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Protecting Bridge Maintenance Workers from Falls: Evaluation and Selection of Compatible Fall Protection Supplementary Devices

机译:保护桥梁维护人员免受跌落:兼容的跌落保护辅助装置的评估和选择

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Falls from bridge decks are a common issue among highway and bridge maintenance workers. These workers generally rely on existing bridge guardrails for their protection against falls when working on bridge decks. Unfortunately, a large number of bridge guardrails do not provide the required barrier height of 107 +/- 8cm (42 +/- 3in.) for sufficient protection. To overcome this issue, a few departments of transportation (DOTs) have recently begun installing Fall Protection Supplementary Devices (FPSDs) on bridge guardrailsto temporarily increase the overall barrier height during work. However, many manufactured and marketed FPSDs are not compatibleor do not firmly attach onto every bridge guardrail. Therefore, workers are often tasked with assessing the compatibility of FPSDs with particular bridge guardrails before initiating work. Traditionally, this has been performed using an inefficient trial-and-error based approachwhere potential FPSDs are procured, transported, and iteratively tested with a number of bridge guardrails. Apart from this inefficient testing procedure, current literature does not offer any guidance on the selection of efficient FPSDs based on the advantages they offer. Therefore, compatible FPSD systems that are not optimal for work efficiency, productivity, and safety are commonly adopted in practice. To resolve these challenges, the current research focused on identifying compatible FPSDsthat offer the most advantagesfor 12 bridge guardrails that appear across 11,000 bridges in North Carolina. The study objectives were accomplished by (1)building virtual prototypes of existing bridge guardrails and FPSD systems and assessing compatibility in a virtual setting; (2)identifying desirable FPSD characteristics that can lead to improvements in work-efficiency, productivity, and safety (i.e.,advantages); and (3)evaluating potential FPSD systems for each guardrail using the structured Choosing by Advantages (CBA) methodto identify FPSD systems that offer the most important set of advantages. The study addresses a nationwide safety issue experienced by all transportation agencies in the United States and beyond. It is expected that the findings will encourage more DOTs to adopt efficient fall protection measures and systems to protect their workforce.
机译:从桥面跌落是公路和桥梁维护人员中的常见问题。这些工人通常在桥梁甲板上工作时依靠现有的桥梁护栏来防止跌落。不幸的是,大量的桥梁护栏不能提供所需的107 +/- 8厘米(42 +/- 3英寸)的屏障高度以提供足够的保护。为解决此问题,一些交通运输部门(DOT)最近开始在桥梁护栏上安装防坠落辅助设备(FPSD),以暂时增加工作中的整体障碍物高度。但是,许多制造和销售的FPSD都不兼容,或者不能牢固地固定在每个桥梁护栏上。因此,在开始工作之前,工人经常要承担评估FPSD与特定桥梁护栏的兼容性的任务。传统上,这是使用效率低下的基于反复试验的方法来执行的,其中使用许多桥梁护栏来采购,运输和迭代测试潜在的FPSD。除了这种低效的测试程序外,当前的文献还没有基于其所提供的优势提供有关选择高效FPSD的任何指导。因此,实践中通常采用对工作效率,生产率和安全性不是最佳的兼容FPSD系统。为了解决这些挑战,当前的研究重点是确定兼容的FPSD,这些FPSD为北卡罗来纳州11,000座桥梁中出现的12条桥梁护栏提供了最大的优势。通过(1)构建现有桥梁护栏和FPSD系统的虚拟原型并在虚拟环境中评估兼容性来实现研究目标。 (2)确定可导致工作效率,生产率和安全性(即优势)改善的理想FPSD特性; (3)使用结构化优势选择(CBA)方法评估每个护栏的潜在FPSD系统,以识别具有最重要优势的FPSD系统。该研究解决了美国及其他地区所有运输机构都遇到的全国性安全问题。预期这些发现将鼓励更多的DOT采取有效的防坠落措施和系统来保护其劳动力。

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