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NASA NTRS · 19860030857

A granular flow model for dense planetary rings

Abstract

In the present study of the viscosity of a differentially rotating particle disk, in the limiting case where the particles are densely packed and their collective behavior resembles that of a liquid, the pressure tensor is derived from both the equations of hydrodynamics and a simple kinetic model of collisions due to Haff (1983). Density waves and narrow circular rings are unstable if the liquid approximation applies, and the consequent nonlinear perturbations may generate 'splashing' of the ring material in the vertical direction. These results are pertinent to the origin of the ellipticities of ringlets, the nonaxisymmetric features near the outer edge of the Saturn B ring, and unexplained residuals in kinematic models of the Saturn and Uranus rings.

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BibTeXRIS

Borderies, N., Goldreich, P., Tremaine, S.. 1985-09-01. A granular flow model for dense planetary rings. https://ntrs.nasa.gov/citations/19860030857

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