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Influence of the undercut height on the behaviour of pillars at the extraction level in block and panel caving operations

机译:底切高度对砌块和面板塌陷作用中提取水平柱行为的影响

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Definition of the undercutting geometry and size is an essential aspect of the design of a block and panel caving operation. Both geometry and size need to be properly established to guarantee the initiation and the development of sustainable propagation of the caving process in a rock mass. Although the required extent of the undercut in the horizontal directions needed for caving management and to avoid damage to pillars has been studied in some detail, the required height of the flat undercut has not received similar attention. Few existing studies suggest that the smaller the height of the undercut, the higher the stress concentrations and, therefore, the higher the magnitude of stresses at the front or abutment of the undercut. These stress concentrations, in turn, can produce negative effects, such as damage in pillars and drifts at both the undercut level (UCL) and extraction level (EXL). This paper investigates the effect of the undercut height on the mechanical response of the rock mass and mine openings in a block caving operation. With this purpose, the problem is simulated using a three-dimensional mechanical model that considers undercut heights of 5, 10, 20 and 40 m in a typical block/panel caving operation. The model comprises the extraction level, the undercutting level and the broken material surfaces that simulate the undercutting advance. Simulation of the mining process allows one to see the effect that the assumed heights of undercut have on the stress concentrations and plastic damage in pillars at the vicinity of the caving front. Results of the numerical models are correlated with observations of pillar damage in caving layouts used at some mines in Chile.
机译:底切的几何形状和尺寸的定义是块和面板塌陷操作的设计的重要方面。需要正确建立几何和尺寸,以保证洞穴过程中的启动和开发岩石的可持续发展。虽然在洞穴管理所需的水平方向上的底切的所需程度和避免对支柱的损坏进行了一些细节,但扁平底切的所需高度没有得到相似的关注。少数现有研究表明,底切的高度越小,应力浓度越高,因此,底切的前部或邻接的应力越高。这些应激浓度又可以产生负面影响,例如柱子损坏并在底切水平(UCL)和提取水平(EXL)中漂移。本文研究了底切高度对块塌作用岩体和矿井开口机械响应的影响。为此,使用三维机械模型进行模拟问题,该模拟在典型的块/面板塌陷操作中削弱5,10,20和40μm的底切高度。该模型包括提取水平,底下水平和模拟底切的损坏材料表面。采矿过程的仿真允许人们看到底切的假定高度对塌方附近的柱子的应力浓度和塑料损坏的影响。数值模型的结果与智利一些矿井使用的洞穴布局的柱子损伤的观察结果相关。

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