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Evaluating Construction Work Disruptions Using Resilient Short-Interval Scheduling: A Case Study

机译:使用弹性短间隔计划评估施工中断的案例研究

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Construction job sites are fluid, and unpredictable obstacles occur almost every day. These obstacles disrupt the original time schedule causing delays, reduced labor productivity, and extra costs for manpower and materials. One solution is to build resilience into the scheduling process to withstand the disruptions. With an existing short-interval schedule data set for electrical case projects, we identify the causes of the disruptions and their associated schedule impacts-the number of hours not worked as scheduled (NWAS) which involves both the time loss due to obstacles like absenteeism and the time spent on other tasks not scheduled. A disrupted schedule becomes resilient when the construction workers, instead of sitting idle, are reassigned to other tasks they otherwise were not expecting. Moreover, knowing the hours NWAS caused by different obstacles allows for decision-making about which obstacles require more attention and immediate action than others. To that end, we frame the resilient scheduling problem in a conceptual decision framework and suggest a measure of resilience in a short interval schedule using recoverable time and lost time. This measure of resilience is illustrated further with a case study and a sensitivity analysis showing the uncertainty of the schedule impact due to the disruptions.
机译:施工现场现场多变,几乎每天都会发生无法预料的障碍。这些障碍破坏了原定的时间表,从而导致延误,劳动生产率降低以及人力和物力额外成本。一种解决方案是将弹性纳入调度过程中,以抵御干扰。利用现有的电气案例项目的短间隔时间表数据集,我们可以确定中断的原因及其相关的时间表影响-未按计划工作的小时数(NWAS),这既包括由于旷课而造成的时间损失,也包括因缺勤而造成的时间损失。在未计划的其他任务上花费的时间。当建筑工人不再闲着,而是被分配到他们原本不希望的其他任务时,被破坏的时间表变得具有弹性。此外,了解由不同障碍物引起的NWAS的小时数可以做出决策,确定哪些障碍物比其他障碍物需要更多的关注和立即采取的行动。为此,我们在概念性决策框架中构建了弹性调度问题,并提出了使用可恢复时间和丢失时间在短期间隔计划中进行弹性度量的方法。案例研究和敏感性分析进一步说明了这种恢复能力的措施,该分析显示了由于中断造成的时间表影响的不确定性。

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