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Computation of influence functions for automatic mining subsidence prediction

机译:自动开采沉陷预测的影响函数计算

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This paper presents a computer tool that automatically predicts mining subsidence using the generalized n-k-g influence function detailed in (Gonzalez Nicieza et al. Int J Rock Mech Min Sci 42(3):372-387, 2005). This function depends on two physical concepts: the first is gravity, which characterizes the forces acting on the ground, and the second, the convergence of the roof and floor of the mine workings due to the stress state of the ground. The developed tool also allows other influence functions to be used to predict subsidence, namely the spatial influence function (Ramirez Oyanguren et al. 2000) and the normal-type classical (Knothe, Arch Gor Hut 1, 1952) and modified (Gonzalez Nicieza et al. Bull Eng Geol Environ 66(3):319-329, 2007) time functions. Moreover, the inputting and periodic updating of data from subsidence monitoring surveys is controlled by one of the tool's modules using a method that minimizes errors resultingrnfrom time discontinuities in landmarks measurements. In addition, when actual landmarks measurements exist, the developed tool allows calibration of the subsidence parameters, minimizing the errors between actual measurements and those obtained by prediction. The tool includes a viewer, developed using OpenGL, which enables the results of the calculations carried out to be viewed, allowing the point of view to be varied. It also includes the option of viewing and saving the results of the calculations carried out over the original topographic plane defined in the AutoCAD DXF data file format. The efficacy of the tool is demonstrated via its application to a real case of mining work carried out in a village in the Principality of Asturias, Spain.
机译:本文介绍了一种计算机工具,该工具使用广义的n-k-g影响函数自动预测采矿沉降,该函数在(Gonzalez Nicieza et al。Int J Rock Mech Min Sci 42(3):372-387,2005)中进行了详细介绍。此功能取决于两个物理概念:第一个是重力,它表示作用在地面上的力;第二个是由于地面的应力状态而导致的矿井顶板和底板的会聚。开发的工具还允许将其他影响函数用于预测沉降,即空间影响函数(Ramirez Oyanguren等,2000)和标准类型的经典函数(Knothe,Arch Gor Hut 1,1952)并进行了修改(Gonzalez Nicieza等)。 al。Bull Eng Geol Environ 66(3):319-329,2007)时间函数。此外,沉陷监测调查数据的输入和定期更新由该工具的一个模块控制,使用的一种方法可将路标测量中的时间不连续性导致的误差最小化。此外,当存在实际的地标测量值时,开发的工具允许对沉降参数进行校准,从而将实际测量值与通过预测获得的误差最小化。该工具包括使用OpenGL开发的查看器,该查看器可以查看所执行的计算结果,从而可以改变视点。它还包括查看和保存在AutoCAD DXF数据文件格式中定义的原始地形平面上执行的计算结果的选项。通过将该工具应用于西班牙阿斯图里亚斯公国的一个村庄中进行的采矿工作的真实案例,证明了该工具的有效性。

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