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The Impact Analysis of Ground Stability Caused by Exploiting Underground Coal

机译:利用地下煤引起地面稳定性的影响分析

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Disaster caused by exploiting underground coal is due to original mechanical equilibrium of underground rock has been destroyed when underground coal is exploited. And Stress redistribution and stress concentration of wall rock in the goaf happened too. As many complex factors exist such as complex structures of ground, multivariate stope boundary conditions, many stochastic mining factors and so on, it is difficult to evaluate the damage of the geological environment caused the excavation by surrounding underground coal accurately. Besides that, the coexistence of continuous and discontinuous of deformation and failure of wall rock make a strong impact on the ground, and the co-exist of tension, compression and shear failure also pay a great deal contribution to the destroy. Due to the mechanical property and deformation mechanism of goaf are complex , changeable, nonlinear and probabilistic, which changes with in space and time dynamically, it can not be studied analytically by the classical mathematical model and the theory of mechanics computation. Through finite element analysis software ABAQUS, a numerical simulation of the process of underground coal mining have been made. After make a research of the simulation process, it shows the change process of stress environment of wall rock and deformation and failure process of rock mass during the process of coal mining. The numerical simulation of the process can provide theoretical basis and technical support to the protection and reinforcement of laneway the process of coal excavation. Besides that, it also provides a scientific basis and has a great significance to reasonable Excavation and control of mind-out area.
机译:利用地下煤造成的灾难是由于地下煤炭利用时遭到了地下岩石的原始机械均衡。在Goof中的壁岩的压力再分配和压力浓度也发生了。随着许多复杂因素存在,如复杂的地面结构,多变量缩写边界条件,许多随机采矿因素等等,难以评估地质环境的损害,通过准确地围绕地下煤造成挖掘。除此之外,壁岩变形和失效的连续和不连续的共存对地面产生了强烈的影响,以及张力,压缩和剪切失效的共存也为破坏而付出了很大的贡献。由于GOF的机械性能和变形机制是复杂的,可变的,非线性和概率,其动态地与空间和时间变化,无法通过经典的数学模型和机械计算理论分析研究。通过ABAQUS有限元分析软件,已经进行了地下煤矿过程的数值模拟。进行了仿真过程之后,它显示了煤矿过程中岩岩壁岩和变形和故障过程的应力环境变化过程。该过程的数值模拟可以为保护和加固巷道挖掘过程提供理论基础和技术支持。除此之外,它还提供了科学的基础,对良好的开挖和控制造成地区具有重要意义。

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