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Determination of Haul Distance and Direction in Mass Excavation

机译:大规模挖掘中的牵引距离和方向的确定

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Currently, construction professionals can easily determine the amount of cut and fill on a mass excavation project, but can only make an educated and intuitive guess as to the required minimum haul distances and the directions to move the earth. This paper develops a mathematical optimization model for the determination of these minimum haul distances and directions. The two-dimensional model presented uses linear programming. An example of how this generic model works is detailed in this paper. Necessary inputs are the cut and fill quantities and the location of these on the site. With this mathematical model, the quantity of earth hauled, the minimum haul distances, and the locations to haul the material are determined. The solution is then made into a vector diagram detailing the quantity and direction to move material that can be used by nontechnical personnel in the field. The formulation presented in this paper will assist construction professionals by providing a method to find an optimal solution to the mass earthmoving problem. A pilot user interface is tested to investigate the possible use of an automated input system to reduce input error.
机译:当前,建筑专业人士可以轻松确定大规模开挖项目的挖方和填方数量,但是只能对所需的最小运输距离和移动地球的方向做出有教益和直观的猜测。本文开发了用于确定这些最小牵引距离和方向的数学优化模型。提出的二维模型使用线性规划。本文详细介绍了此通用模型的工作方式示例。必要的输入是切割和填充数量以及这些在现场的位置。利用该数学模型,可以确定被拖运的土方量,最小的拖运距离以及拖运物料的位置。然后将该解决方案制作为矢量图,详细说明了移动非现场技术人员可以使用的材料的数量和方向。本文提供的公式将通过提供一种方法来找到大规模土方工程的最佳解决方案,从而帮助建筑专业人士。测试了飞行员用户界面,以调查可能使用自动输入系统来减少输入错误。

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