DocumentCode :
415897
Title :
Study of refrigerated mechanism of evaporative of air-water annular two-phase flow in a small vertical tube
Author :
Jing, WANG ; Jie, YI
Author_Institution :
Sch. of Mech. & Power Eng., Shanghai Jiao Tong Univ., China
fYear :
2004
fDate :
1-4 June 2004
Firstpage :
251
Abstract :
Cooling system is a very important part of Polymer Electrolyte Membrane Fuel Cells (PEMFC), in which the flow channel is limited to very narrowness that lead to the heat transfer and flow regulations are different than normal regulations. Based on the study results of heat exchange in two phase annular flow the experimental and theoretical research of gas-saturated water two phase flow in a vertical fine tube (d=2.3 mm) have been introduced in this paper. The semi-theoretical heat transfer correlations were presented for predicting the evaporating heat transfer of two-phase air-saturated water in a small vertical tube. The experimental data agreed reasonably well with the numerical simulations at the same air mass flux. The average heat transfer coefficients of the annular air-saturated water two-phase flow can be increased, and the enhanced heat transfer mechanism is the evaporation of the very thin liquid film attached to the wall. The experiments were performed under the following conditions d=2.3 mm L=394 mm 14° C0<70° C 13 kg/(m2.S)a<33 kg/(m2.S) 30 kg/(m2.S)1,0 <123 kg/(m2.s) 45 W\n\n\t\t
Keywords :
cooling; evaporation; flow simulation; liquid films; pipe flow; proton exchange membrane fuel cells; refrigeration; two-phase flow; 14 to 70 degC; 2.3 mm; 394 mm; 45 to 400 W; Nusselt number; PEMFC; air mass flux; air water annular two phase flow; average heat transfer coefficients; cooling; evaporating heat transfer; flow channel; gas saturated water two phase flow; heat exchange; heat flux; liquid film; nonboiling subcooled flow; numerical simulations; polymer electrolyte membrane fuel cells; refrigerated mechanism; temperature distributions; vertical fine tube; Biomembranes; Cooling; Costs; Fuel cells; Heat transfer; Numerical simulation; Polymers; Refrigeration; Temperature; Water heating;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Thermal and Thermomechanical Phenomena in Electronic Systems, 2004. ITHERM '04. The Ninth Intersociety Conference on
Print_ISBN :
0-7803-8357-5
Type :
conf
DOI :
10.1109/ITHERM.2004.1319182
Filename :
1319182
Link To Document :
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