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Updated: Dec 24, 2025

Visually Based Characterization of the Incipient Particle Motion in Regular Substrates: From Laminar to Turbulent Conditions
Published on: February 22, 2018
Rotation of a submerged finite cylinder moving down a soft incline
Baudouin Saintyves1, Bhargav Rallabandi2, Theo Jules3
1Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA. saintyves@uchicago.edu and School of Engineering and Applied Sciences, Harvard University, Cambridge, MA 02138, USA.
Abstract:
A submerged finite cylinder moving under its own weight along a soft incline lifts off and slides at a steady velocity while also spinning. Here, we experimentally quantify the steady spinning of the cylinder and show theoretically that it is due to a combination of an elastohydrodynamic torque generated by flow in the variable gap, and the viscous friction on the edges of the finite-length cylinder. The relative influence of the latter depends on the aspect ratio of the cylinder, the angle of the incline, and the deformability of the substrate, which we express in terms of a single scaled compliance parameter. By independently varying these quantities, we show that our experimental results are consistent with a transition from an edge-effect dominated regime for short cylinders to a gap-dominated elastohydrodynamic regime when the cylinder is very long.
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