Qualitative assessment of resilience in construction projects

IF 3.1 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Khalid A. Hilu, Mohammed Hiyassat
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Abstract

Purpose Due to the recent increase in unexpected events that negatively affect projects, the concept of resilience has grasped the attention of researchers, as risk management alone fails to address unpredicted events. This study aims to identify resilience dimensions and their designated factors and then construct a comprehensive definition for resilience in construction projects. Design/methodology/approach This paper adopted a qualitative research design through content analysis of semi-structured interviews with project engineers on behalf of their construction project; 26 interviews were analyzed via ATLAS.ti. Findings The results demonstrate that resilience in construction projects consists of four main dimensions: preparation, absorption, recovery and adaptation; each dimension comprises separate factors. The evidence from this study demonstrates that the resilience of the organization, project team and project manager supports the construction project when facing unpredicted or abnormal conditions. Practical implications The results of this paper will help construction project managers to enhance the resilience of their projects by providing different resilience factors. Originality/value The resilience concept in projects is novel and has limited knowledge available, especially in construction projects therefore, it requires additional comprehensive discussion and validation. The findings of this paper will serve as a cornerstone for the development of the resilience field and enrich the indigent literature on resilience in the construction industry.
建设项目弹性的定性评估
由于最近对项目产生负面影响的意外事件增加,弹性的概念已经引起了研究人员的注意,因为风险管理本身无法解决不可预测的事件。本研究旨在识别建设项目弹性维度及其指定因素,进而构建建设项目弹性的综合定义。设计/方法/方法本文采用定性研究设计,通过对代表其建设项目的项目工程师进行半结构化访谈的内容分析;结果表明:建设项目弹性主要包括准备、吸收、恢复和适应四个维度;每个维度都包含独立的因素。本研究的证据表明,组织、项目团队和项目经理的弹性在面对不可预测或异常情况时支持建设项目。实践意义本文的研究结果将通过提供不同的弹性因素来帮助建设项目管理者提高项目的弹性。独创性/价值项目中的弹性概念是新颖的,可用的知识有限,特别是在建筑项目中,因此需要额外的全面讨论和验证。本文的研究结果将为弹性领域的发展奠定基础,并丰富建筑业弹性方面的文献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Construction Innovation-England
Construction Innovation-England CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
7.10
自引率
12.10%
发文量
71
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