Energies (Oct 2020)

Calculations of Electrodynamic Forces in Three-Phase Asymmetric Busbar System with the Use of FEM

  • Michał Szulborski,
  • Sebastian Łapczyński,
  • Łukasz Kolimas,
  • Łukasz Kozarek,
  • Desire Dauphin Rasolomampionona

DOI
https://doi.org/10.3390/en13205477
Journal volume & issue
Vol. 13, no. 20
p. 5477

Abstract

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Proper busbar selection based on analytical calculations is of great importance in terms of power grid functioning and its safe usage. Experimental tests concerning busbars are very expensive and difficult to be executed. Therefore, the great advantage for setting the valid parameters for busbar systems components are analytical calculations supported by FEM (finite element method) modelling and analysis. Determining electrodynamic forces in busbar systems tends to be crucial with regard to subsidiary, dependent parameters. In this paper analytical calculations of asymmetric three-phase busbar system were carried out. Key parameters, like maximal electrodynamic forces value, mechanical strength value, busbar natural frequency, etc., were calculated. Calculations were conducted with an ANSYS model of a parallel asymmetric busbar system, which confirmed the obtained results. Moreover, showing that a model based on finite elements tends to be very helpful in the selection of unusually-shaped busbars in various electrotechnical applications, like switchgear.

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