, maintenance and recovery, and policy and environment. The analysis reveals that "Policy Support" functions as the primary root cause factor, exerting the strongest influence on green building design, certification requirements, and operational strategies. Energy-saving technologies and green construction standards emerge as critical mediating factors within the system hierarchy. The ISM analysis constructs a seven-level hierarchical structure, while MICMAC classification identifies independent, dependent, and interactive factor categories based on their driving power and dependence relationships. This research provides the first systematic mapping of cost factor interdependencies in green building projects, offering both theoretical advancement in cost analysis methodologies and practical guidance for governments, developers, and investors. The framework enables stakeholders to optimize cost efficiency, prioritize regulatory interventions, and develop strategies that promote economically viable sustainable construction practices.
科研通智能强力驱动
Strongly Powered by AbleSci AI