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Shot- and angle-domain wave-equation traveltime inversion of reflection data: Synthetic and field data examples

机译:反射数据的散域和角域波方程行进时间反演:合成数据和野外数据示例

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摘要

Full-waveform inversion requires the accurate simulation of the dynamics and kinematics of wave propagation. This is difficult in practice because the amplitudes cannot be precisely reproduced for seismic waves in the earth. Wave-equation reflection traveltime tomography (WT) is proposed to avoid this problem by directly inverting the reflection-traveltime residuals without the use of the high-frequency approximation. We inverted synthetic traces and recorded seismic data for the velocity model by WT. Our results demonstrated that the wave-equation solution overcame the high-frequency approximation of ray-based tomography, was largely insensitive to the accurate modeling of amplitudes, and mitigated problems with ambiguous event identification. The synthetic examples illustrated the effectiveness of the WT method in providing a highly resolved estimate of the velocity model. A real data example from the Gulf of Mexico demonstrated these benefits of WT, but also found the limitations in traveltime residual estimation for complex models.
机译:全波形反演需要精确模拟波传播的动力学和运动学。这在实践中是困难的,因为不能精确地再现地球中地震波的振幅。为了避免此问题,提出了波方程反射行进时间层析成像(WT),该方法无需使用高频近似就可以直接将反射行进时间残差求逆。我们通过WT反转了合成轨迹并记录了速度模型的地震数据。我们的结果表明,波动方程解决方案克服了基于射线层析成像的高频近似,对幅度的精确建模不敏感,并且减轻了事件识别不明确的问题。综合示例说明了WT方法在提供速度模型的高度解析估计中的有效性。来自墨西哥湾的真实数据示例证明了WT的这些好处,但同时也发现了复杂模型在旅行时间残差估计中的局限性。

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