会议专题

FLUID FLOW AND HEAT TRANSFER CHARACTERISTICS OF SLUG BUBBLY FLOW IN MICRO CONDENSERS

Experiments were carried out to study the condensation flow pattern in silicon micro condenser using water as medium. Five flow patterns were identified under our experimental conditions. Slug-bubbly flow and droplet/liquid slug flow were found to be the two dominant flows in the micro condenser. These two flow patterns subsequently determined the heat transfer and pressure drop properties of the fluid. It was observed that only slug-bubbly flow existed in low steam mass flow and high heat flux conditions. When the steam mass flow rate increased or the heat flux dropped, mixed flow pattern occurred. An empirical correlation was obtained to predict when the transition of the flow pattern from slug-bubbly flow to mixed flow could appear. In the slug-bubbly flow regime, heat transfer coefficient and pressure drop in themicro condensers were studied. It was found that micro condensers with smaller channels could exhibit higher heat transfer coefficient and pressure drop. At constant heat flux, increasing the steam mass flow rate resulted in a higher heat transfer coefficient and also the pressure drop.

Micro Condenser Condensation Flow Pattern Slug-bubbly Flow Heat Transfer Coefficient Pressure Drop

J. S. Hu Christopher Y.H. Chao

Department of Mechanical Engineering, The Hong Kong University of Science and Technology,Clear Water Bay, Hong Kong

国际会议

2007年微纳系统集成及其商业化应用国际学术会议(2007 International Conference & Exhibition on Integration and Commercialization of Micro and Nano-Systems)

海南三亚

英文

2007-01-10(万方平台首次上网日期,不代表论文的发表时间)