Ab'/> Analysis of coal seam thickness and seismic wave amplitude: A wedge model
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Analysis of coal seam thickness and seismic wave amplitude: A wedge model

机译:煤层厚度和地震波振幅分析:楔形模型

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AbstractCoal seam thickness is of great significance in mining coal resources. The focus of this study is to determine the relationship between coal seam thickness and seismic wave amplitude, and the factors influencing this relationship. We used a wedge model to analyze this relationship and its influencing factors. The results show that wave interference from the top and bottom interfaces is the primary reason for the linear relationship between seismic wave amplitude and wedge thickness, when the thickness of the wedge is less than one quarter of the wavelength. This relationship is influenced by the dominant frequency, reflection coefficients from the top and bottom boundaries, depth, thickness, and angle of the wedge. However, when the lateral shift between the reflected waves is smaller than the radius of the first Fresnel zone, the wedge angle and change in lithology at the top and bottom layers are considered to have little effect on the amplitude of the interference wave. The difference in the dominant frequency of seismic waves can be reduced by filtering, and the linear relationship between amplitude and coal thickness can be improved. Field data from Sihe coal mine was analyzed, and the error was found to be within 4% of the predicted seismic wave amplitude. The above conclusions could help predict the thickness of coal seam by seismic amplitude.Highlights
机译:<![cdata [ 抽象 煤层厚度在采矿煤炭资源方面具有重要意义。本研究的重点是确定煤层厚度和地震波幅度之间的关系,以及影响这种关系的因素。我们使用了楔形模型来分析这种关系及其影响因素。结果表明,当楔形厚度小于波长的四分之一时,来自顶部和底部接口的波干扰是地震波幅度和楔形厚度之间的线性关系的主要原因。这种关系受到顶层和底部边界,深度,厚度和角度的主导频率,反射系数的影响。然而,当反射波之间的横向偏移小于第一菲涅耳区的半径时,楔角和顶部和底层的岩性的变化被认为对干涉波的幅度几乎没有影响。通过滤波可以降低地震波的主要频率的差异,并且可以提高幅度和煤厚度之间的线性关系。分析了Sihe煤矿的现场数据,发现错误是在预测地震波幅度的4%范围内。上述结论可以帮助通过地震振幅预测煤层的厚度。 亮点

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