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Investigation of the Optimization of Unloading Mining Scheme in Large Deep Deposit Based on Vague Set Theory and Its Application

机译:基于模糊集理论及其应用的大深度沉积卸料采矿方案优化研究及其应用

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With the development of shallow surface mineral resources in metal mines, it is gradually turning to the stage of deep mining. According to the current mining depth and the average annual depth, during the period of “14th Five-Year Plan,” one-third of the underground metal mines will reach or exceed the mining depth of 1,000?m, with the deepest being 2,000?m. In the stage of deep mining, mines will face the conditions of high stress, high temperature, high well depth, and strong mining disturbance, which will greatly increase the difficulty of large-scale deep mining. Among them, the high ground stress environment is the principal problem of many technical problems in deep mining. The selection of mining method has become a prerequisite for solving the problem of efficient and safe mining of deep deposits. In this paper, the vague set theory was introduced into the selection of mining methods and a vague set model for deep unloading mining schemes was established. Taking the Jinchuan No. 2 mining area as the engineering background, four unloading schemes for deep mining were proposed, and the Vague set model was used for optimization. It is concluded that the mining approach with large-section unloading is the optimal unloading mining plan. The application shows that it has the advantages of high unloading efficiency, large production capacity, and low loss index. It has been fully promoted in the deep mining of the mining area. It is feasible and effective to use the vague set theory in the selection of deep unloading mining schemes, which provides a proper approach in the selection of deep unloading mining schemes.
机译:随着浅层表面矿产资源在金属矿山的发展,它逐渐转向深处的阶段。根据当前采矿深度和年均深度,在“十三五”期间,三分之一的地下金属地雷将达到或超过1,000?M的采矿深度,最深刻的是2,000? m。在深度采矿的阶段,矿山将面临高应力,高温,高度深度和强大采矿干扰的条件,这将大大增加大型深度采矿的难度。其中,高地应力环境是深矿业众多技术问题的主要问题。采矿方法的选择已成为解决深层沉积物有效和安全挖掘问题的先决条件。在本文中,建立了模糊集理论的选择,建立了深度卸载矿业方案的模糊集模型。以金川第2号采矿区作为工程背景,提出了四种深矿的卸载方案,使用了模糊的模型进行了优化。得出结论,大部分卸载的采矿方法是最佳卸载采矿计划。该应用表明,卸载效率高,生产能力大,低损耗指数具有优势。它已在矿区的深度挖掘中充分促进。在选择深度卸载挖掘方案中,使用模糊的集合理论是可行和有效的,这在选择深度卸载挖掘方案方面提供了适当的方法。

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