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Efficient Modeling and Migration in Anisotropic Media Based on Prestack Exploding Reflector Model and Effective Anisotropy

机译:基于叠前爆炸反射器模型和有效各向异性的各向异性介质高效建模与偏移

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摘要

This thesis addresses the efficiency improvement of seismic wave modeling and migration in anisotropic media. This improvement becomes crucial in practice as the process of imaging complex geological structures of the Earth's subsurface requires modeling and migration as building blocks. The challenge comes from two aspects. First, the underlying governing equations for seismic wave propagation in anisotropic media are far more complicated than that in isotropic media which demand higher computational costs to solve. Second, the usage of whole prestack seismic data still remains a burden considering its storage volume and the existing wave equation solvers. In this thesis, I develop two approaches to tackle the challenges.In the first part, I adopt the concept of prestack exploding reflector model to handle the whole prestack data and bridge the data space directly to image space in a single kernel. I formulate the extrapolation operator in a two-way fashion to remove he restriction on directions that waves propagate. I also develop a generic method for phase velocity evaluation within anisotropic media used in this extrapolation kernel. The proposed method provides a tool for generating prestack images without wavefield cross correlations.In the second part of this thesis, I approximate the anisotropic models using effective isotropic models. The wave phenomena in these effective models match that in anisotropic models both kinematically and dynamically. I obtain the effective models through equating eikonal equations and transport equations of anisotropic and isotropic models, thereby in the high frequency asymptotic approximation sense. The wavefields extrapolation costs are thus reduced using isotropic wave equation solvers while the anisotropic effects are maintained through this approach. I benchmark the two proposed methods using synthetic datasets. Tests on anisotropic Marmousi model and anisotropic BP2007 model demonstrate the applicability of my approaches.
机译:本文探讨了各向异性介质中地震波建模和偏移效率的提高。在实践中,这一改进至关重要,因为对地球地下复杂地质结构进行成像的过程需要以建模和迁移为基础。挑战来自两个方面。首先,各向异性介质中地震波传播的基本控制方程要比各向异性介质中的控制方程复杂得多,而各向异性介质需要更高的计算成本才能解决。其次,考虑到其存储量和现有的波动方程求解器,整个叠前地震数据的使用仍然是一个负担。本论文中,我提出了两种方法来应对这些挑战。第一部分,我采用叠前爆炸反射器模型的概念来处理整个叠前数据并将数据空间直接桥接到单个内核中的图像空间。我以两种方式构造外推算子,以消除他对波传播方向的限制。我还开发了一种用于此外推内核的各向异性介质中相速度评估的通用方法。该方法为生成没有波场互相关的叠前图像提供了一种工具。本文的第二部分,利用有效的各向同性模型对各向异性模型进行了近似。这些有效模型中的波动现象在运动学和动力学上均与各向异性模型中的波动现象相匹配。通过将各向异性和各向同性模型的本征方程和输运方程等效,从而获得有效模型,从而在高频渐近逼近意义上。因此,使用各向同性波动方程求解器可以降低波场外推成本,同时通过这种方法可以保持各向异性效果。我使用综合数据集对这两种建议的方法进行了基准测试。对各向异性Marmousi模型和各向异性BP2007模型的测试证明了我的方法的适用性。

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    Wang Hui;

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  • 年度 2014
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