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Corona discharges on the surfaces of high voltage composite insulators

TLDR
In this paper, a study of the atomic emission spectra of the discharge from its onset up to and including spark-over, using a high resolution digital spectrometer with a fiber optic probe, provides further understanding of the roles of the active species of atoms and molecules produced by the discharge that may be responsible for chemical changes of insulator surfaces, but may also contribute to the degradation of the metal fittings that support the high voltage insulators.
Abstract
The degradation of high voltage electrical insulation is a prime factor that can significantly influence the reliability performance and the costs of maintaining high voltage electricity networks. Little information is known about the system of localized degradation from corona discharges on the relatively new silicone rubber sheathed composite insulators that are now being widely used in high voltage applications. This current work focuses on the fundamental principles of electrical corona discharge phenomena to provide further insights to where damaging surface discharges may localize and examines how these discharges may degrade the silicone rubber material. Although water drop corona has been identified by many authors as a major cause of deterioration of silicone rubber high voltage insulation until now no thorough studies have been made of this phenomenon. Results from systematic measurements taken using modern digital instrumentation to simultaneously record the discharge current pulses and visible images associated with corona discharges from between metal electrodes, metal electrodes and water drops, and between waters drops on the surface of silicone rubber insulation, using a range of 50 Hz voltages are inter compared. Visual images of wet electrodes show how water drops can play a part in encouraging flashover, and the first reproducible visual images of water drop corona at the triple junction of water air and silicone rubber insulation are presented. A study of the atomic emission spectra of the corona produced by the discharge from its onset up to and including spark-over, using a high resolution digital spectrometer with a fiber optic probe, provides further understanding of the roles of the active species of atoms and molecules produced by the discharge that may be responsible for not only for chemical changes of insulator surfaces, but may also contribute to the degradation of the metal fittings that support the high voltage insulators. Examples of real insulators and further work specific to the electrical power industry are discussed. A new design concept to prevent/reduce the damaging effects of water drop corona is also presented.

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Citations
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Environmental Effects on HV Dielectric Materials and Related Sensing Technologies

TL;DR: In this article, a review of the influence of environmental factors on highvoltage (HV) materials and components is provided, and Sensing and Artificial Intelligence (AI) technologies developed to prevent the failure of the material structure and HV components are also reported.
Journal ArticleDOI

A study on the role of polypropylene fibers and silica nanoparticles on the compression properties of silicone rubber composites as a material of finger joint implant

TL;DR: In this article, different contents of SiO2 nanoparticles and polypropylene fibers were added to silicone rubber matrix as a material of finger joint implants and mechanical properties of these composites were investigated before and after being soaked in simulated body fluid.
Proceedings ArticleDOI

Positive corona characteristics on RTV SIR coated glass insulating surface under ramp high voltages

TL;DR: In this article, positive corona discharge activity along glass surfaces, in pure form and coated with room temperature vulcanized silicone rubber (RTV SIR), bridging a short needle-plane gap is investigated under positive ramp high voltages.

Application of Non-Linear Microvaristor-Filled Materials in High-Voltage Devices and Algorithmic Optimization of High-Voltage Simulations Based on Surrogate Models

Hanyu Ye
TL;DR: In this article, the applications of micro-varistor-filled materials in high-voltage outdoor insulators and gas-insulated bushings are investigated using FEM simulations, which allow a fast and cost effective determination of electric field distributions.
Dissertation

In-service condition monitoring of polymer housed surge arrester within eThekwini Electricity

TL;DR: In fulfillment of the requirements for the degree of Master in Technology, Durban University of Technology (DURBANET), Durban, South Africa, 2015 as discussed by the authors, the authors
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The Mechanism of the Negative Point to Plane Corona Near Onset

TL;DR: In this article, it was shown that the negative point to plane corona current is composed of discrete pulses whose magnitude and frequency have a definite relationship to the corona currents, point size and gas pressure.
Journal ArticleDOI

Theory of negative corona in oxygen.

R. Morrow
- 01 Sep 1985 - 
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