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Optimization for blasting scheme of crown-sill pillar based on CW-GT and GC-WTOPSIS

机译:基于CW-GT和GC-WTOPS的冠部柱爆破方案优化

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Blasting scheme for crown-sill pillar of a lead-zinc mine was optimized by a new combination optimization model on the basis of CW-GT and GC-WTOPSIS. Nine main evaluation indices influencing blasting were chosen from economy, technology and safety aspects to establish the synthetic evaluation index system of four blasting schemes. Then the synthetic superiority degrees of the four schemes were determined with the basic theory of CW-GT and GC-WTOPSIS. Scheme-III (burn cut, inclined hole and side collapse with an angle of 80 degrees) had the highest superiority degree and hence was confirmed as the best. The result was consistent with AHP-TOPSIS, BP neural network and catastrophe progressing model. The practice showed that the selected blasting scheme achieved the desired blasting effect, and the new method was suitable for optimization of blasting scheme, which provided a new way for scientific and reliable optimization of similar programmes.
机译:基于CW-GT和GC-WTOPSIS的新的组合优化模型优化了铅锌矿冠部柱柱的爆破方案。 影响影响爆破的九个主要评估指标,从经济,技术和安全方面选择,建立四种爆破计划的合成评价指标体系。 然后用CW-GT和GC-WTOPSIS的基本理论确定四种方案的合成优势度。 方案 - III(烧伤,倾斜孔和侧塌陷的角度为80度)具有最高的优势程度,因此确认为最佳状态。 结果与AHP-TOPSIS,BP神经网络和灾难进展模型一致。 该实践表明,所选择的爆破方案实现了所需的爆破效果,新方法适用于爆破方案的优化,这为类似节目的科学和可靠优化提供了一种新的方式。

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