Whirling skirts and rotating cones
Abstract
Steady, dihedrally symmetric patterns with sharp peaks may be observed on a spinning skirt, lagging behind the material flow of the fabric. These qualitative features are captured with a minimal model of traveling waves on an inextensible, flexible, generalized-conical sheet rotating about a fixed axis. Conservation laws are used to reduce the dynamics to a quadrature describing a particle in a three-parameter family of potentials. One parameter is associated with the stress in the sheet, aNoether is the current associated with rotational invariance, and the third is a Rossby number which indicates the relative strength of Coriolis forces. Solutions are quantized by enforcing a topology appropriate to a skirt and a particular choice of dihedral symmetry. A perturbative analysis of nearly axisymmetric cones shows that Coriolis effects are essential in establishing skirt-like solutions. Fully non-linear solutions with three-fold symmetry are presented which bear a suggestive resemblance to the observed patterns.
Cite
@article{arxiv.1306.2619,
title = {Whirling skirts and rotating cones},
author = {Jemal Guven and J A Hanna and Martin Michael Müller},
journal= {arXiv preprint arXiv:1306.2619},
year = {2013}
}
Comments
two additional figures, changes to text throughout. journal version will have a wordier abstract