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Improved treatments for evaluating horizontal magnetic components through the 3-D FDM in E-polarization induction problems

Improved treatments for evaluating horizontal magnetic components through the 3-D FDM in E-polarization induction problems
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摘要 To improve the accuracy of the numerical evaluation through the 3-D finite difference method, the surface boundary conditions are added to modify the old program. The author has tested the new program by making calculations for the model constructed by Wanamaker, et al (1984). The comparison between the numerical results obtained from this paper and those by Wannamaker, et al (1984) indicates that a pronounced improvement is realized in the evaluation of the horizontal magnetic components. Moreover, better calculations for the vertical magnetic components are also obtainable by using the new program. To improve the accuracy of the numerical evaluation through the 3-D finite difference method, the surface boundary conditions are added to modify the old program. The author has tested the new program by making calculations for the model constructed by Wanamaker, et al (1984). The comparison between the numerical results obtained from this paper and those by Wannamaker, et al (1984) indicates that a pronounced improvement is realized in the evaluation of the horizontal magnetic components. Moreover, better calculations for the vertical magnetic components are also obtainable by using the new program.
机构地区 Flat
出处 《Acta Seismologica Sinica(English Edition)》 CSCD 2002年第5期519-525,共7页
关键词 numerical modeling 3-D finite difference method surface boundary conditions numerical modeling 3-D finite difference method surface boundary conditions
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