Publication | Open Access
Towards Electrothermal Optimization of a HVDC Cable Joint Based on Field Simulation
14
Citations
10
References
2021
Year
Electrical EngineeringEngineeringCable SheathElectrical TransmissionTransmission LineHvdc Cable JointField GradingComputational ElectromagneticsElectronic PackagingField SimulationNumerical Field SimulationTowards Electrothermal OptimizationElectrical InsulationElectromagnetic Compatibility
Extruded high-voltage direct current cable systems transmit electric power over long distances. Numerical field simulation can provide access to the internal electrothermal behavior of cable joints, which interconnect cable sections. However, coupled nonlinear electrothermal field simulations are still a challenge. In this work, a robust numerical solution approach is implemented and validated. This approach allows for efficient parameter studies of resistively graded high-voltage direct current cable joint designs. It is assessed how the dielectric stress distribution between the conductor connection and the grounded cable sheath is influenced by nonlinear field and temperature dependent electric conductivity of the field grading material. Optimal field grading material parameters, which fulfill the field grading and power loss requirements, are suggested based on the simulation studies.
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