Flow-Substrate Interactions in Aggrading and Degrading Submarine Channels

This is a Preprint and has not been peer reviewed. This is version 5 of this Preprint.

Add a Comment

You must log in to post a comment.


Comments

There are no comments or no comments have been made public for this article.

Downloads

Download Preprint

Supplementary Files
Authors

Anjali M Fernandes , James Buttles, David Mohrig

Abstract

Connecting real time measurements of current-bed interactions to the temporal evolution of submarine channels can be extremely challenging in natural settings. We present a suite of physical experiments that offer insight into the spectrum of interactions between turbidity currents and their channels, from (i) detachment-limited erosion to (ii) transport-limited erosion to (iii) pure deposition. In all three cases channel sinuosity influenced patterns of erosion and deposition; the outsides of bends displayed the highest erosion rates in the first two cases, whereas the outsides of bends were associated with the highest deposition rates the third. We connect the evolution of these channels to the turbulence of the near-bed boundary layer. In the erosional experiments both channel beds roughened through time, developing erosional bedforms or trains of ripples. Reynolds estimates of boundary layer roughness indicate that, in both erosional cases, the near-bed boundary layer roughened from smooth or transitionally rough to rough, whereas the depositional channel appears to have remained consistently smooth. Our results suggest that, in the absence of any changes from upstream, erosion in submarine channels is a self-reinforcing mechanism whereby developing bed roughness increases turbulence at the boundary layer, thereby inhibiting deposition, promoting sediment entrainment and enhancing channel relief; deposition occurs in submarine channels when the boundary layer remains smooth, promoting aggradation and loss of channel relief.

DOI

https://doi.org/10.31223/osf.io/ceyhk

Subjects

Civil and Environmental Engineering, Earth Sciences, Engineering, Geology, Geomorphology, Other Civil and Environmental Engineering, Physical Sciences and Mathematics, Sedimentology, Stratigraphy

Keywords

Submarine canyons, Submarine channels, Turbidity currents, boundary layer roughness, detachment-limited channels, erosional bedforms, flow-separation zones, Shields scaling, transport-limited channels

Dates

Published: 2018-10-25 05:12

Last Updated: 2018-11-26 01:16

Older Versions
License

GNU Lesser General Public License (LGPL) 2.1