Particle-laden gravity flows, called turbidity currents, flow through river-like channels across the ocean floor. These submarine channels funnel sediment, nutrients, pollutants and organic carbon into ocean basins and can extend for over 1000’s of kilometers. Upon reaching the end of these channels, flows lose their confinement, decelerate, and deposit their sediment load; this is what we read in textbooks. However, sea floor observations have shown the opposite: turbidity currents tend to erode the seafloor upon losing confinement. Here we use a state-of-the-art scaling method to produce the first experimental turbidity currents that erode upon leaving a channel. The experiments reveal a novel flow mechanism, here called flow relaxation, ...
Seabed-hugging flows called turbidity currents are the volumetrically most important process transpo...
Seabed-hugging flows called turbidity currents are the volumetrically most important process transpo...
Seabed sediment flows called turbidity currents form some of the largest sediment accumulations, dee...
Particle-laden gravity flows, called turbidity currents, flow through river-like channels across the...
Particle-laden gravity flows, called turbidity currents, flow through river-like channels across the...
Particle-laden gravity flows, called turbidity currents, flow through river-like channels across the...
Particle-laden gravity flows, called turbidity currents, flow through river-like channels across the...
Seabed-hugging flows called turbidity currents are the volumetrically most important process transpo...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Seabed-hugging flows called turbidity currents are the volumetrically most important process transpo...
Seabed-hugging flows called turbidity currents are the volumetrically most important process transpo...
Seabed-hugging flows called turbidity currents are the volumetrically most important process transpo...
Seabed-hugging flows called turbidity currents are the volumetrically most important process transpo...
Seabed sediment flows called turbidity currents form some of the largest sediment accumulations, dee...
Particle-laden gravity flows, called turbidity currents, flow through river-like channels across the...
Particle-laden gravity flows, called turbidity currents, flow through river-like channels across the...
Particle-laden gravity flows, called turbidity currents, flow through river-like channels across the...
Particle-laden gravity flows, called turbidity currents, flow through river-like channels across the...
Seabed-hugging flows called turbidity currents are the volumetrically most important process transpo...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Seabed-hugging flows called turbidity currents are the volumetrically most important process transpo...
Seabed-hugging flows called turbidity currents are the volumetrically most important process transpo...
Seabed-hugging flows called turbidity currents are the volumetrically most important process transpo...
Seabed-hugging flows called turbidity currents are the volumetrically most important process transpo...
Seabed sediment flows called turbidity currents form some of the largest sediment accumulations, dee...