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2013

Journal Article

The evolution of submarine channels under the influence of Coriolis forces: experimental observations of flow structures

Cossu, Remo and Wells, Mathew G. (2013). The evolution of submarine channels under the influence of Coriolis forces: experimental observations of flow structures. Terra Nova, 25 (1), 65-71. doi: 10.1111/ter.12006

The evolution of submarine channels under the influence of Coriolis forces: experimental observations of flow structures

2012

Journal Article

A comparison of the shear stress distribution in the bottom boundary layer of experimental density and turbidity currents

Cossu, Remo and Wells, Mathew G. (2012). A comparison of the shear stress distribution in the bottom boundary layer of experimental density and turbidity currents. European Journal of Mechanics, B/Fluids, 32 (1), 70-79. doi: 10.1016/j.euromechflu.2011.09.006

A comparison of the shear stress distribution in the bottom boundary layer of experimental density and turbidity currents

2012

Other Outputs

The influence of coriolis forces on flow structures of channelized large-scale turbidity currents and their depositional patterns

Cossu, Remo (2012). The influence of coriolis forces on flow structures of channelized large-scale turbidity currents and their depositional patterns. PhD Thesis, Department of Geology, University of Toronto.

The influence of coriolis forces on flow structures of channelized large-scale turbidity currents and their depositional patterns

2010

Journal Article

Influence of the Coriolis force on the velocity structure of gravity currents in straight submarine channel systems

Cossu, R., Wells, M. G. and Wahlin, A. K. (2010). Influence of the Coriolis force on the velocity structure of gravity currents in straight submarine channel systems. Journal of Geophysical Research: Oceans, 115 (11) C11016. doi: 10.1029/2010JC006208

Influence of the Coriolis force on the velocity structure of gravity currents in straight submarine channel systems

2010

Journal Article

Coriolis forces influence the secondary circulation of gravity currents flowing in large-scale sinuous submarine channel systems

Cossu, Remo and Wells, Mathew G. (2010). Coriolis forces influence the secondary circulation of gravity currents flowing in large-scale sinuous submarine channel systems. Geophysical Research Letters, 37 (17) L17603, 1-6. doi: 10.1029/2010GL044296

Coriolis forces influence the secondary circulation of gravity currents flowing in large-scale sinuous submarine channel systems