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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Three-dimensional frequency-domain full-waveform inversion with an iterative solver
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Three-dimensional frequency-domain full-waveform inversion with an iterative solver

机译:带有迭代求解器的三维频域全波形反演

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摘要

With the acquisition of wide-aperture seismic data sets,full-waveform inversion is an attractive method for deriving velocity models. Three-dimensional implementations require an efficient solver for the wave equation. Computing 3D time-harmonic responses with a frequency-domain solver is complicated because a large linear system with negative and positive eigenvalues must be solved. Time-domain schemes are an alternative. Nevertheless, existing frequencydomain iterative solvers with an efficient preconditioner are a viable option when full-waveform inversion is formulated in the frequency domain. An iterative solver with a multigrid preconditioner is competitive because of a high-order spatial discretization. Numerical examples illustrated the efficiency of the iterative solvers. Three dimensional full-waveform inversion was then studied in the context of deep-water oceanbottom seismometer acquisition. Three dimensional synthetic data inversion results showed the behavior of full-waveform inversion with respect to the initial model and the minimum frequency available in the data set. Results on a 3D real ocean-bottom seismometer data set demonstrated the relevance of full-waveform inversion, especially to image the shallow part of the model.
机译:随着大口径地震数据集的采集,全波形反演是推导速度模型的一种有吸引力的方法。三维实现需要一个有效的波动方程求解器。用频域求解器计算3D时谐响应很复杂,因为必须求解具有负和正特征值的大型线性系统。时域方案是替代方案。然而,当在频域中制定全波形反演时,具有高效前置条件的现有频域迭代求解器是一个可行的选择。带有多网格预处理器的迭代求解器由于具有高阶空间离散化而具有竞争力。数值示例说明了迭代求解器的效率。然后在深水海底地震仪采集的背景下研究了三维全波形反演。三维综合数据反演结果表明,相对于初始模型和数据集中可用的最小频率,全波形反演的行为。在3D真实海底地震仪数据集上的结果证明了全波形反演的相关性,特别是对模型的浅层成像。

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