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首页> 外文期刊>Acta Geophysica >Dispersion features of transmitted channel waves and inversion of coal seam thickness
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Dispersion features of transmitted channel waves and inversion of coal seam thickness

机译:传输通道波的频散特征与煤层厚度反演

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In-seam seismic survey currently is a hot geophysical exploration technology used for the prediction of coal seam thickness in China. Many studies have investigated the relationship between the group velocity of channel wave at certain frequency and the actual thickness of exposed coal beds. But these results are based on statistics and not universally applicable to predict the thickness of coal seams. In this study, we first theoretically analyzed the relationship between the depth and energy distribution of multi-order Love-type channel waves and found that when the channel wave wavelength is smaller than the thickness of the coal seam, the energy is more concentrated, while when the wavelength is greater than the thickness, the energy reduces linearly. We then utilized the numerical simulation technology to obtain the signal of the simulated Love-type channel wave, analyzed its frequency dispersion, and calculated the theoretical dispersion curves. The results showed that the dispersion characteristics of the channel wave are closely related to the thickness of coal seam, and the shear wave velocity of the coal seam and its surrounding rocks. In addition, we for the first time realized the joint inversion of multi-order Love-type channel waves based on the genetic algorithm and inversely calculated the velocities of shear wave in both coal seam and its surrounding rocks and the thickness of the coal seam. In addition, we found the group velocity dispersion curve of the single-channel transmitted channel wave using the timea??frequency analysis and obtained the phase velocity dispersion curve based on the mathematical relationship between the group and phase velocities. Moreover, we employed the phase velocity dispersion curve to complete the inversion of the above method and obtain the predicted coal seam thickness. By comparing the geological sketch of the coal mining face, we found that the predicted coal seam thickness is in good agreement with the actual thickness. Overall, adopting the channel wave inversion method that creatively uses the complete dispersion curve can obtain the shear wave velocities of the coal and its surrounding rocks, and analyzing the depth of the abruptly changed shear wave velocity can accurately obtain the thickness of the coal seam. Therefore, our study proved that this inversion method is feasible to be used in both simulation experiments and actual detection.
机译:煤层内地震勘探是目前中国用于预测煤层厚度的一项热门地球物理勘探技术。许多研究已经研究了在一定频率下通道波群速度与裸露煤层实际厚度之间的关系。但是这些结果是基于统计数据,不能普遍应用于预测煤层厚度。在这项研究中,我们首先从理论上分析了多阶洛夫型通道波的深度与能量分布之间的关系,发现当通道波波长小于煤层厚度时,能量更集中,而当波长大于厚度时,能量线性降低。然后,我们利用数值模拟技术获得模拟的Love型信道波的信号,分析其频率色散,并计算理论色散曲线。结果表明,通道波的频散特性与煤层厚度,煤层及其围岩的剪切波速度密切相关。此外,我们首次基于遗传算法实现了多阶Love型通道波的联合反演,并反算了煤层及其围岩中剪切波的速度和煤层厚度。另外,我们利用时频分析找到了单通道传输信道波的群速度色散曲线,并基于群速度和相速度之间的数学关系式获得了相速度色散曲线。此外,我们利用相速度色散曲线完成了上述方法的反演,并获得了预测的煤层厚度。通过比较采煤工作面的地质草图,我们发现预测的煤层厚度与实际厚度具有很好的一致性。总体而言,采用创造性地利用完整的频散曲线的通道波反演方法可以获得煤及其周围岩石的剪切波速度,而分析突变波的突变速度的深度可以准确地获得煤层的厚度。因此,我们的研究证明了这种反演方法在模拟实验和实际检测中都是可行的。

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