Elastic full-waveform inversion based on the double-cross-shaped discrete flux-corrected transport

IF 1.8 3区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS
Jinli Li, Jianggui Zhu, Yingming Qu, Zhenjie Yang, Zhenchun Li
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引用次数: 0

Abstract

Multi-parameter elastic full-waveform inversion is a technique that utilizes both P- and S-waves of observed seismic data to produce high-resolution velocity and density models with accurate amplitude information by minimizing the discrepancy between the predicted and observed multi-component data. However, due to the nonlinear nature of the multi-parameter inverse problem, elastic full-waveform inversion is prone to local minima and ‘cycle-skipping’. To overcome these challenges, this paper proposes an elastic full-waveform inversion method that incorporates a double-cross-shaped discrete flux-corrected transport. This method additionally introduces diffusion fluxes in two diagonal directions, which helps to capture low-frequency information in the observed seismic data and maintain forward modelling stability. Multi-scale inversion is achieved by gradually decreasing the diffusion flux correction parameter. Numerical experiments on both two typical models and a field data example demonstrate the effectiveness of the proposed elastic full-waveform inversion method based on the double-cross-shaped discrete flux-corrected transport in generating high-precision velocity and density models.

基于双十字形离散通量校正输运的弹性全波形反演
多参数弹性全波形反演是一种利用观测地震数据的P波和S波,通过最大限度地减少预测和观测多分量数据之间的差异,产生具有精确振幅信息的高分辨率速度和密度模型的技术。然而,由于多参数反演问题的非线性性质,弹性全波形反演容易出现局部极小值和“跳周期”。为了克服这些挑战,本文提出了一种弹性全波形反演方法,该方法结合了双十字形离散通量校正输运。该方法还引入了两个对角方向的扩散通量,有助于捕捉观测地震数据中的低频信息,并保持正演建模的稳定性。多尺度反演是通过逐渐减小扩散通量校正参数来实现的。在两个典型模型和一个现场数据示例上的数值实验证明了所提出的基于双十字形离散通量校正输运的弹性全波形反演方法在生成高精度速度和密度模型方面的有效性。这篇文章受版权保护。保留所有权利
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来源期刊
Geophysical Prospecting
Geophysical Prospecting 地学-地球化学与地球物理
CiteScore
4.90
自引率
11.50%
发文量
118
审稿时长
4.5 months
期刊介绍: Geophysical Prospecting publishes the best in primary research on the science of geophysics as it applies to the exploration, evaluation and extraction of earth resources. Drawing heavily on contributions from researchers in the oil and mineral exploration industries, the journal has a very practical slant. Although the journal provides a valuable forum for communication among workers in these fields, it is also ideally suited to researchers in academic geophysics.
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