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      Field distortion by a single cavity in HVDC XLPE cable under steady state

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          Abstract

          Electric field distribution in high voltage direct current (HVDC) cross-linked polyethylene (XLPE) cable at steady state is researched in this study. Under the condition that no cavity exists, equations describing the critical temperature difference for field reversal, and electric field distribution at steady state are proposed. When the cable with cavity is studied via the finite element analysis method, 2D and 3D model can be two possible choices. The comparison between these two models provides the reference for model selection so that the problem can be solved correctly. To study field enhancement by a single air-filled cavity at steady state, some possibly influenced factors are considered, including the cavity location, cavity size, cavity shape, temperature difference and material type. The equation describing field enhancement is given in the study.

          Most cited references13

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          Review of high voltage direct current cables

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            A molecular model to evaluate the impact of aging on space charges in polymer dielectrics

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              Partial discharges in ellipsoidal and spheroidal voids

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                Author and article information

                Contributors
                Journal
                HVE
                High Voltage
                High Volt.
                The Institution of Engineering and Technology
                2397-7264
                October 2016
                : 1
                : 3
                : 107-114
                Affiliations
                Faculty of Physics and Applied Science, School of Electronic and Computer Science, University of Southampton , Southampton, UK
                Article
                HVE.2016.0013 HVE.2016.0013.R1
                10.1049/hve.2016.0013
                a6007523-74e3-44ea-bc53-7827b92c46a2

                This is an open access article published by the IET and CEPRI under the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/3.0/)

                History
                : 5 May 2016
                : 11 July 2016
                : 23 July 2016
                Categories
                Research Articles

                Computer science,Engineering,Artificial intelligence,Electrical engineering,Mechanical engineering,Renewable energy
                power cable insulation,XLPE insulation,finite element analysis,HVDC XLPE cable,electric field distribution,high voltage direct current cross-linked polyethylene cable,finite element analysis method,2D model,3D model,single air-filled cavity distortion

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