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Articles

Divergence of tipper vector imaging for ground–airborne frequency-domain electromagnetic method with orthogonal sources

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Pages 316-329 | Received 21 Oct 2019, Accepted 09 Dec 2019, Published online: 18 Dec 2019

References

  • Kang L, Liu L, Liu C, et al. Forward modeling and analyzing for frequency domain semi-airborne EM method. Proceedings of International Workshop and Gravity, Electrical & Magnetic Methods and their Applications; 2015 Apr 19–22; Chenghu, China.
  • Zhou H, Lin J, Liu C, et al. Interaction between two adjacent grounded sources in frequency domain semi-airborne electromagnetic survey. Rev Sci Instrum. 2016;87(3):034503. doi: 10.1063/1.4943221
  • Nittinger C, Cherevatova M, Becken M, et al. A novel semi-airborne EM system for mineral exploration – first results from combined fluxgate and induction coil data. Proceedings of Second European Airborne Electromagnetics Conference; 2017 Sep 3–7; Malmö, Sweden.
  • Lin J, Kang L, Liu C, et al. The frequency-domain airborne electromagnetic method with a grounded electrical source. Geophysics. 2019;84(4):E269–E280. doi: 10.1190/geo2017-0777.1
  • Gao L, Yu S, Zhou H, et al. Depth-focused waveform based on SHEPWM method for ground-airborne frequency-domain electromagnetic survey. IEEE J Sel Top Appl Earth Obs Remote Sens. 2019;12(6):1981–1990. doi: 10.1109/JSTARS.2019.2910541
  • Thomson S, Fountain D, Watts T, editors. Airborne geophysics; evolution and revolution. Proceedings of Exploration 07; 5th International Conference on Mineral Exploration; 2007 Sep 9–12; Toronto (ON), Canada.
  • Spies BR, Eggers DE. The use and misuse of apparent resistivity in electromagnetic methods. Geophysics. 1986;51(7):1462–1471. doi: 10.1190/1.1442194
  • Qin SQ, Wang Y, Tai HM, et al. TEM apparent resistivity imaging for grounding grid detection using artificial neural network. IET Gener Transm Dis. 2019;13(17):3932–3940. doi: 10.1049/iet-gtd.2018.6450
  • Liang Z, Tian B, Zhang L. Research on apparent resistivity imaging of transient electromagnetic method for oil and gas pipelines based on GA-BP neural network. Math Probl Eng. 2019: 6469089.
  • Hou DY, Xue GQ, Zhou NN, et al. Comparison between different apparent resistivity definitions of CSAMT. J Environ Eng Geoph. 2019;24(1):119–127.
  • Pedersen LB, Qian W, Dynesius L, et al. An airborne tensor VLF system. From concept to realization. Geophys Prospect. 1994;42(8):863–883. doi: 10.1111/j.1365-2478.1994.tb00246.x
  • Pedersen LB. Tensor VLF measurements: our first experiences. Explor Geoph. 1998;29(2):52–57. doi: 10.1071/EG998052
  • Lo B, Zang M. Numerical modeling of Z-TEM (airborne AFMAG) responses to guide exploration strategies. SEG Technical Program Expanded Abstracts 2008: 1098–1102.
  • Legault JM. Airborne electromagnetic systems–state of the art and future directions. CSEG Recorder. 2015;40(06):38–48.
  • Pedersen LB, Oskooi B. Airborne VLF measurements and variations of ground conductivity: A tutorial. Surv Geophys. 2004;25(2):151–181. doi: 10.1023/B:GEOP.0000028173.16347.80
  • Abtahi SM, Pedersen LB, Kamm J, et al. Extracting geoelectrical maps from vintage very-low-frequency airborne data, tipper inversion, and interpretation: A case study from northern Sweden. Geophysics. 2016;81(5):B135–B147. doi: 10.1190/geo2015-0296.1
  • Holtham E, Oldenburg DW. Three-dimensional inversion of ZTEM data. Geophys J Int. 2010;182(1):168–182.
  • Zhou H, Yao Y, Liu C, et al. Feasibility of signal enhancement with multiple grounded-wire sources for a frequency-domain electromagnetic survey. Geophys Prospect. 2018;66(4):818–832. doi: 10.1111/1365-2478.12596
  • Ward SH, Hohmann GW. Electromagnetic theory for geophysical applications. In: Nabighian MN, editor. Electromagnetic methods in applied geophysics: volume 1, theory. Tulsa, OK, USA: Society of Exploration Geophysicists; 1987. p. 130–311.
  • Li X, Pedersen LB. Controlled source tensor magnetotellurics. Geophysics. 1991;56(9):1456–1461. doi: 10.1190/1.1443165
  • Butler SL, Sinha G. Forward modeling of applied geophysics methods using Comsol and comparison with analytical and laboratory analog models. Comput Geosci. 2012;42:168–176. doi: 10.1016/j.cageo.2011.08.022
  • Butler SL, Zhang Z. Forward modeling of geophysical electromagnetic methods using Comsol. Comput Geosci. 2016;87:1–10. doi: 10.1016/j.cageo.2015.11.004

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