Excitation mechanism of thermocapillary oscillatory convection


Autoria(s): 胡文瑞; 唐泽眉
Data(s)

1990

Resumo

It is suggested that the oscillation of thermocapillary convection may be excited by the buoyancy instability. By means of numerical simulation of the finite-element method, the temperature distributions in the liquid bridge are qualitatively analyzed. The temperature gradient in a certain flow region of liquid bridge may turn to be parallel to the direction of gravity when the temperature difference △T between two boundary rods of liquid bridge is larger than the critical value. The buoyancy instability may be excited, and then the thermocapillary oscillatory convection appears, as the temperature difference increases further. The distribution of the critical Marangoni number in the micro-gravity environment is derived from the data on the ground experiments. The results show that the onset of thermocapillary oscillatory convection is delayed in the case of smaller typical scale of liquid bridge and lower gravity environment.

Identificador

http://dspace.imech.ac.cn/handle/311007/39576

http://www.irgrid.ac.cn/handle/1471x/5134

Idioma(s)

英语

Fonte

Science In China Series A-Mathematics Physics Astronomy.1990,33(8):934-943

Tipo

期刊论文