Thermocapillary Migration Of Nondeformable Drops


Autoria(s): 尹兆华; 高鹏; 胡文瑞; 常磊
Data(s)

2008

Resumo

In this paper, we present a numerical study on the thermocapillary migration of drops. The Navier-Stokes equations coupled with the energy conservation equation are solved by the finite-difference front-tracking scheme. The axisymmetric model is adopted in Our simulations, and the drops are assumed to be perfectly spherical and nondeformable. The benchmark simulation starts from the classical initial condition with a uniform temperature gradient. The detailed discussions and physical explanations of migration phenomena are presented for the different values of (1) the Marangoni numbers and Reynolds numbers of continuous phases and drops and (2) the ratios of drop densities and specific heats to those of continuous phases. It is found that fairly large Marangoni numbers may lead to fluctuations in drop velocities at the beginning part of simulations. Finally, we also discuss the influence of initial conditions on the thermocapillary migrations. (C) 2008 American Institute of Physics.

Identificador

http://dspace.imech.ac.cn/handle/311007/25896

http://www.irgrid.ac.cn/handle/1471x/2448

Idioma(s)

英语

Fonte

Physics Of Fluids, 2008, 20(8)

Palavras-Chave #Large Marangoni Numbers #Vertical Temperature-Gradient #Front-Tracking Method #Gas Bubble #Numerical-Simulation #Thermal-Gradient #Reduced Gravity #Motion #Droplets #Microgravity
Tipo

期刊论文