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Empirical Study of Identifying Logistical Problems in Prefabricated Interior Wall Panel Construction

机译:识别预制内墙面板构建后勤问题的实证研究

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Off-site prefabrication is becoming widespread in the construction industry owing to quality, safety, and schedule benefits, but logistical costs are still among the largest barriers to adopting it. This study focuses on stacking plans, which encapsulate information on logistical processes, for prefabricated interior wall panels to identify logistical problems and their potential solutions. Due to the scarcity of reports on logistical problems in the construction industry, the authors studied operations research and defined two metrics, stability and reshuffling effort. From two case projects, the authors found that the stability and reshuffling effort of stacks were 47% and 44% on average, respectively, where it is desirable to achieve high stability and low reshuffling effort. The authors also identified three causes of the problems associated with unstable stacks and reshuffling effort: (1) inherent difficulty avoiding unstable stacks and reshuffling effort simultaneously due to the panel designs and their installation sequences; (2) ad hoc adjustments of priority between stack stability and reshuffling effort; and (3) incapability of consistently creating stacking plans on a Pareto optimal surface. Interviews showed that the problem related to unstable stacks and reshuffling effort and their causes are commonly found in construction projects that use prefabricated interior wall panels. To address these problems, one of the potential solutions identified is to develop a methodology to generate stacking plans on a Pareto optimal surface considering stack stability and reshuffling effort.
机译:由于质量,安全和计划福利,非现场预制越来越普遍存在建筑业,但后勤成本仍然是采用它的最大障碍。本研究重点介绍叠加计划,该计划封装有关后勤过程的信息,用于预制内墙面板,以识别物流问题及其潜在的解决方案。由于建筑业后勤问题的报告稀缺,作者研究了运营研究和定义了两个指标,稳定和重新洗脱努力。从两种情况下,作者发现,堆叠的稳定性和重新洗脱努力平均分别为47%和44%,在那里可以实现高稳定性和低重新洗脱努力。作者还确定了与不稳定堆栈和重新洗脱努力相关的问题的三个原因:(1)由于面板设计及其安装序列而避免同时避免不稳定堆叠和重新洗脱努力的固有难度; (2)堆栈稳定与重新洗脱努力之间优先考虑的特征调整; (3)无法持续地在帕累托最佳表面上创造堆叠计划。访谈表明,与不稳定堆栈和重新洗脱努力有关的问题及其原因通常在使用预制的内墙面板的建筑项目中找到。为了解决这些问题,确定的一个潜在解决方案是制定一种方法来在考虑堆叠稳定性和重新洗脱努力的帕累托最佳表面上产生堆叠计划的方法。

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