From the modeling operator, we derive its adjoint operator which is used to migrate 3-D poststack data. It forms a theoretical foundation for the reverse-time migration. The method would be helpful to get a new way to improve the result of conventional reverse-time migration. The inference of the adjoint operator is adaptive to other modeling method including both poststak modeling and prestack modeling. In this paper, we focus on poststack migration for 3-D problems. And the Fourier method for time stepping is discussed. Furthermore, we adopt the numerical software FFTW to perform Fourier transformation, with which the efficiency of the algorithm is greatly improved.
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Geosphere Environmental Technology Corp., 1-20-8 Nihonbashi, Chuou-ku, Tokyo, 103-0027, JapanGeosphere Environmental Technology Corp., 1-20-8 Nihonbashi, Chuou-ku, Tokyo, 103-0027, Japan
Mori, Koji
Tada, Kazuhiro
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Geosphere Environmental Technology Corp., 1-20-8 Nihonbashi, Chuou-ku, Tokyo, 103-0027, JapanGeosphere Environmental Technology Corp., 1-20-8 Nihonbashi, Chuou-ku, Tokyo, 103-0027, Japan
Tada, Kazuhiro
Tosaka, Hiroyuki
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University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113, JapanGeosphere Environmental Technology Corp., 1-20-8 Nihonbashi, Chuou-ku, Tokyo, 103-0027, Japan
Tosaka, Hiroyuki
Vomvoris, Stratis
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National Cooperative for the Disposal of Radioactive Waste (Nagra), Hardstrasse 73, 5430 Wettingen, SwitzerlandGeosphere Environmental Technology Corp., 1-20-8 Nihonbashi, Chuou-ku, Tokyo, 103-0027, Japan
Vomvoris, Stratis
Fujiwara, Ai
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Radioactive Waste Management Funding and Research Center(RWMC), Mori Bld., 2-8-10 Toranomon, Minatoku, Tokyo, 105-0001, JapanGeosphere Environmental Technology Corp., 1-20-8 Nihonbashi, Chuou-ku, Tokyo, 103-0027, Japan
Fujiwara, Ai
Proc. 11th Int. High Lvl, Radioactive Waste Managem. Conf. IHLRWM,
1600,
(601-608):