Subaqueous sediment density flows are one of the volumetrically most important processes for moving sediment across our planet, and form the largest sediment accumulations on Earth (submarine fans). They are also arguably the most sparely monitored major sediment transport processes on our planet. Significant advances have been made in documenting their timing and triggers, especially within submarine canyons and delta-fronts, and freshwater lakes and reservoirs, but the sediment concentration of flows that run out beyond the continental slope has never been measured directly. This limited amount of monitoring data contrasts sharply with other major types of sediment flow, such as river systems, and ensure that understanding submarine sedim...
River deltas and associated turbidity current systems produce some of the largest and most rapid sed...
Submarine landslides can generate sediment-laden flows whose scale is impressive. Individual flow de...
Here we show how major rivers can efficiently connect to the deep-sea, by analysing the longest runo...
Turbidity currents, and other types of underwater sediment density flow, are arguably the most impor...
Turbidity currents, and other types of submarine sediment density flow, redistribute more sediment a...
Submarine density flows are the volumetrically most important process fortransporting sediment acros...
Submarine sediment density flows are one of the most important processes for moving sediment across ...
Seabed sediment flows called turbidity currents form some of the largest sediment accumulations, dee...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Submarine canyons globally incise 11 % of the seafloor on continental slopes, and provide conduits f...
Submarine canyons are one of the most dramatic morphological features on continental margins and ena...
Underwater sediment density flows, including turbidity currents, are capable of transporting vast am...
Seafloor-hugging flows, known as turbidity currents, transport sediment from shallow to deep water v...
Sediment transport around the globe is dominated by rivers and turbidity currents. While rivers shap...
Submarine canyons are conduits for episodic and powerful sediment density flows (commonly called tur...
River deltas and associated turbidity current systems produce some of the largest and most rapid sed...
Submarine landslides can generate sediment-laden flows whose scale is impressive. Individual flow de...
Here we show how major rivers can efficiently connect to the deep-sea, by analysing the longest runo...
Turbidity currents, and other types of underwater sediment density flow, are arguably the most impor...
Turbidity currents, and other types of submarine sediment density flow, redistribute more sediment a...
Submarine density flows are the volumetrically most important process fortransporting sediment acros...
Submarine sediment density flows are one of the most important processes for moving sediment across ...
Seabed sediment flows called turbidity currents form some of the largest sediment accumulations, dee...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Submarine canyons globally incise 11 % of the seafloor on continental slopes, and provide conduits f...
Submarine canyons are one of the most dramatic morphological features on continental margins and ena...
Underwater sediment density flows, including turbidity currents, are capable of transporting vast am...
Seafloor-hugging flows, known as turbidity currents, transport sediment from shallow to deep water v...
Sediment transport around the globe is dominated by rivers and turbidity currents. While rivers shap...
Submarine canyons are conduits for episodic and powerful sediment density flows (commonly called tur...
River deltas and associated turbidity current systems produce some of the largest and most rapid sed...
Submarine landslides can generate sediment-laden flows whose scale is impressive. Individual flow de...
Here we show how major rivers can efficiently connect to the deep-sea, by analysing the longest runo...