Can elastic waveform inversion benefit from inverting multicomponent data?

Q2 Earth and Planetary Sciences
Leading Edge Pub Date : 2023-03-01 DOI:10.1190/tle42030184.1
C. P. Solano, R. Plessix
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引用次数: 0

Abstract

Waveform inversion aims to retrieve high-resolution earth parameter volumes. Due to its high computational cost, acoustic approaches using low to mid seismic data frequencies are often applied in velocity model building. However, in the presence of large parameter contrasts, an elastic formulation should be preferred due to wave interferences that limit the applicability of phase- and kinematics-only approaches. The benefits of elastic waveform inversion have been demonstrated with inversion of hydrophone data in marine environments. Here, we extend the approach to inversion of the vertical geophone component. We propose a weighted cost function in the waveform inversion algorithm to jointly invert multicomponent data sets, and we compare the results to the inversion of single-component data. For this study, we use an ocean-bottom-node data set from the deepwater Gulf of Mexico around a salt dome. We show that slightly different velocity models, reverse time migration images, and angle gathers are retrieved when using hydrophone or vertical geophone data, further improving either the shallow or deeper sediments. The joint inversion combines the improvements brought by the single-component inversions. Though it doubles the cost, joint elastic waveform inversion of hydrophone and vertical geophone data can help velocity model building around salt bodies.
弹性波形反演能从反演多分量数据中获益吗?
波形反演的目的是获取高分辨率地球参数体积。由于计算成本高,使用中低频地震数据的声学方法通常用于速度模型的建立。然而,在存在大参数对比的情况下,由于波动干扰限制了相位和运动学方法的适用性,应首选弹性公式。弹性波形反演的优势已通过海洋环境中水听器数据的反演得到验证。在这里,我们将该方法扩展到垂直检波器分量的反演。我们在波形反演算法中提出了加权代价函数来联合反演多分量数据集,并将结果与单分量数据的反演结果进行了比较。在这项研究中,我们使用了墨西哥湾深水盐丘周围的海底节点数据集。我们发现,当使用水听器或垂直检波器数据时,可以获得略有不同的速度模型、逆时偏移图像和角度集,进一步改善了浅层或深层沉积物。联合反演结合了单分量反演带来的改进。虽然成本翻倍,但水听器和垂直检波器数据的联合弹性波形反演可以帮助建立盐体周围的速度模型。
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来源期刊
Leading Edge
Leading Edge Earth and Planetary Sciences-Geology
CiteScore
3.10
自引率
0.00%
发文量
180
期刊介绍: THE LEADING EDGE complements GEOPHYSICS, SEG"s peer-reviewed publication long unrivalled as the world"s most respected vehicle for dissemination of developments in exploration and development geophysics. TLE is a gateway publication, introducing new geophysical theory, instrumentation, and established practices to scientists in a wide range of geoscience disciplines. Most material is presented in a semitechnical manner that minimizes mathematical theory and emphasizes practical applications. TLE also serves as SEG"s publication venue for official society business.
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