NUMERICAL INVESTIGATION OF MECHANICAL AND THERMAL DYNAMIC PROPERTIES OF THE INDUSTRIAL TRANSFORMER
Author(s) -
Liu Hua-shu,
Lin Ma,
Yuantong Gu,
Shawn Nielsen
Publication year - 2014
Publication title -
international journal of computational methods
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.558
H-Index - 37
eISSN - 1793-6969
pISSN - 0219-8762
DOI - 10.1142/s021987621344012x
Subject(s) - overheating (electricity) , finite element method , transformer , thermal , catastrophic failure , reliability engineering , mechanical engineering , structural engineering , materials science , engineering , electrical engineering , voltage , composite material , physics , meteorology
Industrial transformer is one of the most critical assets in the power and heavy industry. Failures of transformers can cause enormous losses. The poor joints of the electrical circuit on transformers can cause overheating and results in stress concentration on the structure which is the major cause of catastrophic failure. Few researches have been focused on the mechanical properties of industrial transformers under overheating thermal conditions. In this paper, both mechanical and thermal properties of industrial transformers are jointly investigated using Finite Element Analysis (FEA). Dynamic response analysis is conducted on a modified transformer FEA model, and the computational results are compared with experimental results from literature to validate this simulation model. Based on the FEA model, thermal stress is calculated under different temperature conditions. These analysis results can provide insights to the understanding of the failure of transformers due to overheating, therefore are significant to assess winding fault, especially to the manufacturing and maintenance of large transformers
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