弹性(材料科学)
相互依存
适应性
形势意识
风险分析(工程)
过程管理
知识管理
贝叶斯网络
鉴定(生物学)
脆弱性(计算)
计算机科学
系统工程
灵活性(工程)
社会生态系统
情境伦理学
工程类
管理科学
可靠性
准备
组织结构
组织网络分析
心理弹性
钥匙(锁)
工作流程
决策支持系统
操作化
脆弱性评估
清晰
网络分析
公司治理
作者
Lijie Qiao,Wenshun Wang,Lingyun Mi,Siwen Wang,Yulan Zhang,Yuguo Zhang,Min Tao
标识
DOI:10.1108/ecam-07-2025-1113
摘要
Purpose Organizational resilience is essential for maintaining stable operation of engineering projects in turbulent environments. Despite growing attention, limited research has systematically explored the multidimensional drivers of organizational resilience and the complex interdependencies that influence its development and enhancement pathways. Design/methodology/approach This study develops an engineering project organizational resilience (EPOR) analytical framework by integrating interpretive structural modeling with cross-impact matrix multiplication (ISM-MICMAC) and the Bayesian network approach. Findings (1) EPOR exhibits a four-dimensional structure characteristic, encompassing resilience capabilities, perception, actions and resources, totaling 28 defined elements; (2) Five key drivers are identified, including decision response capability, situational awareness capability, risk identification and assessment, slack resources and human capital; (3) Seven high-impact enhancement pathways are identified, revealing that synergistic interactions among factors can trigger cascading resilience gains. Originality/value This research contributes a multi-level decision-support tool and a transferable hybrid framework for organizational resilience assessment and optimization. The findings offer theoretical insights and practical guidance for enhancing EPOR, supporting improved preparedness and adaptability in dynamic construction environments.
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