Bubble Behavior and Heat Transfer in Quasi-Steady Pool Boiling in Microgravity


Autoria(s): Zhao JF(赵建福); Li J(李晶); Yan N(闫娜); Wang SF(王双峰)
Data(s)

2009

Resumo

Pool boiling of degassed FC-72 on a plane plate heater has been studied experimentally in microgravity. A quasi-steady heating method is adopted, in which the heating voltage is controlled to increase exponentially with time. Compared with terrestrial experiments, bubble behaviors are very different, and have direct effect on heat transfer. Small, primary bubbles attached on the surface seem to be able to suppress the activation of the cavities in the neighborhoods, resulting in a slow increase of the wall temperature with the heat flux. For the high subcooling, the coalesced bubble has a smooth surface and a small size. It is difficult to cover the whole heater surface, resulting in a special region of gradual transitional boiling in which nucleate boiling and local dry area can co-exist. No turning point corresponding to the transition from nucleate boiling to film boiling can be observed. On the contrary, the surface oscillation of the coalesced bubble at low subcooling may cause more activated nucleate sites, and then the surface temperature may keep constant or even fall down with the increasing heat flux. Furthermore, an abrupt transition to film boiling can also be observed. It is shown that heat transfer coefficient and CHF increase with the subcooling or pressure in microgravity, as observed in normal gravity.

Identificador

http://dspace.imech.ac.cn/handle/311007/28766

http://www.irgrid.ac.cn/handle/1471x/9054

Idioma(s)

英语

Palavras-Chave #流体力学::微重力流体力学
Tipo

期刊论文