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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Robust estimation of vertical symmetry axis models via joint migration inversion: Including multiples in anisotropic parameter estimation
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Robust estimation of vertical symmetry axis models via joint migration inversion: Including multiples in anisotropic parameter estimation

机译:通过联合迁移反转估计垂直对称轴模型的鲁棒估计:包括各向异性参数估计中的倍数

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Because the earth is predominately anisotropic, the anisotropy of the medium needs to be included in seismic imaging to avoid mispositioning of reflectors and unfocused images. Deriving accurate anisotropic velocities from the seismic reflection measurements is a highly nonlinear and ambiguous process. To mitigate the nonlinearity and trade-offs between parameters, we have included anisotropy in the so-called joint migration inversion (JMI) method, in which we limit ourselves to the case of transverse isotropy with a vertical symmetry axis. The JMI method is based on strictly separating the scattering effects in the data from the propagation effects. The scattering information is encoded in the reflectivity operators, whereas the phase information is encoded in the propagation operators. This strict separation enables the method to be more robust, in that it can appropriately handle a wide range of starting models, even when the differences in traveltimes are more than a half cycle away. The method also uses internal multiples in estimating reflectivities and anisotropic velocities. Including internal multiples in inversion not only reduces the crosstalk in the final image, but it can also reduce the trade-off between the anisotropic parameters because internal multiples usually have more of an imprint of the subsurface parameters compared with primaries. The inverse problem is parameterized in terms of a reflectivity, vertical velocity, horizontal velocity, and a fixed delta value. The method is demonstrated on several synthetic models and a marine data set from the North Sea. Our results indicate that using JMI for anisotropic inversion makes the inversion robust in terms of using highly erroneous initial models. Moreover, internal multiples can contain valuable information on the subsurface parameters, which can help to reduce the trade-off between anisotropic parameters in inversion.
机译:因为地球主要是各向异性的,所以需要包括在地震成像中的各向异性,以避免对反射器和未聚焦的图像失去定位。来自地震反射测量的准确各向异性速度是一种高度非线性和含糊不清的过程。为了减轻参数之间的非线性和权衡,我们在所谓的联合迁移反演(JMI)方法中包括各向异性,其中我们将自己限制在横向同位素的情况下,具有垂直对称轴。 JMI方法基于严格地将数据中的散射效应与传播效果分开。散射信息在反射率运算符中编码,而相位信息被编码在传播运算符中。这种严格的分离使得该方法能够更加强大,因为它可以适当地处理各种启动模型,即使行驶次数的差异超过半周期。该方法还使用内部倍数来估计反射率和各向异性速度。包括反转中的内部倍数不仅减少了最终图像中的串扰,而且还可以减少各向异性参数之间的权衡,因为内部倍数通常与初选相比的地下参数的更多印记。逆问题在反射率,垂直速度,水平速度和固定的增量值方面进行参数化。该方法在几种合成模型和北海设定的海洋数据上进行了说明。我们的结果表明,使用JMI进行各向异性反演,使反转稳健在使用高度错误的初始模型方面。此外,内部倍数可以包含有关地下参数的有价值的信息,这有助于减少反转中各向异性参数之间的权衡。

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