The turbulent flow structure, suspended sediment dynamics and deposits of experimental sustained turbidity currents exiting a channel across a break in slope into a wide tank are documented. The data shed light on the flow evolution and deposit geometry of analogous natural channel-fed submarine fans. Flows generated in a 0·3 m wide, sloping (0°, 6°, 9° or 20°) channel crossed an angular slope break and spread onto a horizontal tank floor. Flow development comprised: (i) channelized phase (unsteady channel flow developing into steady channel flow); (ii) initial lateral expansion phase (unsteady-spreading wall jet phase); (iii) constant lateral expansion phase (steady-spreading wall jet phase); and (iv) rapid waning phase. Phases (i) and (iv...
ABSTRACT: The formative mechanisms of many geologic features attributed to the passage of turbidity ...
Flume experiments were performed to study the flow properties and depositional characteristics of hi...
Submarine turbidity currents create some of the largest sediment accumulations on Earth, yet there a...
Submarine channels have been documented as ubiquitous features of continental slopes and fan systems...
Submarine channels have been documented as ubiquitous features of continental slopes and fan systems...
Submarine channels have been documented as ubiquitous features of continental slopes and fan systems...
Submarine leveed channels are sculpted by turbidity currents that are commonly highly stratified. Bo...
Submarine leveed channels are sculpted by turbidity currents that are commonly highly stratified. Bo...
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...
Two-dimensional experiments investigating sediment transport and turbulence structure in sustained t...
Laboratory experiments were conducted to observe the behavior of turbidity currents in the vicinity...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
Turbidity currents transport land-derived sediment to deep sea where theirdeposits form large geolog...
A series of large-scale experiments on nonchannelized, depositional turbidity currents show the evol...
ABSTRACT: The formative mechanisms of many geologic features attributed to the passage of turbidity ...
Flume experiments were performed to study the flow properties and depositional characteristics of hi...
Submarine turbidity currents create some of the largest sediment accumulations on Earth, yet there a...
Submarine channels have been documented as ubiquitous features of continental slopes and fan systems...
Submarine channels have been documented as ubiquitous features of continental slopes and fan systems...
Submarine channels have been documented as ubiquitous features of continental slopes and fan systems...
Submarine leveed channels are sculpted by turbidity currents that are commonly highly stratified. Bo...
Submarine leveed channels are sculpted by turbidity currents that are commonly highly stratified. Bo...
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...
Two-dimensional experiments investigating sediment transport and turbulence structure in sustained t...
Laboratory experiments were conducted to observe the behavior of turbidity currents in the vicinity...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
Turbidity currents transport land-derived sediment to deep sea where theirdeposits form large geolog...
A series of large-scale experiments on nonchannelized, depositional turbidity currents show the evol...
ABSTRACT: The formative mechanisms of many geologic features attributed to the passage of turbidity ...
Flume experiments were performed to study the flow properties and depositional characteristics of hi...
Submarine turbidity currents create some of the largest sediment accumulations on Earth, yet there a...