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Lü Xiaode, Gao Benqing. Numerical Algorithm for Polarity Reversal Electric Field and Its Application[J]. JOURNAL OF BEIJING INSTITUTE OF TECHNOLOGY, 1999, 8(2): 161-166.
Citation: Lü Xiaode, Gao Benqing. Numerical Algorithm for Polarity Reversal Electric Field and Its Application[J].JOURNAL OF BEIJING INSTITUTE OF TECHNOLOGY, 1999, 8(2): 161-166.

Numerical Algorithm for Polarity Reversal Electric Field and Its Application

  • Received Date:1998-03-12
  • Aim To analyze the transient speciality of nonlinear, anisotropic, AC+DC coupling electric field, and to compare the withstand voltage strength of different insulation structures. Methods The transient process of polarity reversal is analyzed, considering the anisotropic property of oil immersed press board, a new finite element model based on Galerkin method is presented and verified. The model developed is applied to calculate the electric field distribution in four typical winding end structures of the converter transformer. Results The whole ring structure possesses the best insulation characteristics. Conclusion By introducing reasonable insulation components, insulation strength with the same surrounding sizes can be improved more than 30%.
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    Takahashi E, Shirasaka Y, Okuyama K. Analysis of an anisotr opicnonlinear electric field with adiscussion of dielectric tests for converter transformers and smoothing reactors. IEEE Trans on PD,1994, 9(3): 1480- 1486.
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