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A simulation and visualization-based framework of labor efficiency and safety analysis for prevention through design and planning

机译:基于仿真和可视化的劳动效率和安全性分析框架,可通过设计和计划进行预防

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摘要

Considering the physically demanding nature of manual tasks in the construction industry, an effective approach to mitigating ergonomic risks is to prevent the unsafe working conditions proactively during design and planning, also known as Prevention through Design (PtD). However, there is a lack of approaches for identifying the potential ergonomic risks of a proposed design that can effectively address designers' lack of familiarity with ergonomic risks and understanding of the PtD concept and its implementation. Furthermore, it is difficult to evaluate the impact of ergonomic interventions on productivity and vice versa using available tools. Thus, an integrated approach to PtD is proposed by developing a comprehensive framework that uses simulation modeling, coupled with Predetermined Motion Time Systems (PMTS) and ergonomic and biomechanical assessment, as well as workplace visualization, in order to incorporate both productivity and safety analysis into the design process. The results of implementing the proposed approach indicate its effectiveness in achieving optimum designs in terms of efficiency and safety by evaluating different scenarios of carrying out construction manual operations. The proposed framework also enables evaluating the relationship between safety and productivity from a physical perspective.
机译:考虑到建筑行业中手动任务的物理要求,缓解人机工程学风险的有效方法是在设计和规划过程中主动预防不安全的工作条件,也称为“预防性设计”(PtD)。但是,缺乏识别拟议设计的潜在人体工程学风险的方法,可以有效解决设计师对人体工程学风险的不熟悉以及对PtD概念及其实施的理解。此外,使用可用工具很难评估人机工程学干预对生产力的影响,反之亦然。因此,通过开发使用模拟模型,预定运动时间系统(PMTS)和人体工学和生物力学评估以及工作场所可视化的综合框架,提出了一种综合的PtD方法,以便将生产率和安全性分析整合到其中设计过程。实施该提议方法的结果表明,通过评估执行施工人工操作的不同方案,可以有效地实现效率和安全性方面的最佳设计。提出的框架还可以从物理角度评估安全性和生产率之间的关系。

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