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Logistics optimisation in road construction project

机译:道路建设项目物流优化

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摘要

Purpose - This study aims to assist the project manager in minimising the material logistics cost of road project by planning the optimal movement of aggregate across three stages of supply chain: sourcing, processing and distribution. Design/methodology/approach - The paper conceptualises the raw material consumption in a road project as a logistics network distribution problem. A linear programming (LP) formulation is constructed with appropriate decision variables by integrating the three stages of material movement. The series of LP sœnarios are solved using an LP solver to decide the optimal movement of the aggregate to be consumed in different layers of road segments. Findings - The results obtained from the model show that planning material logistics of an entire road project using optimisation provides substantial saving in logistics costs than using common sense. Further, the magnitude of cost saving improves as the complexity of the model increases in term of enormous feasible options. Practical implications - The model shown in this paper may serve as a basis for planning the logistics of raw materials consumed in the road projects. The small improvement in material flows by optimising supply chain shows sensible cost benefit to the project manager and hence control and monitor the overall cost and activities of the project. The output of the model is also expected to help the project team as an input in the decision-making processes such as appropriate material sourcing contract, capacity assessment of material processing facility and transportation planning. Originality/value - While the optimisation models are widely used and popular among the many industrial applications, this research shows distinct application of such a model in managing the logistics of the road construction project
机译:目的-本研究旨在通过规划供应链三个阶段(采购,加工和分销)中骨料的最佳移动,来帮助项目经理最大程度地减少公路项目的物料物流成本。设计/方法/方法-本文将道路项目中的原材料消耗概念化为物流网络分配问题。通过整合材料运动的三个阶段,可以使用适当的决策变量来构建线性规划(LP)公式。使用LP解算器对一系列LP snarios进行求解,以确定在路段的不同层中消耗的骨料的最佳运动。发现-从模型中获得的结果表明,与使用常识相比,使用优化来计划整个道路项目的物料物流可以节省大量的物流成本。此外,就大量可行方案而言,随着模型复杂性的增加,节省成本的幅度也随之提高。实际意义-本文中显示的模型可以作为规划道路项目中消耗的原材料物流的基础。通过优化供应链对物料流进行的小幅改进对项目经理显示了可观的成本优势,因此可以控制和监视项目的总体成本和活动。该模型的输出也有望帮助项目团队作为决策过程的输入,例如适当的材料采购合同,材料加工设施的能力评估和运输计划。原创性/价值-尽管优化模型在许多工业应用中得到了广泛使用和欢迎,但这项研究表明,这种模型在公路建设项目物流管理中的独特应用

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