Abstract
There is a self-similar solution for the stability limits of long, almost cylindrical liquid bridges between equal disks subjected to both axial and lateral accelerations. The stability limits depend on only two variables; the so-called reduced axial, and lateral Bond numbers. A novel experimental setup that involved rotating a horizontal cylindrical liquid bridge about a vertical axis of rotation was designed to test the stability limits predicted by the self-similar solution. Analytical predictions compared well with both numerical and experimental results. © 2000 American Institute of Physics.
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CITATION STYLE
Zayas, F., Alexander, J. I. D., Meseguer, J., & Ramus, J. F. (2000). On the stability limits of long nonaxisymmetric cylindrical liquid bridges. Physics of Fluids, 12(5), 979–985. https://doi.org/10.1063/1.870353
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