Numerical simulations of convection induced by Korteweg stresses in miscible polymermonomer systems

We modeled a miscible polymer-monomer system with a sharp transition zone separating the two fluids to determine if convection analogous to Marangoni convection in immiscible fluids could occur because of thermal and concentration gradients. We considered three cases: with a temperature gradient alo...

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Veröffentlicht in:Microgravity science and technology 2005-03, Vol.17 (1), p.8-12
Hauptverfasser: Bessonov, Nick, Volpert, Vitaly A., Pojman, John A., Zoltowski, Brian D.
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Sprache:eng
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Zusammenfassung:We modeled a miscible polymer-monomer system with a sharp transition zone separating the two fluids to determine if convection analogous to Marangoni convection in immiscible fluids could occur because of thermal and concentration gradients. We considered three cases: with a temperature gradient along the transition zone, with a variable transition zone width, and one with a gradient in the conversion of polymerization. Using the Navier-Stokes equations with an additional term, the Korteweg stress term arising from non-local interactions in the fluid, we demonstrated with realistic parameters that measurable fluid flow would result in the absence of buoyancy-driven convection for all three cases. To avoid buoyancy-driven convection, the experiment would have to be performed in microgravity.
ISSN:0938-0108
1875-0494
DOI:10.1007/BF02870969