The goal of the dip-moveout correction (DMO) is to eliminate velocity bias when stacking. DMO processing is tested in order to account for variable dips at the Ketzin CO2 storage pilot site. In this study, 3D Squeezing DMO is applied to seismic data to study the impact of DMO on seismic imaging and to investigate if it enhances the CO2 seismic monitoring technique. We compare the data with and without DMO processing by utilizing quantitative and qualitative analysis. Our results indicate its effectiveness with applications to the 3D seismic data at the Ketzin site
Capture and geological storage of CO2 are an option to reduce greenhouse gas emissions. At Ketzin (G...
In this study, we investigated the presence of transverse isotropy at the Ketzin CO2 pilot storage s...
AbstractIn this study, we investigated the presence of transverse isotropy at the Ketzin CO2 pilot s...
AbstractThe goal of the dip-moveout correction (DMO) is to eliminate velocity bias when stacking. DM...
The Dip-moveout (DMO) correction is a process which attempts to make the finite offset data closer t...
DMO (dip-moveout) is recognized as the technique to image the steep dip events which are indiscrimin...
The Ketzin pilot site is the first European on-shore CO2 storage project site. Injection started in ...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Seismic traveltime inversion, traveltime tomography and seismic reflection techniques have been appl...
3D time-lapse seismics, also known as 4D seismics, have great potential for monitoring the migration...
The Ketzin project provides an experimental pilot test site for the geological storage of CO2. Seism...
3D seismic time-lapse surveys (“4D seismics”) are an essential tool for large scale reservoir charac...
The CO2SINK (and CO2MAN) project is the first onshore CO2 storage project in Europe. The research si...
Seismic monitoring of an injected carbon dioxide (CO2) distribution at depth is an important issue i...
Irregularly spaced seismic data have uneven distribution of trace midpoint density on the half-offse...
Capture and geological storage of CO2 are an option to reduce greenhouse gas emissions. At Ketzin (G...
In this study, we investigated the presence of transverse isotropy at the Ketzin CO2 pilot storage s...
AbstractIn this study, we investigated the presence of transverse isotropy at the Ketzin CO2 pilot s...
AbstractThe goal of the dip-moveout correction (DMO) is to eliminate velocity bias when stacking. DM...
The Dip-moveout (DMO) correction is a process which attempts to make the finite offset data closer t...
DMO (dip-moveout) is recognized as the technique to image the steep dip events which are indiscrimin...
The Ketzin pilot site is the first European on-shore CO2 storage project site. Injection started in ...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Seismic traveltime inversion, traveltime tomography and seismic reflection techniques have been appl...
3D time-lapse seismics, also known as 4D seismics, have great potential for monitoring the migration...
The Ketzin project provides an experimental pilot test site for the geological storage of CO2. Seism...
3D seismic time-lapse surveys (“4D seismics”) are an essential tool for large scale reservoir charac...
The CO2SINK (and CO2MAN) project is the first onshore CO2 storage project in Europe. The research si...
Seismic monitoring of an injected carbon dioxide (CO2) distribution at depth is an important issue i...
Irregularly spaced seismic data have uneven distribution of trace midpoint density on the half-offse...
Capture and geological storage of CO2 are an option to reduce greenhouse gas emissions. At Ketzin (G...
In this study, we investigated the presence of transverse isotropy at the Ketzin CO2 pilot storage s...
AbstractIn this study, we investigated the presence of transverse isotropy at the Ketzin CO2 pilot s...