Modern marine seismic reflection data have allowed for the study of the morphology of submarine channels in a 3D perspective. This study presents a quantitative analysis of continental slope channel complexes morphology within the Canterbury Basin (New Zealand). It aims to characterize the morphology and seismic facies of submarine channels to better understand their formative sedimentary processes, paleoenvironment, and petroleum prospectivity. Submarine channel morphometric parameters are measured at 150 m intervals perpendicular to the axis of channels complexes. Based on the morphology analysis of erosional surfaces and seismic facies of channel complexes filling deposits, four types of continental slope channel complexes are found in t...
Submarine channels form pronounced morphological features on the seafloor and play an important role...
Topography growth and sediment fluxes in active subduction margin settings are poorly understood. Ge...
Seismic imaging techniques are widely used to determine fluid migration pathways in the subsurface. ...
Nowadays, high resolution 3D marine seismic reflection data have allowed to study the morphology of ...
Detailed morphological analyses of a Pleistocene-Holocene submarine channel system in terms of its h...
Detailed morphological analyses of a Pleistocene-Holocene submarine channel system in terms of its h...
Detailed morphological analyses of a Pleistocene-Holocene submarine channel system in terms of its h...
Detailed morphological analyses of a Pleistocene-Holocene submarine channel system in terms of its h...
Submarine canyons are well documented, both around New Zealand and globally, but questions remain ar...
Deep-water sedimentation on active margins often entails complex sediment transport pathways through...
The Late Quaternary stratigraphy and sedimentary processes are interpreted for an area of continenta...
Description: 150 p. : ill. (some col.), maps ; 22 x 31 cm. + 2 videos. Notes: University of Otago de...
This work uses a high-quality 3D seismic volume from offshore Canterbury Basin, New Zealand, to inve...
This work uses a high-quality 3D seismic volume from offshore Canterbury Basin, New Zealand, to inve...
Monitoring of modern deep-water channels has revealed how migrating channel-floor features generate ...
Submarine channels form pronounced morphological features on the seafloor and play an important role...
Topography growth and sediment fluxes in active subduction margin settings are poorly understood. Ge...
Seismic imaging techniques are widely used to determine fluid migration pathways in the subsurface. ...
Nowadays, high resolution 3D marine seismic reflection data have allowed to study the morphology of ...
Detailed morphological analyses of a Pleistocene-Holocene submarine channel system in terms of its h...
Detailed morphological analyses of a Pleistocene-Holocene submarine channel system in terms of its h...
Detailed morphological analyses of a Pleistocene-Holocene submarine channel system in terms of its h...
Detailed morphological analyses of a Pleistocene-Holocene submarine channel system in terms of its h...
Submarine canyons are well documented, both around New Zealand and globally, but questions remain ar...
Deep-water sedimentation on active margins often entails complex sediment transport pathways through...
The Late Quaternary stratigraphy and sedimentary processes are interpreted for an area of continenta...
Description: 150 p. : ill. (some col.), maps ; 22 x 31 cm. + 2 videos. Notes: University of Otago de...
This work uses a high-quality 3D seismic volume from offshore Canterbury Basin, New Zealand, to inve...
This work uses a high-quality 3D seismic volume from offshore Canterbury Basin, New Zealand, to inve...
Monitoring of modern deep-water channels has revealed how migrating channel-floor features generate ...
Submarine channels form pronounced morphological features on the seafloor and play an important role...
Topography growth and sediment fluxes in active subduction margin settings are poorly understood. Ge...
Seismic imaging techniques are widely used to determine fluid migration pathways in the subsurface. ...