The evaporative cooling technology is a kind of new generator cooling method, which is high-security, energy-saving and highly efficient and the inner evaporative cooling system is one of the most important application modes of it. In self-circulation inner evaporative cooling system of stator busbar in hydro-generator and forced circulation inner evaporative cooling system of stator hollow conductor in turbo-generator, the prediction of two-phase flow pressure drops in busbar and hollow conductor plays an important role to the normal operation and safety of generator. In this paper, through comparing the experimental data and simulation results, the prediction accuracy of some two-phase flow frictional pressure drop correlations for these inner evaporative cooling systems was discussed. By analyzing the experimental data, the most suitable correlation for the prediction of self-circulation evaporative cooling system of stator busbar in hydro-generator was suggested and a new modified correlation of Chisholm-B method for the prediction of forced circulation evaporative cooling system of stator hollow conductor in turbo-generator was proposed. The conclusions provide good theoretical basis for the design of inner evaporative cooling system in actual engineering computation.
[1]
D. Chisholm,et al.
Pressure gradients due to friction during the flow of evaporating two-phase mixtures in smooth tubes and channels
,
1973
.
[2]
RUAN LIN,et al.
Research of the Temperature Distribution of the Hollow Conductor in the Evaporative Cooling Hydro-Generators
,
2005
.
[3]
Wen Zhi-wei.
Calculation of 3D Thermal Field in the Stator of Turbo-generator with Immersion Evaporative-cooling System and Forced Inner-cooling
,
2006
.
[4]
Gu Guo-biao.
Research on Two-phase Flow Pattern Transition in the Evaporative Turbine Generator
,
2007
.
[5]
Guobiao Gu,et al.
Sensitivity of the two-phase flow pressure drop to influence factors in the evaporative cooling generator
,
2008,
2008 International Conference on Electrical Machines and Systems.
[6]
Guobiao Gu,et al.
Research on two-phase flow instability in two parallel hollow conductors in the evaporating cooling generator
,
2009,
2009 International Conference on Electrical Machines and Systems.