Title of article :
Mechanics of Immersed Particle Collisions
Author/Authors :
Zenit، Roberto نويسنده , , Hunt، Melany L. نويسنده ,
Issue Information :
فصلنامه با شماره پیاپی سال 1999
Pages :
-178
From page :
179
To page :
0
Abstract :
The present work mvestigatef: the mechanics of particle collisions submerged in a liquid using a simple pendulum experiment. Particle trajectories for different particles in water are measured using a high-speed digital camera and the magnitude of the collision is recorded using a high-frequency-response pressure transducer at the colliding surface. The particle deceleration occurs at distances less than half a particle diameter from the wall. The measured collision impulse increases with impact velocity and particle mass. Comparisons are drawn between the measured pressures and the predictions of basic impact mechanics assuming a perfectly elastic collision. A control-volume model is proposed that accounts for the fluid inertia and viscosity. When a particle approaches a planar surface or another particle, the fluid is squeezed prior to contact, reducing the initial kinetic energy and decelerating the particle. The pressure profile is integrated over the surface of the particle to obtain a force that is afunction of the initial particle Reynolds number, Re^, and the ratio of the densities of the particle and fluid phases, pp/pf. The model predicts a critical Stokes number at which the particle reaches the wall with zero velocityʹ. Comparisons between the proposed model and the experimental measurements show qualitative agreement.
Keywords :
fracture toughness , Microstructure , Fiber orientation , cellulose fiber
Journal title :
Transactions of the ASME: Journal of Fluids Engineering
Serial Year :
1999
Journal title :
Transactions of the ASME: Journal of Fluids Engineering
Record number :
10243
Link To Document :
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