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Influence of Seismic Source Parameters on the Excitation Wavelet in Seismic Explorations Based on Numerical Simulation

机译:基于数值模拟的地震源参数对地震勘探激发小波的影响

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Explosives are the most common seismic source in seismic explorations, whose excitation effect is closely associated with their properties, weight, buried depth, and charging constitution. This study analyzes the influence of seismic source parameters on the features of the explosion wavelet. The explosion process of the seismic source in marine carbonate is numerically simulated with the finite element software LS-DYNA. We consider three parameters, including buried depth, charge weight, and decoupling coefficient. To verify the simulation outcomes, we also carry out field observations. The appropriate buried depth of the explosive should be determined according to stratum lithology. As the charge weight increases, low-frequency energy of the source wavelet increases rapidly. The optimum charge weight is 16–18?kg, and the ideal charging structure is in a concentrated, short-column shape. Compared with the buried depth and charge weight, the decoupling coefficient shows more noticeable influence on the excitation effect of the source wavelet, and the optimum coefficient lies between 2.5 and 3. The results of this study may provide reference data for designing explosion parameters in field seismic explorations.
机译:爆炸物是地震探索中最常见的地震源,其激发效果与其性质,重量,埋地深度和充电构成密切相关。本研究分析了地震源参数对爆炸小波特征的影响。用有限元软件LS-DYNA进行数值模拟海洋碳酸盐中抗震源的爆炸过程。我们考虑三个参数,包括掩埋深度,电荷重量和去耦系数。为了验证模拟结果,我们还执行现场观察。应根据层岩体确定适当的埋深深度。随着电荷重量增加,源小波的低频能量迅速增加。最佳电荷重量为16-18Ωkg,并且理想的充电结构处于浓缩的短柱形状。与掩埋深度和电荷重量相比,去耦系数对源小波的激发效果显示出更明显的影响,并且最佳系数位于2.5和3之间。该研究的结果可以提供用于在现场设计爆炸参数的参考数据地震探索。

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