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Call for Paper - May 2015 Edition
IJCA solicits original research papers for the May 2015 Edition. Last date of manuscript submission is April 20, 2015. Read More

FEM based Reactance Computation for Transformer Winding Deformation Detection

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IJCA Proceedings on National Conference Potential Research Avenues and Future Opportunities in Electrical and Instrumentation Engineering
© 2014 by IJCA Journal
ETEIAC
Year of Publication: 2014
Authors:
M. Arivamudhan
S. Santhi
R. Saranya
S. Saliyavaganan

M Arivamudhan, S Santhi, R Saranya and S Saliyavaganan. Article: FEM based Reactance Computation for Transformer Winding Deformation Detection. IJCA Proceedings on National Conference Potential Research Avenues and Future Opportunities in Electrical and Instrumentation Engineering ETEIAC:1-4, July 2014. Full text available. BibTeX

@article{key:article,
	author = {M. Arivamudhan and S. Santhi and R. Saranya and S. Saliyavaganan},
	title = {Article: FEM based Reactance Computation for Transformer Winding Deformation Detection},
	journal = {IJCA Proceedings on National Conference Potential Research Avenues and Future Opportunities in Electrical and Instrumentation Engineering},
	year = {2014},
	volume = {ETEIAC},
	pages = {1-4},
	month = {July},
	note = {Full text available}
}

Abstract

Leakage reactance is one of the most important specifications in transformer that has significant impact on its overall design. Variation in leakage reactance serves as a diagnostic measure to indicate mechanical integrity of power transformers before and after a short circuit test that demonstrates mechanical strength of transformer windings. This paper presents an approach for leakage reactance computation through finite element method (FEM) and subsequent analysis of winding deformation due to a short circuit. A concentric two winding transformer is considered and reactance computation is made using FEM package. The results of computation are compared against classical method. It is observed that the method can provide sufficient theoretical basis for improving the design.

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