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Waveform Tomography Strategies for Imaging Attenuation Structure with Cross-hole Data

机译:具有交叉孔数据的成像衰减结构的波形断层扫描策略

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Waveform Tomography, when implemented in the frequency-domain, potentially yields images of the instrinsic attenuation from seismic waveform data. The attenuation (or its inverse, the seismic Q value) is strongly related to useful geological variables such as rheology, fluid flow, pore fluid content and fractures. Since phase and amplitude anomalies in recorded data are also caused by velocity structure (due to geometrical and scattering effects), it is critical to assess inversion strategies as to their ability to resolve these effects. In this study, frequency domain Waveform Tomography was implemented with the subspace- search method, and evaluated with synthetic tests. We compared two sets of strategies: first, velocity and attenuation models were updated jointly at each iteration ( simultaneous inversion ). In a second test, ( sequential inversion ), a velocity model alone was first inverted followed by simultaneous inversion. While the predicted waveforms from both strategies agreed with the observed data, only the sequential inversion strategy imaged attenuation structure well in the presence of small-scale velocity heterogeneities. This highlights the strong dependence of attenuation imaging on the quality of the velocity model.
机译:在频域实现时,波形断层扫描潜在地产生从地震波形数据的Instrysic衰减的图像。衰减(或其逆,地震Q值)与有用的地质变量强烈相关,例如流变,流体流动,孔隙含量和裂缝。由于记录数据中的相位和幅度异常也是由速度结构(由于几何和散射效应)引起的,因此评估其解决这些效果的能力的反转策略至关重要。在本研究中,使用子空间搜索方法实现频域波形断层扫描,并使用合成测试进行评估。我们比较了两组策略:首先,在每次迭代(同时反转)时联合更新速度和衰减模型。在第二个测试中(顺序反转),首先将单独的速度模型倒置,然后同时反转。虽然来自两个策略的预测波形与观察到的数据同意,但是在存在小规模速度异质性的情况下,只有顺序反转策略成像衰减结构。这突出了衰减成像对速度模型质量的强烈依赖性。

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