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首页> 外文期刊>International Journal of Geophysics >Migration Using a Transversely Isotropic Medium with Symmetry Normal to the Reflector Dip
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Migration Using a Transversely Isotropic Medium with Symmetry Normal to the Reflector Dip

机译:使用垂直于反射器倾角对称的横向各向同性介质进行迁移

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A transversely isotropic (TI) model in which the tilt is constrained to be normal to the dip (DTI model) allows for simplifications in the imaging and velocity model building efforts as compared to a general TI (TTI) model. Although this model cannot be represented physically in all situations, for example, in the case of conflicting dips, it handles arbitrary reflector orientations under the assumption of symmetry axis normal to the dip. Using this assumption, we obtain efficient downward continuation algorithms compared to the general TTI ones, by utilizing the reflection features of such a model. Phase-shift migration can be easily extended to approximately handle lateral inhomogeneity using, for example, the split-step approach. This is possible because, unlike the general TTI case, the DTI model reduces to VTI for zero dip. These features enable a process in which we can extract velocity information by including tools that expose inaccuracies in the velocity model in the downward continuation process. We test this model on synthetic data corresponding to a general TTI medium and show its resilience.
机译:与一般的TI(TTI)模型相比,其中将倾斜度限制为垂直于倾斜(DTI模型)的横向各向同性(TI)模型可以简化成像和速度模型的构建工作。尽管此模型不能在所有情况下都以物理方式表示,例如在倾斜冲突的情况下,但它在垂直于倾斜的对称轴的假设下可以处理任意反射器方向。使用这种假设,通过利用这种模型的反射特征,与常规的TTI算法相比,我们可以获得有效的向下连续算法。使用例如分步方法,可以轻松地扩展相移迁移以大致处理横向不均匀性。这是可能的,因为与一般的TTI情况不同,DTI模型针对零倾角降低为VTI。这些功能使我们可以通过包括在向下连续过程中揭示速度模型中不准确之处的工具来提取速度信息的过程。我们在对应于一般TTI介质的合成数据上测试了该模型,并显示了其弹性。

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