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Can I read Particle Transport in a Counter-flow on EtoBox?

Particle Transport in a Counter-flow by G.F. Carrier; F.E. Fendell; S.F. Fink IV; C.N. Folley is a Engineering article available to read on EtoBox.

What is Particle Transport in a Counter-flow about?

We consider properties of a steady two-dimensional isothermal low Mach-number counter-flow, into which a dilute loading of small spherical particles is introduced at the local gas velocity, at a finite axial distance from the stagnation plane for the axial velocity component of the gas. The particles are introduced on one side of that stagnation plane only, and the consequences of any subsequent velocity slip of the particles with respect to the local gas are examined. The self-similarity (planar symmetry in the axial coordinate, for most of the key dependent variables), familiar from particle-free counter-flow, also holds for the two-phase flow under these conditions. Results, obtained by Lagrangian tracking of the motion of a single particle, distinguish: the nonoscillatory trajectory of that particle for relatively small strain-rate, large drag-rate conditions (the particle does not cross the stagnation plane for the axial velocity component); and the oscillatory trajectory of that particle under relatively large strain-rate, small drag-rate conditions (the particle may cross the stagnation plane repeatedly). However, for the multi-particle scenario for self-similar two-phase fl

Who reads Particle Transport in a Counter-flow?

It is typically read by researchers, students, and practitioners in Engineering.

Author
G.F. Carrier; F.E. Fendell; S.F. Fink IV; C.N. Folley
Publisher
Elsevier Science; Elsevier ; Elsevier BV (ISSN 0010-2180)
Published
2001
Language
EN
Field
Engineering (Physical Sciences)