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首页> 外文期刊>Bulletin of engineering geology and the environment >Block caving-induced strata movement and associated surface subsidence: a numerical study based on a demonstration model
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Block caving-induced strata movement and associated surface subsidence: a numerical study based on a demonstration model

机译:块状崩落引起的地层运动和相关的地面沉降:基于示范模型的数值研究

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摘要

The block cave mining mechanism and associated subsidence present one of the most challenging engineering problems in rock mining. Although block caving has been in use for many years, there has been limited research on the impact caving angles have on surface settlement and failure profiles, specifically when associated with deep caves and surface propagation (i.e., not as part of caving into an existing open pit). We analyse in this study block caving-induced step-path failure development in a large-scale demonstration model utilizing a numerical code based on a finite element technique that incorporates an elasto-brittle fracture mechanics constitutive criterion. Fracture initiation, propagation and coalescence, as well as the breaking of the intact rock bridge and the evolution of a pressure-balancing arch in the stressed strata, are represented visually during the whole caving process. Based on numerical results, surface impacts of block caving, such as subsidence profiles, break angles, fracture initiation angles and subsidence angles at different initial caving depths, are illustrated in this study.
机译:块状洞穴开采机理和相关的沉陷是岩石开采中最具挑战性的工程问题之一。尽管块状崩落法已经使用了很多年,但对于崩落角对地表沉降和破坏剖面的影响研究很少,特别是在与深空洞和地表传播有关的情况下(即,不作为崩塌成现有洞口的一部分)坑)。在这项研究中,我们分析了在大规模演示模型中利用基于有限元技术的数字代码(结合弹塑性脆性断裂力学本构准则)的崩落引起的阶梯路径破坏发展。在整个崩落过程中,都可以直观地看到断裂的开始,传播和合并,以及完整岩石桥的断裂以及受压地层中压力平衡拱的演化。基于数值结果,在本研究中说明了在不同初始崩落深度下的崩落面的表面冲击,例如沉降轮廓,断裂角,裂缝起始角和沉降角。

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