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Safety climate dimensions and their relationship to construction safety performance: A meta-analytic review

机译:安全气候尺寸及其与施工安全性能的关系:Meta-Inalytic评论

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摘要

This study investigated the empirical relationship between measures of construction safety climate dimensions and safety performance. A comprehensive review of existing literature of construction safety climate was conducted to: (1) review the questionnaires used to measure safety climate dimensions in the construction industry; (2) identify the salient dimensions of safety climate; and (3) establish a consistent definition of each safety climate dimension. Then, a statistical meta-analysis of the empirical relationship between construction safety climate dimensions and safety performance was performed. 107 studies were reviewed, and 11 studies were included in the meta-analysis. The review indicated that 14 construction safety climate dimensions were commonly used to assess safety climate. Of the 14 dimensions, five supervisor's safety role (r = 0.30, 95% CI = 0.07 to 0.50), management commitment to safety (r = 0.27, 95% CI = 0.23 to 0.31), safety rules and procedures (r = 0.25, 95% CI = 0.12 to 0.37), individual responsibility to health and safety (r = 0.23, 95% CI = 0.17 to 0.31, and training (r = 0.10, 95% CI = 0.03 to 0.17) were identified as commonly used predictors of injury rates. The results can be used by researchers and practitioners in this burgeoning field to standardize the assessment of safety climate and to validate the use of safety climate as a predictor of safety performance.
机译:本研究研究了建筑安全气候尺寸措施与安全性能之间的实证关系。对施工安全气候的现有文献进行了全面审查:(1)审查用于衡量建筑业安全气候维度的问卷; (2)确定安全气候的突出尺寸; (3)建立每个安全气候维度的一致定义。然后,进行施工安全气候尺寸与安全性能之间的经验关系的统计元分析。审查了107项研究,荟萃分析中包含11项研究。审查表明,普通施工安全气候尺寸普遍用于评估安全气候。在14个维度,五个主管的安全角色(r = 0.30,95%ci = 0.07至0.50),安全到安全的承诺(r = 0.27,95%ci = 0.23至0.31),安全规则和程序(r = 0.25, 95%CI = 0.12〜0.37),个人责任健康和安全(R = 0.23,95%CI = 0.17至0.31,以及训练(r = 0.10,95%CI = 0.03〜0.17)被确定为常用预测因子伤害率。这一结果可以通过这一兴奋剂领域的研究人员和从业者使用,以规范安全气候评估,并验证安全气候的使用作为安全性能的预测因素。

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  • 来源
    《Safety science》 |2018年第2018期|共9页
  • 作者单位

    Univ Colorado Dept Civil Environm &

    Architectural Engn 1111 Engn Dr Boulder CO 80309 USA;

    Univ Colorado Dept Civil Environm &

    Architectural Engn 1111 Engn Dr UCB 428 Boulder CO 80302 USA;

    Univ Colorado Dept Civil Environm &

    Architectural Engn 1111 Engn Dr ECOT 441 Boulder CO 80309 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 安全科学基础理论;
  • 关键词

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