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首页> 外文期刊>Acta Geophysica >Thin interbed AVA inversion based on a fast algorithm for reflectivity
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Thin interbed AVA inversion based on a fast algorithm for reflectivity

机译:基于快速算法的反射率薄的AVA反转

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Zoeppritz equations form the theoretical basis of most existing amplitude variation with incident angle (AVA) inversion methods. Assuming that only primary reflections exist, that is, the multiples are fully suppressed and the transmission loss and geometric spreading are completely compensated for, Zoeppritz equations can be used to solve for the elastic parameters of strata effectively. However, for thin interbeds, conventional seismic data processing technologies cannot suppress the internal multiples effectively, nor can they compensate for the transmission loss accurately. Therefore, AVA inversion methods based on Zoeppritz equations or their approximations are not applicable to thin interbeds. In this study, we propose a prestack AVA inversion method based on a fast algorithm for reflectivity. The fast reflectivity method can compute the full-wave responses, including the reflection, transmission, mode conversion, and internal multiples, which is beneficial to the seismic inversion of thin interbeds. A further advantage of the fast reflectivity method is that the partial derivatives of the reflection coefficient with respect to the elastic parameters can be expressed as analytical solutions. Based on the Gauss Newton method, we construct the objective function and model-updating formula considering sparse constraint, where the Jacobian matrix takes the form of an analytical solution, which can significantly accelerate the inversion convergence. We validate our inversion method using numerical examples and field seismic data. The inversion results demonstrate that the fast reflectivity-based inversion method is more effective for thin interbed models in which the wave-propagation effects, such as interval multiples, are difficult to eliminate.
机译:Zoeppritz方程形成了具有入射角(AVA)反转方法的大多数现有幅度变化的理论基础。假设仅存在初级反射,即,倍数完全抑制并且完全补偿传输损耗和几何扩展,可以使用Zoeppritz方程来有效地解决地层的弹性参数。然而,对于薄的Interbeds,传统的地震数据处理技术不能有效地抑制内部倍数,也不能准确地补偿传输损耗。因此,基于Zoeppritz方程或其近似的AVA反转方法不适用于薄的互补。在这项研究中,我们提出了一种基于快速算法的预先绘制AVA反转方法。快速反射方法可以计算全波响应,包括反射,传输,模式转换和内部倍数,这有利于薄嵌入的抗震反演。快速反射方法的另一个优点是反射系数相对于弹性参数的部分衍生物可以表示为分析溶液。基于Gauss Newton方法,我们构建了考虑稀疏约束的目标函数和模型更新公式,其中Jacobian矩阵采用分析解决方案的形式,这可以显着加速反演收敛。我们使用数值示例和现场地震数据验证我们的反转方法。反转结果表明,基于快速的反射率的反转方法对于薄的诸如间隔倍数的波形传播效应(例如间隔倍数)更有效。

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