首页> 外文期刊>Journal of legal affairs and dispute resolution in engineering and construction >Application of Delphi Method in Identifying, Ranking, and Weighting Project Complexity Indicators for Construction Projects
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Application of Delphi Method in Identifying, Ranking, and Weighting Project Complexity Indicators for Construction Projects

机译:德尔菲法在建设项目复杂性指标识别,排序和加权中的应用

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Experts believe that project performance ultimately suffers because of complexity issues. Although some studies have focused on identifying leading project complexity indicators (CIs), the weighted impact of each CI has rarely been studied. In this study, potential CIs were identified through a comprehensive literature review and presented to 10 senior subject matter experts (SMEs), three industry professional advisors, and three academic advisors, who were asked to assess the contribution of each CI to making an industrial project complex. Through three rounds of the Delphi method, 30 CIs were validated, ranked, and weighted. Analysis revealed that issues related to scope definition, project resources, and interfaces have the highest aggregated complexity weights. All of the primary stakeholders agreed on the critical impact of the six following indicators in making a project complex: (1) peak number of participants on the project management team (PMT), (2) magnitude of change orders, (3) frequency of workarounds, (4) familiarity with technology, (5) timing of change orders, and (6) project location. The outcome of this study will help researchers develop a complexity management model that will enable industry practitioners to effectively prioritize and allocate their limited resources in complex projects.
机译:专家认为,由于复杂性问题,项目性能最终会受到影响。尽管一些研究集中在确定领先的项目复杂性指标(CI),但很少研究每个CI的加权影响。在这项研究中,通过全面的文献综述确定了潜在的CI,并将其提交给10位高级主题专家(SME),3位行业专业顾问和3位学术顾问,他们被要求评估每个CI对制定工业项目的贡献复杂。通过三轮Delphi方法,对30个CI进行了验证,排名和加权。分析显示,与范围定义,项目资源和接口相关的问题具有最高的综合复杂度权重。所有主要利益相关者都同意以下六个指标对项目复杂化的关键影响:(1)项目管理团队(PMT)的参与者人数最多;(2)变更单的数量;(3)变更频率解决方法,(4)对技术的熟悉程度,(5)变更单的时间安排以及(6)项目位置。这项研究的结果将帮助研究人员开发一种复杂性管理模型,该模型将使行业从业人员能够有效地对复杂项目中的有限资源进行优先级分配。

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