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首页> 外文期刊>Journal of Construction Engineering and Management >Parameterized Design Optimization Framework for Worker-Friendly Workplaces in Modular Construction
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Parameterized Design Optimization Framework for Worker-Friendly Workplaces in Modular Construction

机译:模块化建设中的工人友好工作场所参数化设计优化框架

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Addressing ergonomic risk factors in modular construction is critical to enhancing the productivity of production lines and reducing the societal cost burden for worker recovery. Ergonomics-driven workplace design is thus essential to not only proactively reducing risks through design changes but also accommodating medical restrictions for workers returning to work after an injury or illness. However, efforts to realize this two-fold approach are confounded by the lack of a sound approach to identifying the root causes of ergonomic posture risks among various workplace design parameters or an optimal workplace design for multiple tasks. To address this limitation, this paper proposes a parameterized workplace design optimization framework that consists of four core components: workplace design initiation, interactive worker-workplace simulation, development of predictive surrogate models, and workplace optimization. The framework is demonstrated through a case study designing a drywall preparation workplace in a real modular construction plant. The results show that the framework enables the design of the optimal workplace (i.e., the one with minimal ergonomic risk) and provides a guide for devising practical action plans for safety improvement. (c) 2021 American Society of Civil Engineers.
机译:解决模块化建设中的人体工程学风险因素对于提高生产线的生产力并降低工人恢复的社会成本负担至关重要。因此,符合人体工程学驱动的工作场所设计对于通过设计变革来积极地减少风险,而且适应伤害或疾病后返回工作的工人的医疗限制。然而,实现这种两倍方法的努力被缺乏缺乏声音方法来识别各种工作场所设计参数的符合人体工程学姿势风险的根本原因或多个任务的最佳工作场所设计。为了解决此限制,本文提出了一个参数化工作场所设计优化框架,包括四个核心组件:工作场所设计启动,交互式工作场所仿真,启动预测代理模型以及工作场所优化。通过在真正的模块化建筑厂中设计干墙制备工作场所的案例研究证明了该框架。结果表明,该框架使得能够设计最佳工作场所(即,具有最小符合人体工程学风险的人),并为设计安全改进的实用行动计划提供指南。 (c)2021年美国土木工程师协会。

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