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Three-Dimensional Controlled-Source Electromagnetic Modeling Using Octree-Based Spectral Element Method
DOI:10.1109/LGRS.2025.3606934.png)
摘要
En 中文
The controlled-source electromagnetic (CSEM) method is an important geophysical tool for sensing and studying subsurface conductivity structures. Advanced forward modeling techniques are crucial for the inversion and imaging of CSEM data. In this letter, we develop an accurate and efficient 3-D forward modeling algorithm for CSEM problems, combining spectral element method (SEM) and octree meshes. The SEM based on high-order basis functions can provide accurate CSEM responses, and the octree meshes enable local refinement, allowing for the discretization of models with fewer elements compared to the structured hexahedral meshes used in conventional SEM, while also providing the capability to handle complex models. Two synthetic examples are presented to verify the accuracy and efficiency of the algorithm. The utility of the algorithm is verified by a realistic model with complex geometry.
Keyword:
Octrees
Numerical analysis
Finite element analysis
Mathematical models
Accuracy
Faces
Electric fields
Geology
Three-dimensional displays
Conductivity
Controlled-source electromagnetic (CSEM) method
forward modeling
octree meshes
spectral element method (SEM)
期刊
I
IF:
4.4
论文数:
629
被引数:
0
机构
引用论文
Integral equation method for 3D modeling of electromagnetic fields in complex structures with inhomogeneous background conductivity
GEOPHYSICS
IF3.2
Robust and scalable 3-D geo-electromagnetic modelling approach using the finite element method使用有限元方法的鲁棒且可扩展的3-D地质电磁建模方法
3D finite-element forward modeling of electromagnetic data using vector and scalar potentials and unstructured grids
GEOPHYSICS
IF3.2

