Comparison of finite difference and pseudo-spectral methods in forward modelling based on metal ore

来源 :Global Geology | 被引量 : 0次 | 上传用户:CNHTC01
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With more applications of seismic exploration in metal ore exploration,forward modelling of seismic wave has become more important in metal ore. Finite difference method and pseudo-spectral method are two important methods of wave-field simulation. Results of previous studies show that both methods have distinct advantages and disadvantages: Finite difference method has high precision but its dispersion is serious; pseudospectral method considers both computational efficiency and precision but has less precision than finite-difference. The authors consider the complex structural characteristics of the metal ore,furthermore add random media in order to simulate the complex effects produced by metal ore for wave field. First,the study introduced the theories of random media and two forward modelling methods. Second,it compared the simulation results of two methods on fault model. Then the authors established a complex metal ore model,added random media and compared computational efficiency and precision. As a result,it is found that finite difference method is better than pseudo-spectral method in precision and boundary treatment,but the computational efficiency of pseudospectral method is slightly higher than the finite difference method. With more applications of seismic exploration in metal ore exploration, forward modeling of seismic wave has become more important in metal ore. Finite difference method and pseudo-spectral method are two important methods of wave-field simulation. Results of previous studies show that both methods have distinct advantages and disadvantages: Finite difference method has high precision but its dispersion is serious; pseudospectral method considers both computational efficiency and precision but has less precision than finite-difference. The authors consider the complex structural characteristics of the metal ore, media in order to simulate the complex effects produced by metal ore for wave field. First, the study introduced the theories of random media and two forward modeling methods. Second, it compared the simulation results of two methods on fault model. a complex metal ore model, added random media and comparable computational efficien cy and precision. As a result, it is found that finite difference method is better than pseudo-spectral method in precision and boundary treatment, but the computational efficiency of pseudospectral method is slightly higher than the finite difference method.
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