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Temporary Haul Road Layout Design Optimization Based on a Rough Grading Project

机译:基于粗糙分级项目的临时运输路面布局设计优化

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Temporary haul roads are typically designed and constructed to handle mass earthworks in heavy civil and industrial construction, critical to achieving haulage efficiency and safety in earthmoving operations. Traditional temporary haul road layout design has long been based on experience rather than science. Previous research endeavors developed mathematical models and solution algorithms in an attempt to explore the possibility of analytically addressing temporary haul road layout design problems, while achieving limited progress. This study introduces a grid-based optimization methodology by adopting a Mixed-Integer Linear Programming (MILP) model, aimed to generate the optimal layout solution in real-world applications. The optimization processes and results are illustrated with a practical engineering case. A comparison of different layout designs for the same case, including the heuristics-based field design and analytical designs resulting from recent research, shows that the proposed methodology is capable of producing optimal solutions to temporary haul road layout design problems.
机译:临时运输道路通常设计和建造,以处理重型土木和工业建筑的群众土方工程,以实现拖运效率和在地球移动运营中的安全性。传统的临时运输路面布局设计长期以来一直基于经验而不是科学。以前的研究努力开发了数学模型和解决方案算法,试图探讨分析临时运输道路布局设计问题的可能性,同时实现有限的进展。本研究通过采用混合整数线性编程(MILP)模型来介绍基于网格的优化方法,旨在在现实世界应用中生成最佳布局解决方案。优化过程和结果用实际的工程案例说明。不同布局设计对相同案例的比较,包括由最近研究产生的启发式基础设计和分析设计,表明该方法能够为临时运输路面布局设计问题产生最佳解决方案。

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