Zobrazeno 1 - 10
of 14
pro vyhledávání: '"Daniel E. Revelo"'
Autor:
null Rodrigo S. Santos, null Daniel E. Revelo, null Reynam C. Pestana, null Marcelo S. Souza, null Victor Koehne, null Diego F. Barrera, null Jonathas Maciel
Publikováno v:
JOURNAL OF BIOENGINEERING, TECHNOLOGIES AND HEALTH. 6:17-23
Seismic reflection data can be used to generate high-resolution in-depth images capable of facilitating, with high precision, the correct positioning of wells in hydrocarbon exploration and production. However, images produced by migrating seismic da
Autor:
Victor Koehne, Marcelo S. Souza, Daniel E. Revelo, Reynam C. Pestana, Rodrigo S. Santos, Diego Barrera, Anderson Marcos da Silva
Publikováno v:
GEOPHYSICS. 86:WC105-WC116
Images produced by migration of seismic data related to complex geology are often contaminated by artifacts due to the presence of internal multiple reflections. These reflections are created when the seismic wave is reflected more than once in a sou
Autor:
Daniel E. Revelo, Reynam C. Pestana
Publikováno v:
GEOPHYSICS. 84:S341-S353
The separation of up- and downgoing wavefields is an important technique in the processing of multicomponent recorded data, propagating wavefields, and reverse time migration (RTM). Most of the previous methods for separating up/down propagating wave
Autor:
Rodrigo S. Santos, Marcelo S. Souza, Daniel E. Revelo, Reynam C. Pestana, Diego F. Barrera, Victor Koehne
Publikováno v:
Proceeding of the 17th International Congress of the Brazilian Geophysical.
Publikováno v:
SEG Technical Program Expanded Abstracts 2020.
Publikováno v:
EAGE 2020 Annual Conference & Exhibition Online.
Summary In this work, we illustrate a practical application of the use of Fluidfft, a newly developed common API (C++ and Python) for performing Fast Fourier Transforms (FFT) with different FFT libraries. Fluidfft is an open-source software aimed at
Publikováno v:
Blucher Engineering Proceedings.
Autor:
Daniel E. Revelo, Reynam C. Pestana
Publikováno v:
GEOPHYSICS. 81:S359-S366
We have developed a new method for solving the acoustic full-wave equation, which we call the one-step wave extrapolation (OSE) matrix method. In our method, the wave equation is redefined by introducing a complex (analytic) wavefield and reformulati
Publikováno v:
Proceedings of the VIII Simpósio Brasileiro e Geofísica.
Publikováno v:
Proceedings of the VIII Simpósio Brasileiro e Geofísica.