Stability of Thermocapillary Flow in High-Prandtl-Number Liquid Bridges Exposed to a Coaxial Gas Stream

Author:

Stojanovic MarioORCID,Kuhlmann Hendrik C.

Funder

FFG

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,General Physics and Astronomy,General Engineering,Modeling and Simulation

Reference17 articles.

1. Cröll, A., Müller-Sebert, W., Benz, K.W., Nitsche, R.: Natural and thermocapillary convection in partially confined silicon melt zones. Microgravity Sci. Technol. 3, 204 (1991)

2. Kuhlmann, H.C.: Thermocapillary Convection in Models of Crystal Growth Springer Tracts in Modern Physics, vol. 152. Springer, Berlin (1999)

3. Kuhlmann, H.C., Nienhüser, C.: Dynamic free-surface deformations in thermocapillary liquid bridges. Fluid Dyn. Res. 31, 103–127 (2002)

4. Leypoldt, J., Kuhlmann, H.C., Rath, H.J.: Three-dimensional numerical simulation of thermocapillary flows in cylindrical liquid bridges. J. Fluid Mech. 414, 285–314 (2000)

5. Matsunaga, T., Mialdun, A., Nishino, K., Shevtsova, V.: Measurements of gas/oil free surface deformation caused by parallel gas flow. Phys. Fluids 24, 062101 (2012)

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