Journal of Physics D Applied Physics · 1997 · 33 citations · 6 references
Electrical EngineeringIndustrial ApplicationsEngineeringElectrical ArcHigh Voltage EngineeringHydrodynamic ModelMechanical EngineeringNumerical SimulationCircuit BreakerModeling And SimulationPropulsionPower ElectronicsGas Discharge PlasmaPower Electronic DevicesElectrical Insulation
A hydrodynamic model for electrical arc modelling, which takes into account Joule heating, radiation, Lorentz forces, arc - wall interactions and real-gas effects, was applied to study high-, medium- and low-voltage circuit breakers. The first industrial application deals with a high-voltage puffer circuit breaker. Ablation of the nozzle material in this kind of circuit breaker has been studied with the model. The second industrial application presents an self-blast medium-voltage circuit breaker, based on the combination of thermal expansion and the arc-rotation principle. The temperature between the contacts just after the current zero has been evaluated experimentally and numerically. The comparison between these results is discussed. Lastly, the arc commutation in a low-voltage circuit breaker has been simulated. The results show that, in this type of experimental set-up, the interaction among the electrical arc, the flow and the Lorentz force is preponderant.
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C. B. Ruchti, L. Niemeyer · IEEE Transactions on Plasma Science · 1986 · 223 citations
Engineering, Mass Ablation Rate, Minimally Invasive Procedure +9