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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Coupling direct inversion to common-shot image-domain velocity analysis
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Coupling direct inversion to common-shot image-domain velocity analysis

机译:耦合直接反转到共同拍摄的图像域速度分析

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Migration velocity analysis is a technique used to estimate the large-scale structure of the subsurface velocity model controlling the kinematics of wave propagation. For more stable results, recent studies have proposed to replace migration, adjoint of Born modeling, by the direct inverse of the modeling operator in the context of extended subsurface-offset domain. Following the same strategy, we have developed a two-way-wave-equation-based inversion velocity analysis (IVA) approach for the original surface-oriented shot gathers. We use the differential semblance optimization (DSO) objective function to evaluate the quality of inverted images depending on shot positions and to derive the associated gradient, an essential element to update the macromodel. We evaluate the advantages and limitations through applications of 2D synthetic data sets, first on simple models with a single-reflector embedded in various background velocities and then on the Marmousi model. The direct inverse attenuates migration smiles by compensating for geometric spreading and uneven illuminations. We slightly modified the original DSO objective function to remove spurious oscillations around interface positions in the velocity gradient. These oscillations are related to the fact that the locations of events in the image domain depend on the macromodel. We pay attention to the presence of triplicated wavefields. It appears that IVA is robust even if artifacts are observed in the seismic migrated section. The velocity gradient leads to a stable update, especially after a Gaussian smoothing over a wavelength distance. Coupling common-shot direct inversion to velocity analysis offers new possibilities for the extension to 3D in the future.
机译:迁移速度分析是一种用于估计控制波传播运动学的地下速度模型的大规模结构的技术。为了更稳定的结果,最近的研究已经提出取代迁移,伴随天生建模的迁移,通过在扩展的地下偏移域的上下文中的建模运营商的直接逆。遵循相同的策略,我们开发了一种用于原始面向面向面向射击的双向波方程的反转速度分析(IVA)方法。我们使用差分外观优化(DSO)目标函数来根据拍摄位置评估反相图像的质量,并导出相关梯度,以更新Macromodel的基本元素。我们通过2D合成数据集的应用来评估优点和限制,首先是在具有嵌入各种背景速度的单反反射器的简单模型,然后在Marmousi模型上进行。通过补偿几何扩展和不均匀的照明,直接逆衰减迁移微笑。我们略微修改了原始DSO目标函数,以除去速度梯度的接口位置周围的杂散振荡。这些振荡与图像域中事件的位置取决于Macromodel的事实有关。我们注意到存在三重波场的存在。即使在地震迁移部分中观察到伪像,似乎IVA也是坚固的。速度梯度导致稳定的更新,尤其是在高斯平滑在波长距离之后。对速度分析的耦合共同射击直接反转为将来的扩展提供了新的可能性。

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