Optimizing Material-Related Costs Using Dynamic Site Layout and Supply Chain Planning

S. A. Dargham, Sena Assaf, Karim Faour, F. Hamzeh
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引用次数: 1

Abstract

Understanding a construction site layout is a crucial step before allocating resources to it; space is a critical factor that impacts both labor productivity and ease of material reach when needed. There is little research performed on the cost aspect of material management on site in compliance with the schedule and the type of supply chain strategy. The process of delivering bulk Glass Reinforced Concrete (GRC) units based on a push-supply system to a congested site with limited storage space all the way to their storage and installation on site is studied in this paper. The resources' cost, deterioration cost, transportation-delay cost, and the corresponding space turnover rate associated with the process are also addressed. The aim of this paper is to incorporate lean thinking to develop, model, and simulate an optimized and dynamic site layout that allows for a smooth flow of materials to the site thus minimizing their accumulated logistics and handling costs using the simulation software EZStrobe. Results showed 16% reduction in the total cost and 15% in the total simulation time from the base model of the process under study by adopting a pull-based supply chain of GRC units and combining certain activities of the process.
利用动态站点布局和供应链规划优化材料相关成本
在分配资源之前,了解建筑工地的布局是至关重要的一步;空间是影响劳动生产率和需要时材料到达的便利性的关键因素。在符合进度和供应链策略类型的现场物料管理成本方面的研究很少。本文研究了基于推供系统的散装玻璃钢混凝土(GRC)构件运送到存储空间有限的拥挤场地,直至其在现场的储存和安装过程。并分析了与此过程相关的资源成本、劣化成本、运输延迟成本以及相应的空间周转率。本文的目的是结合精益思维来开发,建模和模拟优化的动态站点布局,允许物料顺利流向站点,从而最大限度地减少他们积累的物流和处理成本,使用模拟软件EZStrobe。结果表明,采用基于拉动的GRC单元供应链并结合流程的某些活动,与所研究流程的基本模型相比,总成本降低了16%,总仿真时间缩短了15%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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