© 2018 Geological Society of America. Submarine channels have been important throughout geologic time for feeding globally significant volumes of sediment f rom land to the deep sea. Modern observations show that submarine channels can be sculpted by supercritical turbidity currents (seafloor sediment flows) that can generate upstream-migrating bedforms with a crescentic planform. In order to accurately interpret supercritical flows and depositional environments in the geologic record, it is important to be able to recognize the depositional signature of crescentic bedforms. Field geologists commonly link scour fills containing massive sands to crescentic bedforms, whereas models of turbidity currents produce deposits dominated by back-step...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Submarine channels deliver globally important volumes of sediments, nutrients, contaminants and orga...
Submarine channels have been important throughout geologic time for feeding globally significant vol...
Submarine channels have been important throughout geologic time for feeding globally significant vol...
Submarine channels have been important throughout geologic time for feeding globally significant vol...
Submarine channels have been important throughout geologic time for feeding globally significant vol...
Turbidity currents are powerful flows of sediment that pose a hazard to critical seafloor infrastruc...
Submarine channels parallel river channels in their ability to transport sediment. However in contra...
Deep‐water deposits are important archives of Earth’s history including the occurrence of powerful f...
Field observations of turbidity currents remain scarce, and thus there is continued debate about the...
Sediment transport around the globe is dominated by rivers and turbidity currents. While rivers shap...
Seafloor-hugging flows, known as turbidity currents, transport sediment from shallow to deep water v...
Turbidity currents are powerful flows of s...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Submarine channels deliver globally important volumes of sediments, nutrients, contaminants and orga...
Submarine channels have been important throughout geologic time for feeding globally significant vol...
Submarine channels have been important throughout geologic time for feeding globally significant vol...
Submarine channels have been important throughout geologic time for feeding globally significant vol...
Submarine channels have been important throughout geologic time for feeding globally significant vol...
Turbidity currents are powerful flows of sediment that pose a hazard to critical seafloor infrastruc...
Submarine channels parallel river channels in their ability to transport sediment. However in contra...
Deep‐water deposits are important archives of Earth’s history including the occurrence of powerful f...
Field observations of turbidity currents remain scarce, and thus there is continued debate about the...
Sediment transport around the globe is dominated by rivers and turbidity currents. While rivers shap...
Seafloor-hugging flows, known as turbidity currents, transport sediment from shallow to deep water v...
Turbidity currents are powerful flows of s...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Submarine channels deliver globally important volumes of sediments, nutrients, contaminants and orga...