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3-D Seismic Imaging using High-performance Parallel Direct Solver for Large-scale Finite Element Analysis

机译:使用高性能并行直接解算器进行3D地震成像的大规模有限元分析

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Estimation of oil and gas reservoirs depends on the exact analysis of 3-D seismic images. For this, various kinds of seismic imaging techniques are used to image the subsurface geological structures. We introduce the SWEET algorithm which can calculate the traveltime and amplitude for Kirchhoff migration that is one of seismic imaging techniques. The SWEET algorithm is based on finite element method, and produces very big size linear equations with a huge number of right-hand side vectors. We propose the domain-wise multifrontal solver as the optimal solution method to implement the SWEET algorithm. The SWEET algorithm is successfully implemented and parallelized using our solver and the performance and scalability are shown. We will demonstrate the ability of our solver by solving the largest problem ever solved by direct solvers, and this will result in the highest quality seismic imaging of the 3-D SEG/EAGE salt model.
机译:油气储层的估算取决于对3D地震图像的精确分析。为此,使用各种地震成像技术来成像地下地质结构。我们介绍了SWEET算法,该算法可以计算Kirchhoff偏移的传播时间和振幅,这是地震成像技术之一。 SWEET算法基于有限元方法,可生成带有大量右侧向量的超大型线性方程。我们提出了基于域的多前沿求解器作为实现SWEET算法的最佳求解方法。使用我们的求解器成功实现了SWEET算法并使其并行化,并显示了性能和可伸缩性。我们将通过解决直接求解器有史以来最大的问题来证明求解器的能力,这将使3-D SEG / EAGE盐模型获得最高质量的地震成像。

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