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Using Interpretative Structural Modeling to Identify Critical Success Factors for Safety Management in Subway Construction: A China Study

机译:使用解释性结构模型确定地铁施工安全管理的关键成功因素:中国研究

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摘要

With the rapid development of urbanization in China, a vast number of subway projects are under construction and planned in many cities. However, the complexities of the environment in subway construction inherently bring about many uncertainties and risk factors. Understanding the inherent properties of the critical success factors (CSFs) will contribute significantly to the subway construction. From this perspective, this paper aims to identify the CSFs for safety management in subway construction. This study screened preliminary CSFs through a literature review and in-depth interviews with experts in China. Based on the data gathered and subsequently analyzed from the questionnaire surveys, a final total of 24 CSFs were identified. Then, interpretative structural modeling was employed to ascertain the interrelations among them. The result showed that the factors concerning the engineering survey and design not only occupy relatively higher scores in the questionnaire survey but also contribute significantly latent impacts on other factors. In addition, the creation of a reasonable schedule and the investment of the safety measures were also found to have a fundamental impact on the safety management of subway construction. This research guided the safety managers in determining the most important safety factors they must face and provided them valuable information that could promote safety performance and decrease the number of accidents over the course of subway construction.
机译:随着中国城市化的快速发展,许多城市正在建设和计划大量地铁项目。然而,地铁建设中环境的复杂性必然带来许多不确定性和风险因素。了解关键成功因素(CSF)的固有属性将对地铁建设做出重大贡献。从这个角度出发,本文旨在确定用于地铁施工安全管理的CSF。这项研究通过文献综述和与中国专家的深入访谈筛选了初步的脑脊液。根据收集的数据并随后从问卷调查中进行分析,最终确定了总共24个CSF。然后,使用解释性的结构建模来确定它们之间的相互关系。结果表明,与工程调查和设计有关的因素不仅在问卷调查中得分较高,而且对其他因素也具有显着的潜在影响。此外,还发现制定合理的时间表和投资安全措施对地铁建设的安全管理具有根本性的影响。这项研究指导安全经理确定他们必须面对的最重要的安全因素,并为他们提供有价值的信息,这些信息可以在地铁建设过程中提高安全绩效并减少事故数量。

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