Time-dependent dynamical behavior of surface tension on rotating fluids under microgravity environment |
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Authors: | R. J. Hung Y. D. Tsao B. B. Hong F. W. Leslie |
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Affiliation: | * University of Alabama in Huntsville, Huntsville, AL 35899, U.S.A. ** NASA/Marshall Space Flight Center, AL 35812, U.S.A. |
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Abstract: | Time dependent evolutions of the profile of free surface (bubble shapes) for a cylindrical container partially filled with a Newtonian fluid of constant density, rotating about its axis of symmetry, have been studied. Numerical computations of the dynamics of bubble shapes have been carried out with the following situations: (1) linear functions of spin-up and spin-down in low and microgravity environments, (2) step functions of spin-up and spin-down in a low gravity environment, and (3) sinusoidal function oscillation of gravity environment in high and low rotating cylinder speeds. The initial condition of bubble profiles was adopted from the steady-state formulations in which the computer algorithms have been developed by Hung and Leslie/1/, and Hung et al./2/ |
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