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Variable grid-size and time-step finite difference method for seismic forward modeling and reverse-time migration.

机译:用于地震正演和逆时偏移的可变网格大小和时步有限差分方法。

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摘要

A new variable grid-size and time-step finite-difference (FD) method is developed and applied to three different geophysical problems: simulation of tube waves in boreholes, three-dimensional (3-D) ground-motion simulation in sedimentary basin models, and reverse-time migration of multicomponent data. Unlike the conventional FD method, which uses a fixed grid-size and time-step for the entire model region, spatially variable grid-sizes and time-steps are used to achieve the optimal computational efficiency. For tube wave simulations, a fine grid-spacing is used for simulation inside the borehole region, while a coarse grid is used in the exterior region. While the stability condition requires a very fine time step for the fine grid, a variable time-step method provides coarse time steps for simulation in the coarse grid. Variable grid-size and time-step changes are used to achieve both accuracy and efficiency in the simulations.; Numerical tests are performed for the Bayou Choctaw salt-flank model with different borehole models. The results show the important borehole effects on the seismic wavefield for a realistic source bandwidth. The combination of variable grid-size and time-step methods reduces computational costs by several orders of magnitude for the borehole models.; Viscoelastic 3-D simulations are performed for a three-layer Salt Lake basin model. The near-surface unconsolidated layer is modeled with a fine grid, and the deep part of the model is modeled by a coarse grid. Simulation results show that the 3-D basin features and the shallow layer significantly affect the amplitude and duration time of the ground motion. In the elastic case, the approximation by 2-D modeling is insufficient to simulate the 3-D ground motion response. A basin model without a shallow low-velocity layer underestimates the ground motion duration and cumulative kinetic energy by 50% or more. The simulation of a Bingham Mine blast suggests that a lower S-velocity should be used to get a good match between numerical results and observed field data.; For ocean-bottom or land survey data associated with a low shear-velocity unconsolidated layer near the geophone locations, the variable grid FD method can be used to extrapolate wavefields using a fine grid for the shallow part and a coarse grid for the deep part. It is found that a staggered-grid reverse-time migration scheme can image both primary and multiple energy to their correct reflection positions by using both pressure and particle-velocity data. This is a new result in that migration can now be used to simultaneously image both primary and receiver-side pegleg reflections. The new variable time-step method can be used for the staggered-grid FD scheme and provides optimal computational savings. The combination of variable grid-size and time-step methods speeds up the reverse-time migration by more than ten times for the multicomponent data set in this thesis, compared to a standard reverse-time migration method.
机译:开发了一种新的可变网格大小和时步有限差分(FD)方法,并将其应用于三种不同的地球物理问题:钻孔中的管波模拟,沉积盆地模型中的三维(3-D)地震动模拟,以及多组件数据的反向迁移。与常规FD方法不同,该方法对整个模型区域使用固定的网格大小和时间步长,而使用空间可变的网格大小和时间步长来实现最佳计算效率。对于管波模拟,在井眼区域内部使用细网格间距进行模拟,而在外部区域使用粗网格。虽然稳定性条件要求精细网格的时间步长非常好,但是可变时间步长方法为粗糙网格中的仿真提供了粗糙时间步长。可变的网格大小和时间步长变化可在仿真中同时实现准确性和效率。对具有不同井眼模型的Bayou Choctaw盐翼面模型进行了数值测试。结果表明,对于真实的源带宽,井眼对地震波场具有重要影响。可变网格大小和时间步长方法的组合将钻孔模型的计算成本降低了几个数量级。对三层盐湖盆地模型进行了粘弹性3-D模拟。用细网格对近地表非固结层进行建模,而用粗网格对模型的较深部分进行建模。仿真结果表明,3-D盆地特征和浅层显着影响地震动的振幅和持续时间。在弹性情况下,通过2-D建模进行逼近不足以模拟3-D地面运动响应。没有浅层低速层的盆地模型低估了地面运动持续时间和累积动能50%或更多。 Bingham矿山爆炸的模拟表明,应使用较低的S速度来使数值结果与实测数据之间达到良好的匹配。对于与地震检波器位置附近的低剪切速度未固结层相关的海底或陆地调查数据,可使用可变网格FD方法外推波场,其中浅层细网格和深层粗网格。发现交错网格逆时偏移方案可以通过使用压力和粒子速度数据将主能量和多重能量成像到其正确的反射位置。这是一个新的结果,因为现在可以使用迁移来同时对主边和接收方的桩柱反射进行成像。新的可变时间步长方法可用于交错网格FD方案并提供最佳的计算节省。与标准逆时偏移方法相比,可变网格大小和时间步长方法的组合使本文中的多组分数据集的逆时偏移速度提高了十倍以上。

著录项

  • 作者

    Wang, Yue.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 79 p.
  • 总页数 79
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

  • 入库时间 2022-08-17 11:47:32

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