A hybrid spectral element-infinite element approach for 3D controlled-source electromagnetic modeling

被引:5
|
作者
Xu, Jintong [1 ]
Tang, Jingtian [1 ,2 ,3 ,4 ]
Xiao, Xiao [1 ,2 ,3 ,4 ]
机构
[1] Cent South Univ, Sch Geosci & Info Phys, Changsha 410083, Hunan, Peoples R China
[2] Cent South Univ, Sch Geosci & Infophys, Key Lab Metallogen Predict Nonferrous Met & Geol E, Minist Educ, Changsha 410083, Peoples R China
[3] Hunan Key Lab Nonferrous Resources & Geol Hazards, Changsha 410083, Peoples R China
[4] Minist Nat Resources, Tech Innovat Ctr Coverage Area Deep Resources Expl, Hefei 230001, Peoples R China
关键词
Spectral element-infinite element; CSEM; 3D modeling; FINITE-VOLUME; DOMAIN-DECOMPOSITION; WAVE-PROPAGATION; AIRBORNE EM; SIMULATIONS; RESISTIVITY; INDUCTION; BOUNDARY; FIELDS; ORDER;
D O I
10.1016/j.jappgeo.2022.104619
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
In this study, we developed a novel hybrid approach for 3D controlled-source electromagnetic (CSEM) forward modeling. The hybrid approach combines vector spectral element method (SEM) with scalar infinite element method (IFEM) by using infinite element instead of traditional truncated boundary. Based on Maxwell's equations, the curl-curl control equation satisfied by secondary electric field is derived. The boundary value problem in differential form is transformed into integral weak form by using Galerkin weighted residual method. Then the global problem is discretized by element subdivision and high-order orthogonal basis function interpolation. The computational domain is discretized using hexahedral spectral elements and a single layer of infinite elements is added outside the domain. The SEM with high-order Gauss-Lobatto-Legendre (GLL) vector basis functions is used to represent the interior electric field, and the IFEM with high-order Gauss-Lobatto-Legendre (GLL) scalar basis functions is uesd as a boundary condition. Finally, the global numerical solution is obtained by solving largescale linear equations. The layered model verifies the accuracy and correctness of the approach, and the 3D model verifies the efficiency and numerical stability of the approach. Numerical experiments show that the hybrid SEM-IFEM approach developed in this study can reach similar accuracy to the conventional spectral element method, but the computational domain required can be much smaller, and the corresponding CPU time and memory requirement are greatly reduced, namely, the high precision three-dimensional electromagnetic response can be obtained with less computational resource consumption.
引用
收藏
页数:12
相关论文
共 50 条
  • [22] Finite-Element Scheme With Total-Field for 3-D Marine Controlled-Source Electromagnetic Modeling With Bathymetry and Multisources
    Ye, Yixin
    Jiang, Fenyong
    Yang, Haiyan
    Wu, Chaofeng
    [J]. IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 2024, 62
  • [23] 2D marine controlled-source electromagnetic modeling: Part 1 - An adaptive finite-element algorithm
    Li, Yuguo
    Key, Kerry
    [J]. GEOPHYSICS, 2007, 72 (02) : WA51 - WA62
  • [24] Application of 3D marine controlled-source electromagnetic finite-element forward modeling to hydrocarbon exploration in the Flemish Pass Basin offshore Newfoundland, Canada
    Dunham, Michael W.
    Ansari, SeyedMasoud
    Farquharson, Colin G.
    [J]. GEOPHYSICS, 2018, 83 (02) : WB33 - WB49
  • [25] 3D CSAMT infinite-element forward modeling based on equivalent source
    Zhang L.
    Hu H.-L.
    Tang J.
    Xiao W.
    Xiao X.
    Yuan Y.
    [J]. Shiyou Diqiu Wuli Kantan/Oil Geophysical Prospecting, 2021, 56 (03): : 622 - 630
  • [26] Iterative electromagnetic migration for 3D inversion of marine controlled-source electromagnetic data
    Zhdanov, Michael S.
    Cuma, Martin
    Wilson, Glenn A.
    Velikhov, Evgeny P.
    Black, Noel
    Gribenko, Alexander V.
    [J]. GEOPHYSICAL PROSPECTING, 2011, 59 (06) : 1101 - 1113
  • [27] Advances in 3D electromagnetic finite element modeling
    Nelson, EM
    [J]. PROCEEDINGS OF THE 1997 PARTICLE ACCELERATOR CONFERENCE, VOLS 1-3: PLENARY AND SPECIAL SESSIONS ACCELERATORS AND STORAGE RINGS, 1998, : 1837 - 1840
  • [28] Spectral element method for 3D wide field electromagnetic method forward modeling
    Xu JinTong
    Tang JingTian
    [J]. CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2022, 65 (04): : 1461 - 1471
  • [29] 3D controlled-source electromagnetic inversion in the radio-frequency band
    Smirnova, Maria
    Shlykov, Arseny
    Asghari, Shiva Fadavi
    Tezkan, Buelent
    Saraev, Alexander
    Yogeshwar, Pritam
    Smirnov, Maxim
    [J]. GEOPHYSICS, 2023, 88 (01) : E1 - E12
  • [30] Fast forward modeling of the 3D land controlled-source electromagnetic method based on model reduction
    Zhang JiFeng
    Liu JiRen
    Feng Bing
    Zhang YiAn
    [J]. CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2020, 63 (09): : 3520 - 3533