Journal of Advanced Dielectrics, Volume. 11, Issue 4, 2150022(2021)

Assessment of dielectric strength and partial discharges patterns in nanocomposites insulation of single-core power cables

[in Chinese]1,2、* and [in Chinese]3
Author Affiliations
  • 1Nanotechnology Research Center Electrical Engineering Dept. Faculty of Energy Engineering Aswan University, Aswan, Egypt
  • 2Electrical Engineering Dept. College of Engineering and Information Technology Buraydah Colleges, KSA
  • 3Hydro Power Plant Generation Company Nag Hammadi Hydro Power Plant, Qena, Egypt
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    Nanoparticles succeeded to enhance the dielectric properties of industrial insulation but the presence of voids inside the power cable insulation still leads to formation high electrical stress inside power cable insulation material and collapse. In this paper, the dielectric strength of new design nanocomposites has been deduced as experimental work done to clarify the benefit of filling nanoparticles with different patterns inside dielectrics. Also, it has been studied the effect of electrical stress distribution in presence of air, water and copper impurities with different shapes (cylinder, sphere and ellipse) inside insulation of single core. In simulation model, it has been used finite element method (FEM) for estimating the electrostatic field distribution in power cable insulation. It has been applied new strategies of nanotechnology techniques for designing innovative polyvinyl chloride insula-tion materials by using nanocomposites and multi-nanocomposites. Finally, this research succeeded to remedy different partial discharges (PD) patterns according to using certain types and concentrations of nanoparticles.

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    [in Chinese], [in Chinese]. Assessment of dielectric strength and partial discharges patterns in nanocomposites insulation of single-core power cables[J]. Journal of Advanced Dielectrics, 2021, 11(4): 2150022

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    Paper Information

    Received: May. 18, 2021

    Accepted: --

    Published Online: Feb. 22, 2022

    The Author Email: (athm@aswu.edu.eg)

    DOI:10.1142/s2010135x21500223

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