Forced convection subcooled boiling experiments were conducted in a BWR-scaled vertical upward annular channel. Water was used as the testing fluid, and the tests were performed at atmospheric pressure. A high-speed digital video camera was applied to capture the dynamics of the bubble nucleation process. Bubble lift-off diameters were obtained from the images for a total of 91 test conditions. A force balance analysis of a growing bubble was carried out. A constitutive relation for bubble lift-off size was obtained by correlating current water data and R113 data from literature. The proposed constitutive relation and experimental data agree well with each other
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Bubble nucleation at subcooled flow boiling condition in a horizontal annular channel with a square ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Bubble lift-off is different from bubble departure, and it is more suitable for the boundary conditi...
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Bubble nucleation at subcooled flow boiling condition in a horizontal annular channel with a square ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Bubble lift-off is different from bubble departure, and it is more suitable for the boundary conditi...
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convection subcooled water boiling experiments were conducted in a vertical annular channel. ...
Forced convective subcooled boiling flow experiments were conducted in a BWR-scaled vertical upward ...
Bubble nucleation at subcooled flow boiling condition in a horizontal annular channel with a square ...