2020
DOI: 10.1109/access.2020.2980946
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Effects of Temperature Gradient on Electrical Tree Growth and Partial Discharge in Silicone Rubber Under AC Voltage

Abstract: The Joule heat produced by the current in conductor decreases in the radial direction, producing a temperature gradient in the insulation. This existing temperature gradient can affect the electrical tree phenomenon in insulation materials because of the temperature dependence of insulation material, charge migration and tree growth. Different temperature gradients were obtained by controlling the temperature of high voltage (HV) and ground electrode (GD) sides. The electrical tree was recorded by a microscope… Show more

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Cited by 10 publications
(1 citation statement)
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“…They have illustrated how more densely packed structure is formed at higher voltages. Du et al have examined influence of temperature of HV and ground electrode as well as temperature gradient on the development of ETs and PD characteristics [126]. As shown in Figure 41, by increasing the temperature gradient, PD magnitude increases, while at higher temperature of HV electrode, PDs with lower magnitude are observed.…”
Section: 2) Electrical and Water Treesmentioning
confidence: 99%
“…They have illustrated how more densely packed structure is formed at higher voltages. Du et al have examined influence of temperature of HV and ground electrode as well as temperature gradient on the development of ETs and PD characteristics [126]. As shown in Figure 41, by increasing the temperature gradient, PD magnitude increases, while at higher temperature of HV electrode, PDs with lower magnitude are observed.…”
Section: 2) Electrical and Water Treesmentioning
confidence: 99%