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Optimal Crew Design for Masonry Construction Projects Considering Contractor's Requirements and Workers' Needs

机译:考虑承包商要求和工人需求的砌体建筑项目最佳船员设计

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Masonry construction is labor-intensive. Its operations involve little to no mechanization and require a large number of crews made up of workers with diverse skills. Relationships between crews are tight and very dependent. Often tasks have to be completed concurrently and crews have to share resources and work space to complete their work. One of the problems masonry contractors face is the need to design crews, that is, determine the number of crews and the composition of each crew to be effectively used in the construction process to maximize workflow. This study proposes a mixed integer optimization model to assist contractors in the allocation of crews in masonry projects. To address realistic scenarios experienced by the contractors on masonry construction job sites, the model incorporates the rules that contractors use for crew design and makeup as well as time constraints. In addition, the model considers workers' needs such as labor stability. The proposed model can be a valuable tool to assist masonry stakeholders in the process of allocating crews while meeting contractor's requirements and workers' needs.
机译:砌体建筑是劳动密集型的。它的操作几乎没有机械化,需要大量由具有不同技能的工人组成的人员。机组之间的关系很紧密,非常依赖。通常,任务必须同时完成,并且工作人员必须共享资源和工作空间才能完成工作。砌体承包商面临的问题之一是需要设计人员,即确定要在施工过程中有效使用的人员数量和每个人员的组成,以最大程度地提高工作流程。这项研究提出了一个混合整数优化模型,以协助承包商在砌体项目中分配人员。为了解决承包商在砌体施工现场遇到的现实情况,该模型合并了承包商用于船员设计和组成以及时间限制的规则。此外,该模型还考虑了工人的需求,例如劳动稳定性。所提出的模型可能是一个有价值的工具,可以在满足承包商的要求和工人的需求的同时,协助砌体相关方进行人员分配。

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