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Efficient 3D frequency-domain full-waveform inversion of ocean-bottom cable data with sparse block low-rank direct solver: a real data case study from the North Sea

机译:稀疏块低秩直接求解器对海底电缆数据进行高效的3D频域全波形反演:来自北海的真实数据案例研究

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摘要

We present an application of 3D frequency-domain full waveform inversion (FWI) on ocean-bottom cable data from the North Sea. Frequency-domain seismic modeling is performed in the visco-acoustic VTI approximation with a sparse direct solver based on the multifrontal method. The computational cost of the multifrontal LU factorization is efficiently reduced with a block-low rank (BLR) approximation of the dense frontal matrices. A multiscale frequency-domain FWI is applied by successive inversions of 11 discrete frequencies in the 3.5Hz-10Hz frequency band. The velocity model built by FWI reveals short-scale features such as channels, scrapes left by drifting icebergs on the paleo-seafloor, fractures and deep reflectors below the reservoir level, although the presence of gas in the overburden. The quality of the FWI results is controlled by time-domain modeling and source wavelet estimation. Next step is the application of multi-parameter FWI with second-order optimization algorithms, which can be efficiently implemented with our frequency-domain modeling engine.
机译:我们介绍了3D频域全波形反演(FWI)在来自北海的海底电缆数据上的应用。基于稀疏直接求解器,基于多前沿方法,在粘声VTI近似中进行频域地震建模。利用密集的额叶矩阵的块低秩(BLR)逼近,可以有效降低多额LU分解的计算成本。通过连续倒置3.5Hz-10Hz频带中的11个离散频率来应用多尺度频域FWI。由FWI建立的速度模型揭示了短尺度的特征,例如通道,古海底冰山漂移的冰山留下的碎屑,储层水平以下的裂缝和深层反射器,尽管上覆岩层中存在天然气。 FWI结果的质量由时域建模和源小波估计控制。下一步是将具有二阶优化算法的多参数FWI应用到应用程序,该算法可以通过我们的频域建模引擎有效地实现。

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