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Mine Pillar Design Using the Ground Reaction Curve Concept

机译:基于地面反应曲线概念的矿柱设计

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Modern underground mining is becoming more complex and geotechnically challenging. The engineer uses numerical, analytical, and data-driven methods (empirical and/or experimental) or their combination to overcome these challenges. Each method has its advantages and disadvantages. Nevertheless, given the amount of innovation and experience involved in developing each of these techniques, it will be prudent to use all their benefits rather than favoring one technique over the other. Pillars are the most important support element in an underground mine. A holistic geo-mechanical solution needs to be determined to design mine pillars using a proper sequence and exact mix of the three methods. A combination of these methods, in sync, can encompass the several advantages of the three methods while eliminating their disadvantages. This paper presents a conceptual three-tier solution to the pillar design problem, to improve its design pedigree, using a proper combination of numerical, analytical, and data-driven methods. At the focus of this proposed method lies the Ground Reaction Curve (GRC) concept.
机译:现代地下采矿正变得越来越复杂,并且在岩土工程方面也具有挑战性。工程师使用数值,分析和数据驱动的方法(经验和/或实验)或它们的组合来克服这些挑战。每种方法都有其优点和缺点。但是,鉴于开发每种技术都需要大量的创新和经验,因此谨慎使用它们的所有优点,而不是偏爱一种技术而不是另一种。支柱是地下矿井中最重要的支撑元素。需要确定一种整体的地质力学解决方案,以使用三种方法的正确顺序和精确混合来设计矿柱。这些方法的同步组合可以包含这三种方法的几个优点,同时消除它们的缺点。本文提出了一种针对支柱设计问题的概念性三层解决方案,以使用数值,分析和数据驱动方法的适当组合来改善其设计谱系。提出的方法的重点在于地面反应曲线(GRC)概念。

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