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基于Attention-UNet网络的速度模型构建方法研究

孙德辉 王云专 王莉利

物探化探计算技术2024,Vol.46Issue(1):1-10,10.
物探化探计算技术2024,Vol.46Issue(1):1-10,10.DOI:10.3969/j.issn.1001-1749.2024.01.01

基于Attention-UNet网络的速度模型构建方法研究

Research on the construction method of speed model based on Attention-UNet network

孙德辉 1王云专 1王莉利2

作者信息

  • 1. 东北石油大学地球科学学院,大庆 163318
  • 2. 东北石油大学计算机与信息技术学院,大庆 163318
  • 折叠

摘要

Abstract

As oil and gas resources continue to be explored and developed,relatively easy-to-reach oil and gas plays are gradually being built up,and the focus of seismic exploration research has shifted to more profound and more structurally com-plex areas in the subsurface.Traditional seismic velocity modeling methods face stability,accuracy,and computational efficiency challenges.Therefore,this paper proposes a deep learning velocity modeling method based on attention to UNet networks to map seismic data to velocity models.The method obtains reflection wave data through finite-difference forward modeling.It uses the reflection wave data and the corresponding velocity model(label)pair as the input to the attention UNet network to estab-lish the mapping relationship between the seismic data and the velocity model.After network training,the velocity model is esti-mated for the newly input seismic data.Numerical results show that the method also exhibits good performance compared to conventional FWI;once the training of the attention-based UNet network model is completed,velocity modeling of subsurface structures similar to the velocity structure in the training set can be performed quickly without extensive computation,providing higher computational efficiency than conventional methods.The method has good extension value in building many velocity mod-els.

关键词

速度建模/注意力机制/UNet/全波形反演

Key words

velocity modelling/attention mechanisms/UNet/full waveform inversion

分类

地质学

引用本文复制引用

孙德辉,王云专,王莉利..基于Attention-UNet网络的速度模型构建方法研究[J].物探化探计算技术,2024,46(1):1-10,10.

基金项目

国家重点自然科学基金(41930431) (41930431)

东北石油大学引导性创新基金(2020YDL-03) (2020YDL-03)

物探化探计算技术

OACSTPCD

1001-1749

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