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Gateway stability analysis by global-local modeling approach

机译:全球局部建模方法网关稳定性分析

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摘要

Longwall mining is the most widely used mining method in underground coal mining. The stability of gateways is crucial for longwall mining as they provide many essential services such as transportation of excavated coal, ventilation of longwall face. High in situ stresses, mining induced stresses due to advancing longwall face, and poor rock mass quality leads to large deformation jeopardizing the stability of the gateway in Guobei coal mine. In this paper, the global-local modeling approach is used for analysing the stability of the gateway in the mine. In this approach, a mine scale 3D global model was constructed to extract the stresses acting on the gateway. The extracted stresses from global model were implemented into 2D local model of the gateway for detailed analysis. The used approach was verified by the field measurements taken from the modeled gateway. In an attempt to deal with large mine induced displacements, a support system composed of rock bolt, cable bolt and shotcrete was proposed. The verified model was used to evaluate the performance of proposed support system. It was concluded that the proposed support system can significantly reduce the displacements. The verified model facilitates the performance evolution of other alternative support systems considered by the mine management. The presented approach can be applicable for other deep underground coal mines, experiencing large gateway convergence.
机译:Longwall Mining是地下煤矿中最广泛采矿方法。门道的稳定性对于长壁挖掘至关重要,因为它们提供了许多基本服务,例如挖掘煤炭的运输,长墙面的通风。高于原位应力,采矿引起的应力由于推进长墙面,岩石质量差导致大变形危害Guobei煤矿网关的稳定性。在本文中,全局局部建模方法用于分析矿井网关的稳定性。在这种方法中,构造了一种矿山量表3D全球模型以提取作用在网关上的应力。来自全局模型的提取的应力被实施为网关的2D本地模型,以进行详细分析。通过从建模网关中的现场测量验证了使用的方法。试图处理大型矿山诱导的位移,提出了一种由岩螺栓,电缆螺栓和喷射器组成的支撑系统。已验证的模型用于评估所提出的支持系统的性能。得出结论,拟议的支持系统可以显着降低流离失所。经过验证的模型促进了矿山管理所考虑的其他替代支持系统的绩效演变。所提出的方法可适用于其他深层地下煤矿,体验大型网关融合。

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