We consider the motion of a large number of particles that experience a linear drag
force from the interstitial fluid excited by a vibrating boundary. The dissipation in
such systems arises from two main sources: inelasticity in particle collisions and the
effects of interstitial fluid on the particles. In many applications, order of magnitude
estimates suggest that the dissipation due to interstitial fluid effects may greatly exceed
that due to inelasticity and one may be led to neglect inelastic effects.
We show that if the vibration speed of the boundary is below a critical value then
one may safely neglect inelastic effects. However, if the vibration speed of the boundary
exceeds the critical value then the kinetic energy of the particles grows without
bound if inelastic effects are neglected. One is therefore forced to include inelastic effects
for vibration speeds above the critical value even if order of magnitude estimates
suggest they are negligible.
| Date of Award | 2 Oct 2008 |
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| Original language | English |
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| Awarding Institution | - City University of Hong Kong
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| Supervisor | Qiang ZHANG (Supervisor) |
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- Transport theory
- Mathematical models
- Particles (Nuclear physics)
Dynamics of driven particle systems with drag
LI, Y. (Author). 2 Oct 2008
Student thesis: Master's Thesis