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Numerical modeling calculation for the spatial distribution characteristics of horizontal field transfer functions

Numerical modeling calculation for the spatial distribution characteristics of horizontal field transfer functions
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摘要 Applying 3-dimension finite difference method, the distribution characteristics of horizontal field transfer functions for rectangular conductor have been computed, and the law of distribution for Re-part and Im-part has been given. The influences of source field period, the conductivity, the buried depth and the length of the conductor on the transfer functions were studied. The extrema of transfer functions appear at the center, the four corners and around the edges of conductor, and move with the edges. This feature demonstrates that around the edges are best places for transfer functions' observation. Applying 3-dimension finite difference method, the distribution characteristics of horizontal field transfer functions for rectangular conductor have been computed, and the law of distribution for Re-part and Im-part has been given. The influences of source field period, the conductivity, the buried depth and the length of the conductor on the transfer functions were studied. The extrema of transfer functions appear at the center, the four corners and around the edges of conductor, and move with the edges. This feature demonstrates that around the edges are best places for transfer functions' observation.
出处 《Acta Seismologica Sinica(English Edition)》 EI CSCD 2001年第6期676-684,共9页
基金 Chinese Joint Seismological Science Foundation.
关键词 numerical modeling 3-D finite difference method horizontal field transfer function spatial distribution characteristics numerical modeling 3-D finite difference method horizontal field transfer function spatial distribution characteristics
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