Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4991684 | Applied Thermal Engineering | 2017 | 20 Pages |
Abstract
A numerical study on the transition from slug flow (or elongated flow) to annular flow of convective boiling under high heat flux in a micro-channel with diameter of 0.4Â mm is conducted. A constant velocity inlet boundary with mass flux 400Â kg/m2Â s, and heated wall with a constant heat flux (160, 80Â kW/m2) are applied. A novel initialization method is proposed. Growth rate of the bubble and transition of the flow regime are well predicted by comparing with an experimental visualization. Effects of the transition are studied and findings are that this process disturbs thermal boundary layer which further enhances bubble evaporation.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Fluid Flow and Transfer Processes
Authors
Qingming Liu, Wujun Wang, Björn Palm,