• Title/Summary/Keyword: cast resin molded transformer

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The Condition Assessment of Cast Resin Molded Transformer Windings Using Vertical Analysis of Thermal Distribution

  • Lim Young-Bae;Jung Jong-Wook;Jung Jin-Soo;Cho Seong won;Kim Joon-Bum
    • KIEE International Transactions on Electrophysics and Applications
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    • v.5C no.5
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    • pp.191-195
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    • 2005
  • This paper presents an assessment method in integrity of the windings in cast resin molded transformers by using vertical analysis of thermal distribution. The proposed method is to compare the temperature distribution in a sound specimen with that in the faulted specimen with a layer to layer short circuit. Temperature distribution was acquired by an infrared thermography system, and the Arrhenius equation was adopted to the accelerated test. The proposed method can be used to detect the failures in the transformers.

Diagnostic Technique for Cast Resin Molded Transformer Windings Using Active Thermography

  • Lim Young-Bae;Jung Jong-Wook;Jung Jin-Soo;Cho Seong-Won
    • Journal of Electrical Engineering and Technology
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    • v.1 no.3
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    • pp.376-380
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    • 2006
  • Temperature distribution measured to estimate the condition of an electrical apparatus is an absolute reference for the apparatus conditions and the difference between the reference temperature and the current temperature. Because of passive thermography, without the external thermal stimulation, the difference in surface temperature between the region of interest and back ground shows that the results can apply only to the estimation or the monitoring for the condition of loose terminal and the overload pertaining to the rise in temperature. However, a thermal diffusion in the active thermography is differently generated by the structure and condition of the surface and subsurface. This paper presents a nondestructive test using this behavior and deals with the results by heat injection and cooling to the apparatus. The buried discontinuity of subsurface could be detected by these techniques.