DocumentCode :
1301862
Title :
Application of DCIM on Marine Controlled-Source Electromagnetic Survey
Author :
Ju, Hanji ; Fang, Guangyou ; Lin, Zhiwei ; Zhang, Feng ; Huang, Ling ; Ji, Yicai
Author_Institution :
Key Lab. of Electromagn. Radiat. & Detection Tech., Inst. of Electron., Beijing, China
Volume :
59
Issue :
12
fYear :
2011
Firstpage :
4803
Lastpage :
4810
Abstract :
The discrete complex image method (DCIM) is used to calculate the mixed-potential electric field integral equation. The DCIM has been used broadly in high-frequency domain, and now is successfully introduced to the extremely low-frequency situation of marine controlled-source electromagnetic (MCSEM) survey. The integral path in high-frequency situation does not hold valid for extremely low-frequency situation. The reason can be ascribed to the change of wave number formulas. A new integral path suitable for the extremely low-frequency situation is proposed. The appropriate ranges of the parameters used in DCIM are given. The computation is stable at these considerably large ranges. The results of a five-layer model calculated with DCIM are compared with those with the filter method and the direct integral method. The computation time with DCIM is comparable to the time with filter method. The effects of water depth, upper-sediment thickness, and oil-layer thickness are studied with DCIM. The results show that electric field varies with the change of thickness. The effects accord to the physical meanings of MCSEM survey. It is safe to conclude that the DCIM with the new path is valid in MCSEM survey.
Keywords :
electric field integral equations; electromagnetic wave propagation; DCIM; direct integral method; discrete complex image method; filter method; marine controlled-source electromagnetic survey; mixed-potential electric field integral equation; oil-layer thickness; upper-sediment thickness; water depth; Electric fields; Geophysical measurement techniques; Green´s function methods; Ground penetrating radar; Integral equations; Discrete complex image method (DCIM); extremely low frequency; integral path; marine controlled-source electromagnetic (MCSEM); mixed-potential electric field integral equation (MPIE);
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2011.2165485
Filename :
5991917
Link To Document :
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