Granular Shear Flow in Varying Gravitational Environments
arXiv:1306.1798 · doi:10.1007/s10035-013-0395-y
Abstract
Despite their very low surface gravities, asteroids exhibit a number of different geological processes involving granular matter. Understanding the response of this granular material subject to external forces in microgravity conditions is vital to the design of a successful asteroid sub-surface sampling mechanism, and in the interpretation of the fascinating geology on an asteroid. We have designed and flown a Taylor-Couette shear cell to investigate granular flow due to rotational shear forces under the conditions of parabolic flight microgravity. The experiments occur under weak compression. First, we present the technical details of the experimental design with particular emphasis on how the equipment has been specifically designed for the parabolic flight environment. Then, we investigate how a steady state granular flow induced by rotational shear forces differs in varying gravitational environments. We find that the effect of constant shearing on the granular material, in a direction perpendicular to the effective acceleration, does not seem to be strongly influenced by gravity. This means that shear bands can form in the presence of a weak gravitational field just as on Earth.
18 pages, 10 figures
Cited by in corpus (14)
- Role of gravity or confining pressure and contact stiffness in granular rheology
- Tidal Evolution of Asteroidal Binaries. Ruled by Viscosity. Ignorant of Rigidity
- Small Solar System Bodies as granular media
- Three-dimensional granular flow continuum modeling via material point method with hyperelastic nonlocal granular fluidity
- Precession Relaxation of Viscoelastic Oblate Rotators
- Timescale of asteroid resurfacing by regolith convection resulting from the impact-induced global seismic shaking
- Simulating regoliths in microgravity
- A gravity-independent powder-based additive manufacturing process tailored for space applications
- Scaling of convective velocity in a vertically vibrated granular bed
- Monitoring Three-Dimensional Packings in Microgravity
- A novel facility for reduced-gravity testing: a set-up for studying low-velocity collisions into granular surfaces
- Gravity Governs Shear Localization in Confined Dense Granular Flows
- Evolution of shear zones in granular packings under pressure
- Shear-banding instability in arbitrarily inelastic granular shear flows