Multiphysics Analysis of Busbars with Various Arrangements Under Short-circuit Condition
This study presents a coupled electric-magnetic-thermal-mechanical analysis of various busbar arrangements under short-circuit conditions. The Lorentz force, mechanical displacement, and temperature rise in three busbar arrangements are investigated. Busbar systems are studied considering the detailed two-way interactions among separate continuum physics. To this aim, the multiphysics modelling of busbar systems is presented where the coupled electric-magnetic-thermal-mechanical set of equations are solved numerically using finite-element method. Caused by electromagnetic force, the mechanical displacement of conductors in horizontal and vertical arrangements involving multiple conductors in each phase is illustrated. The effects of conductor cross-sectional area on the temperature rise caused by short-circuit current are also investigated. To verify the multiphysics modelling approach under high short-circuit currents, the simulation results are compared with those obtained by existing closed formulas. Moreover, after practical investigation of several busbar systems, the proposed multiphysics modelling approach is applied to the busbar system of a low-voltage switchgear installed in a cement plant.
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Availability:
- Find a library where document is available. Order URL: http://worldcat.org/issn/20429738
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Supplemental Notes:
- Abstract reprinted with permission of the Institution of Engineering and Technology.
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Authors:
- Kadkhodaei, Gholamreza
- Sheshyekani, Keyhan
- Hamzeh, Mohsen
- Tavakoli, Saman Dadjo
- Publication Date: 2016-12
Language
- English
Media Info
- Media Type: Web
- Features: References;
- Pagination: pp 237-245
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Serial:
- IET Electrical Systems in Transportation
- Volume: 6
- Issue Number: 4
- Publisher: Institution of Engineering and Technology (IET)
- ISSN: 2042-9738
- EISSN: 2042-9746
- Serial URL: https://ietresearch.onlinelibrary.wiley.com/journal/20429746
Subject/Index Terms
- TRT Terms: Electrical bus bars; Finite element method; Magnetic properties; Mechanical analysis; Short circuits; Thermal properties
- Subject Areas: Energy; Highways; Vehicles and Equipment;
Filing Info
- Accession Number: 01619852
- Record Type: Publication
- Files: TRIS
- Created Date: Dec 23 2016 3:02PM