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Developing optimal scaffolding erection through the integration of lean and work posture analysis

机译:通过整合精益和工作姿势分析开发最佳脚手架勃起

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Purpose Facility structures in liquefied natural gas (LNG) plants require tremendous amounts of scaffolding to facilitate relevant industrial operation and maintenance. As such, the productivity of scaffolding operations in turnaround maintenance (TAM) has attracted much attention in recent years. In addition, health and safety issues have been recognised as a key contributor along with productivity improvement in the LNG industry. This study aims to integrate work posture analysis into value stream mapping to achieve an optimised and balanced improvement in both productivity and health and safety. Design/methodology/approach A case study approach is adopted to integrate lean and work posture analysis in a TAM site. The lean improvement is conducted through value stream mapping, and the work posture analysis is conducted through the Ovako Working Posture Analysis System method. A three-step optimisation strategy is then developed for achieving optimised performance in waste reduction and work posture improvement. Findings It is found that the implementation of value stream mapping can help eliminate waste in the installation process, therefore eliminating potential health and safety risks. However, health and safety of onsite workers does not always improve as lean implementation intensifies. There is an optimised erection schedule that has the lowest health and safety risk within a waste reduction target. Originality/value In contradiction to previous studies, which rely on qualitative assessment to identify the a positive correlation between lean and health and safety, this study reveals the distinct difference between lean attributes and health and safety attributes through a quantitative assessment and is more readily to be implemented at the site level for simultaneous improvement in lean and health and safety.
机译:液化天然气(LNG)工厂的目的设施结构需要巨大的脚手架,以促进相关的工业操作和维护。因此,近年来,转盘维护中脚手架操作的生产力(TAM)引起了很多关注。此外,健康和安全问题被认为是液化天然气工业生产力的主要贡献者。本研究旨在将工作姿势分析整合到价值流映射中,以实现生产力和健康和安全性的优化和平衡的改进。设计/方法/方法采用案例研究方法在TAM网站中整合精益和工作姿势分析。通过价值流映射进行贫化改善,通过卵形工作姿势分析系统方法进行工作姿势分析。然后开发了三步优化策略,以实现废物减少和工作姿势改进的优化性能。结果发现,价值流映射的实现可以帮助消除安装过程中的浪费,从而消除潜在的健康和安全风险。但是,随着精益实施的加剧,现场工人的健康和安全并不总是有所改善。有一个优化的勃起计划,在减少废物减少目标中具有最低的健康和安全风险。原创性/价值涉及以前的研究,依靠定性评估来确定精益和健康和安全之间的正相关性,本研究揭示了通过定量评估的精益属性和健康和安全属性之间的独特差异,更容易发生在现场实施,以同时改善精益和健康和安全性。

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