装配式建筑供应链研究现状与发展展望
(福建理工大学管理学院,福建 福州 350118)
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摘要:装配式建筑的快速推广对其供应链水平提出了更高要求,分析国内装配式建筑供应链领域的研究现状并探讨其未来发展趋势有助于促进我国装配式建筑高质量发展。本文基于定量定性相结合的文献分析法,从组织模式、韧性评价、风险管理、信息技术应用、绩效评估以及运输流程模拟仿真等方面总结国内装配式建筑供应链研究现状,并从绿色效能、策略互动、精益建造等领域对比当前国内外相关研究动态。最后,对国内装配式建筑供应链相关研究的发展趋势进行展望,提出信息化和智能化、产业链安全管理与韧性提升、标准化供应链管理以及绿色供应链与可持续发展是今后研究的热点主题。关键词:装配式建筑;供应链;研究现状;发展展望Abstract:The rapid promotion of prefabricated building puts forward higher requirements for its supply chain level. Analyzing the research status of domestic prefabricated building supply chain and discussing its future development trend will help to promote the high-quality development of prefabricated building in China. Based on the quantitative and qualitative literature analysis method,this paper summarizes the research status of domestic prefabricated construction supply chain from the aspects of organization mode,toughness evaluation,risk management,information technology application,performance evaluation and transportation process simulation,and compares the current research trends at home and abroad in the fields of green efficiency,strategy interaction,lean construction and so on. Finally,the development trend of domestic research on prefabricated construction supply chain is prospected,and it is proposed that informatization and intelligence,safety management and resilience improvement of industrial chain,standardized supply chain management,green supply chain and sustainable development are the hot topics of future research.Keywords:prefabricated buildings;supply chain;research status;development prospects参考文献[1] 中华人民共和国住房和城乡建设部.GB/T51231-2016装配式混凝土建筑技术标准[S].北京:中国建筑工业出版社,2017.[2] 刘康宁,张守健,苏义坤.装配式建筑管理领域研究综述[J].土木工程与管理学报,2018(6):163-170+177.[3] 王要武,薛小龙.供应链管理在建筑业的应用研究[J].土木工程学报,2004(9):86-91.[4] 王红春,陈雅文.基于云模型的装配式建筑供应链节点韧性测度研究[J].工业工程,2025(1):115-123.[5] 杨玉胜,喻兰.基于动态贝叶斯的装配式建筑供应链稳定运作研究[J/OL].铁道科学与工程学报,1-11[2024-10-17].[6] Zeng L,Du Q,Zhou L,etal. Side-payment contracts for prefabricated construction supply chain coordination under just-in-time purchasing[J]. Journal of Cleaner Production,2022,379:134830.[7] Lu W,Li X,Xue F,etal. Exploring smart construction objects as blockchain oracles in construction supply chain management[J].Automation in construction,2021,129:103816.[8] Luo L,Liang X,Fang C,etal. How to promote prefabricated building projects through internet of things? A game theory-based analysis[J]. Journal of Cleaner Production,2020,276:124325.[9] Du J,Xue Y,Sugumaran V,etal. Improved biogeography-based optimization algorithm for lean production scheduling of prefabricated components[J]. Engineering,Construction and Architectural Management,2023(4):1601-1635.[10] Yuan Y,Ye S,Lin L,etal. Multi-objective multi-mode resource-constrained project scheduling with fuzzy activity durations in prefabricated building construction[J]. Computers & Industrial Engineering,2021,158:107316.[11] Yang Y,Pan M,Pan W. Integrated offsite logistics scheduling approach for high-rise modular building projects[J]. Journal of Construction Engineering and Management,2022(6):04022032.[12] Meng X. Lean management in the context of construction supply chains[J]. International Journal of Production Research,2019(11):3784-3798.[13] 吕哲琦,孙宏亮,温董瑶,等.全生命周期视角下吉林省装配式建筑成本影响因素研究[J].建筑经济,2022(S1):120-125.[14] 中国流通经济编辑部.“有效降低全社会物流成本”研讨会专家观点综述[J].中国流通经济,2024(5):3-17.[15] 盛昭瀚,王海燕,胡志华.供应链韧性:适应复杂性——基于复杂系统管理视角[J].中国管理科学,2022(11):1-7.[16] 邱振涛,安丰柱,邓波.中小企业供应链管理现状与标准化建议[J].中国商论,2022(10):74-76.建筑经济,2025(4):13-20