DocumentCode :
3561554
Title :
Simulation of particle flow in molten pool of electric contact of power switch
Author :
Xixiu, Wu ; Zhenbiao, Li ; Di Meihua ; Zhongchao, Wei ; Xiaoliang, Sang
Author_Institution :
Huazhong Univ. of Sci. & Technol., Wuhan, China
Volume :
1
fYear :
2004
Firstpage :
98
Abstract :
The electric arcing between the electrodes of a power switch makes the electrode surface partly molten and results in a molten pool, which is the essential reason of sputter erosion of contact materials. Understanding the characteristics of particle movement or flow in the molten pool is very important for the prediction of sputter erosion volume. The authors analyze the forces working on the contact molten pool to make the pool flow. These forces are: surface tension caused by the disequilibrium temperature distribution in the molten pool; buoyancy force; electromagnetic force. A model of fluid flow in the molten pool, based on hydrokinetic theory, is presented; it considers the coupling effect between heat transfer and fluid flow. With ANSYS software, the distribution of the fluid field and the flow velocity of the molten pool are calculated. The paper also discusses the influence of arc energy, surface tension and the material properties on the flowing characteristic in the molten pool. Under the same arc energy, the change of electromagnetic force is the main reason for fluid velocity change.
Keywords :
circuit-breaking arcs; computational fluid dynamics; electrical contacts; electromagnetic forces; flow; heat transfer; liquid metals; surface tension; switchgear; arc energy; buoyancy; contact material sputter erosion; electric arcing; electromagnetic force; flow velocity; fluid flow model; heat transfer; hydrokinetic theory; material properties; particle flow; power switch electric contact molten pool; surface tension; temperature distribution; Contacts; Electrodes; Electromagnetic forces; Equations; Fluid flow; Heat transfer; Resistance heating; Surface tension; Switches; Temperature;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Universities Power Engineering Conference, 2004. UPEC 2004. 39th International
Print_ISBN :
1-86043-365-0
Type :
conf
Filename :
1491971
Link To Document :
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