chebyshev expansion
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Geophysics ◽  
2021 ◽  
pp. 1-42
Author(s):  
Hanjie Song ◽  
Jinhai Zhang ◽  
Yongliao Zou

The Fourier method for one-way wave propagation is efficient, but potentially inaccurate in complex media. The implicit finite-difference method can handle arbitrarily complex media, but can be inefficient in 3D and has limited dip bandwidth. We proposed a new Fourier method based on Chebyshev expansion of the second kind. Both theoretical analyses and numerical experiments show that the proposed method is comprehensively superior to a similar method based on Chebyshev expansion of the first kind in terms of balanced amplitude and error tolerance. Within the dip bandwidth from 0 to 65°, the fourth-order form of our method has an error tolerance of 2%, which is about one-third that of Chebyshev expansion of the first kind. Our method is also superior to the implicit finite-difference method in several important aspects: effective bandwidth, computational efficiency, numerical dispersion and two-way splitting error. It can be easily extended from 2D to 3D compared with the finite-difference method and from low orders to high orders compared with the optimized Chebyshev-Fourier method. The proposed method shows better imaging results of the SEG/EAGE model by providing a well-focused salt dome, flank and bottom as well as the detailed structures beneath the salt body, compared with the implicit finite-difference method and Chebyshev expansion of the first kind; meanwhile, our method has less imaging artifacts since it can better position the reflectors.


2021 ◽  
Vol 104 (20) ◽  
Author(s):  
Douglas Hendry ◽  
Hongwei Chen ◽  
Phillip Weinberg ◽  
Adrian E. Feiguin

2016 ◽  
Vol 120 (19) ◽  
pp. 3270-3277 ◽  
Author(s):  
Bogdan Popescu ◽  
Hasan Rahman ◽  
Ulrich Kleinekathöfer

2016 ◽  
Vol 1078 ◽  
pp. 104-112 ◽  
Author(s):  
Lidice Cruz-Rodríguez ◽  
Jean Christophe Tremblay ◽  
Aliezer Martínez-Mesa ◽  
Llinersy Uranga-Piña

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