Seabed sediment flows called turbidity currents form some of the largest sediment accumulations, deepest canyons and longest channel systems on Earth. Only rivers transport comparable sediment volumes over such large areas; but there are far fewer measurements from turbidity currents, ensuring they are much more poorly understood. Turbidity currents differ fundamentally from rivers, as turbidity currents are driven by the sediment that they suspend. Fast turbidity currents can pick up sediment, and self-accelerate (ignite); whilst slow flows deposit sediment and dissipate. Self-acceleration cannot continue indefinitely, and flows might reach a near-uniform state (autosuspension). Here we show how turbidity currents evolve using the first de...
Turbidity currents dominate sediment transfer into the deep ocean, and can damage critical seabed in...
Turbidity currents dominate sediment transfer into the deep ocean, and can damage critical seabed in...
Turbidity currents dominate sediment transfer into the deep ocean, and can damage critical seabed in...
© 2019 Seabed sediment flows called turbidity currents form some of the largest sediment accumulatio...
© 2019 Seabed sediment flows called turbidity currents form some of the largest sediment accumulatio...
© 2019 Seabed sediment flows called turbidity currents form some of the largest sediment accumulatio...
© 2019 Seabed sediment flows called turbidity currents form some of the largest sediment accumulatio...
© 2019 Seabed sediment flows called turbidity currents form some of the largest sediment accumulatio...
© 2019 Seabed sediment flows called turbidity currents form some of the largest sediment accumulatio...
Seabed sediment flows called turbidity currents form some of the largest sediment accumulations, dee...
Seabed sediment flows called turbidity currents form some of the largest sediment accumulations, dee...
Underwater sediment density flows, including turbidity currents, are capable of transporting vast am...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Turbidity currents dominate sediment transfer into the deep ocean, and can damage critical seabed in...
Turbidity currents dominate sediment transfer into the deep ocean, and can damage critical seabed in...
Turbidity currents dominate sediment transfer into the deep ocean, and can damage critical seabed in...
Turbidity currents dominate sediment transfer into the deep ocean, and can damage critical seabed in...
© 2019 Seabed sediment flows called turbidity currents form some of the largest sediment accumulatio...
© 2019 Seabed sediment flows called turbidity currents form some of the largest sediment accumulatio...
© 2019 Seabed sediment flows called turbidity currents form some of the largest sediment accumulatio...
© 2019 Seabed sediment flows called turbidity currents form some of the largest sediment accumulatio...
© 2019 Seabed sediment flows called turbidity currents form some of the largest sediment accumulatio...
© 2019 Seabed sediment flows called turbidity currents form some of the largest sediment accumulatio...
Seabed sediment flows called turbidity currents form some of the largest sediment accumulations, dee...
Seabed sediment flows called turbidity currents form some of the largest sediment accumulations, dee...
Underwater sediment density flows, including turbidity currents, are capable of transporting vast am...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Seafloor sediment flows, called turbidity currents, form the largest sediment accumulations, deepest...
Turbidity currents dominate sediment transfer into the deep ocean, and can damage critical seabed in...
Turbidity currents dominate sediment transfer into the deep ocean, and can damage critical seabed in...
Turbidity currents dominate sediment transfer into the deep ocean, and can damage critical seabed in...
Turbidity currents dominate sediment transfer into the deep ocean, and can damage critical seabed in...