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A 3D optimization algorithm for sustainable cutting of slabs from ornamental stone blocks

机译:观赏石块可持续切割板的3D优化算法

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摘要

Ornamental stones are natural building materials, extracted from quarries, which need to be cut and processed sustainably. Natural discontinuities adversely affect the sawing/cutting of blocks into commercial-size slabs. This work presents a 3D optimization algorithm for the sawing/cutting of ornamental stone blocks. The developed algorithm is based on 3D modeling of discontinuities as data input. The algorithm search for the intersection between a 3D cutting grid formed of a determined size of slabs and the model of discontinuities leading to calculate the recovery ratio considering several cutting orientations and displacements of the 3D cutting grid. The algorithm was coded in a program named SlabCutOpt that allows speed problem solving. SlabCutOpt was implemented on a real case study of a commercial-size limestone block extracted from a quarry in Italy. A number of 37 different commercial-sizes of slabs forming 37 cutting grids were tested to investigate the optimum results in geo-environmental direction (recovery ratio) and economic direction (revenue). The findings revealed that a certain slab size gave the optimum recovery ratio, whilst another slab size provided the optimum revenue.
机译:装饰石是自然建筑材料,从采石场中提取,需要可持续地切割和加工。自然不连续性对商业大小的板坯的锯切/切割产生不利影响。这项工作提出了一种用于观赏石块锯切/切割的3D优化算法。发达的算法基于不连续性的3D建模作为数据输入。该算法搜索由确定的三个板坯的3D切割网格之间的交叉点以及导通的不连续型的模型,其考虑若干切割网格的若干切割方向和位移来计算恢复比。该算法在名为Slabcutopt的程序中编码,允许速度解决求解。 Slabcutopt在一个真正的案例研究中实施了从意大利的采石场提取的商业大小石灰岩块。测试形成37个切割网格的三种不同商业尺寸的平板,以研究地质环境方向(回收率)和经济方向(收入)的最佳结果。结果表明,某个板坯大小得到了最佳的回收率,而另一种板坯尺寸提供了最佳收入。

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