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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Combined mine tremors source location and error evaluation in the Lubin Copper Mine (Poland)
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Combined mine tremors source location and error evaluation in the Lubin Copper Mine (Poland)

机译:卢宾铜矿(波兰)的综合矿震震源定位和误差评估

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A modified method of mine tremors location used in Lubin Copper Mine is presented in the paper. In mines where an intensive exploration is carried out a high accuracy source location technique is usually required. The effect of the flatness of the geophones array, complex geological structure of the rock mass and intense exploitation make the location results ambiguous in such mines. In the present paper an effective method of source location and location's error evaluations are presented, combining data from two different arrays of geophones. The first consists of uniaxial geophones spaced in the whole mine area. The second is installed in one of the mining panels and consists of triaxial geophones. The usage of the data obtained from triaxial geophones allows to increase the hypocenter vertical coordinate precision. The presented two-step location procedure combines standard location methods: P-waves directions and P-waves arrival times. Using computer simulations the efficiency of the created algorithm was tested. The designed algorithm is fully non-linear and was tested on the multilayered rock mass model of the Lubin Copper Mine, showing a computational better efficiency than the traditional P-wave arrival times location algorithm. In this paper we present the complete procedure that effectively solves the non-linear location problems, i.e. the mine tremor location and measurement of the error propagation.
机译:本文提出了一种改进的鲁宾铜矿震台定位方法。在进行密集勘探的矿井中,通常需要高精度的源定位技术。地震检波器阵列的平坦性,岩体复杂的地质结构以及大量开采的影响使这种矿山的定位结果不明确。在本文中,提出了一种有效的源位置和位置误差评估方法,该方法结合了来自两个不同检波器阵列的数据。第一个由在整个矿区中分布的单轴地震检波器组成。第二个安装在一个采矿面板中,由三轴检波器组成。从三轴检波器获得的数据的使用可以提高震源垂直坐标精度。提出的两步定位程序结合了标准的定位方法:P波方向和P波到达时间。使用计算机仿真测试了所创建算法的效率。设计的算法是完全非线性的,并在鲁宾铜矿的多层岩体模型上进行了测试,显示出比传统的P波到达时间定位算法更好的计算效率。在本文中,我们提出了可以有效解决非线性定位问题(即矿震位置和误差传播测量)的完整程序。

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