The Experts below are selected from a list of 312 Experts worldwide ranked by ideXlab platform

Pingkai Jiang - One of the best experts on this subject based on the ideXlab platform.

  • finite element analysis of electric field distribution in water treed xlpe cable insulation 1 the influence of Geometrical Configuration of water electrode for accelerated water treeing test
    Polymer Testing, 2007
    Co-Authors: Jongbok Jang, Xingyi Huang, Pingkai Jiang
    Abstract:

    Water trees are localized degraded zones that can be found in the polymeric insulation of service-aged underground cables, and observed as microchannels or chains of microcavities in the bulk of a solid dielectric material. Since water trees have microscale local structures, some phenomena related to them can be understood and analyzed in detail only when using numerical analysis methods such as finite element method (FEM). For the artificial accelerated growth of water trees, water electrodes in needle form or with conical structure are often utilized, and then some unexpected initiation positions and shapes of water trees have frequently been observed. This paper deals with the investigation of the influence of the Geometrical Configuration of water electrodes on water tree initiation and its shape, on the basis of numerical experiment results using the FEM and accelerated water treeing test data.

  • Finite element analysis of electric field distribution in water treed XLPE cable insulation (1): The influence of Geometrical Configuration of water electrode for accelerated water treeing test
    Polymer Testing, 2007
    Co-Authors: Chonung Kim, Jongbok Jang, Pingkai Jiang, Xingyi Huang, Hyeil Kim
    Abstract:

    Water trees are localized degraded zones that can be found in the polymeric insulation of service-aged underground cables, and observed as microchannels or chains of microcavities in the bulk of a solid dielectric material. Since water trees have microscale local structures, some phenomena related to them can be understood and analyzed in detail only when using numerical analysis methods such as finite element method (FEM). For the artificial accelerated growth of water trees, water electrodes in needle form or with conical structure are often utilized, and then some unexpected initiation positions and shapes of water trees have frequently been observed. This paper deals with the investigation of the influence of the Geometrical Configuration of water electrodes on water tree initiation and its shape, on the basis of numerical experiment results using the FEM and accelerated water treeing test data. © 2007 Elsevier Ltd. All rights reserved.

Jongbok Jang - One of the best experts on this subject based on the ideXlab platform.

  • finite element analysis of electric field distribution in water treed xlpe cable insulation 1 the influence of Geometrical Configuration of water electrode for accelerated water treeing test
    Polymer Testing, 2007
    Co-Authors: Jongbok Jang, Xingyi Huang, Pingkai Jiang
    Abstract:

    Water trees are localized degraded zones that can be found in the polymeric insulation of service-aged underground cables, and observed as microchannels or chains of microcavities in the bulk of a solid dielectric material. Since water trees have microscale local structures, some phenomena related to them can be understood and analyzed in detail only when using numerical analysis methods such as finite element method (FEM). For the artificial accelerated growth of water trees, water electrodes in needle form or with conical structure are often utilized, and then some unexpected initiation positions and shapes of water trees have frequently been observed. This paper deals with the investigation of the influence of the Geometrical Configuration of water electrodes on water tree initiation and its shape, on the basis of numerical experiment results using the FEM and accelerated water treeing test data.

  • Finite element analysis of electric field distribution in water treed XLPE cable insulation (1): The influence of Geometrical Configuration of water electrode for accelerated water treeing test
    Polymer Testing, 2007
    Co-Authors: Chonung Kim, Jongbok Jang, Pingkai Jiang, Xingyi Huang, Hyeil Kim
    Abstract:

    Water trees are localized degraded zones that can be found in the polymeric insulation of service-aged underground cables, and observed as microchannels or chains of microcavities in the bulk of a solid dielectric material. Since water trees have microscale local structures, some phenomena related to them can be understood and analyzed in detail only when using numerical analysis methods such as finite element method (FEM). For the artificial accelerated growth of water trees, water electrodes in needle form or with conical structure are often utilized, and then some unexpected initiation positions and shapes of water trees have frequently been observed. This paper deals with the investigation of the influence of the Geometrical Configuration of water electrodes on water tree initiation and its shape, on the basis of numerical experiment results using the FEM and accelerated water treeing test data. © 2007 Elsevier Ltd. All rights reserved.

Hyeil Kim - One of the best experts on this subject based on the ideXlab platform.

  • Finite element analysis of electric field distribution in water treed XLPE cable insulation (1): The influence of Geometrical Configuration of water electrode for accelerated water treeing test
    Polymer Testing, 2007
    Co-Authors: Chonung Kim, Jongbok Jang, Pingkai Jiang, Xingyi Huang, Hyeil Kim
    Abstract:

    Water trees are localized degraded zones that can be found in the polymeric insulation of service-aged underground cables, and observed as microchannels or chains of microcavities in the bulk of a solid dielectric material. Since water trees have microscale local structures, some phenomena related to them can be understood and analyzed in detail only when using numerical analysis methods such as finite element method (FEM). For the artificial accelerated growth of water trees, water electrodes in needle form or with conical structure are often utilized, and then some unexpected initiation positions and shapes of water trees have frequently been observed. This paper deals with the investigation of the influence of the Geometrical Configuration of water electrodes on water tree initiation and its shape, on the basis of numerical experiment results using the FEM and accelerated water treeing test data. © 2007 Elsevier Ltd. All rights reserved.

Xingyi Huang - One of the best experts on this subject based on the ideXlab platform.

  • finite element analysis of electric field distribution in water treed xlpe cable insulation 1 the influence of Geometrical Configuration of water electrode for accelerated water treeing test
    Polymer Testing, 2007
    Co-Authors: Jongbok Jang, Xingyi Huang, Pingkai Jiang
    Abstract:

    Water trees are localized degraded zones that can be found in the polymeric insulation of service-aged underground cables, and observed as microchannels or chains of microcavities in the bulk of a solid dielectric material. Since water trees have microscale local structures, some phenomena related to them can be understood and analyzed in detail only when using numerical analysis methods such as finite element method (FEM). For the artificial accelerated growth of water trees, water electrodes in needle form or with conical structure are often utilized, and then some unexpected initiation positions and shapes of water trees have frequently been observed. This paper deals with the investigation of the influence of the Geometrical Configuration of water electrodes on water tree initiation and its shape, on the basis of numerical experiment results using the FEM and accelerated water treeing test data.

  • Finite element analysis of electric field distribution in water treed XLPE cable insulation (1): The influence of Geometrical Configuration of water electrode for accelerated water treeing test
    Polymer Testing, 2007
    Co-Authors: Chonung Kim, Jongbok Jang, Pingkai Jiang, Xingyi Huang, Hyeil Kim
    Abstract:

    Water trees are localized degraded zones that can be found in the polymeric insulation of service-aged underground cables, and observed as microchannels or chains of microcavities in the bulk of a solid dielectric material. Since water trees have microscale local structures, some phenomena related to them can be understood and analyzed in detail only when using numerical analysis methods such as finite element method (FEM). For the artificial accelerated growth of water trees, water electrodes in needle form or with conical structure are often utilized, and then some unexpected initiation positions and shapes of water trees have frequently been observed. This paper deals with the investigation of the influence of the Geometrical Configuration of water electrodes on water tree initiation and its shape, on the basis of numerical experiment results using the FEM and accelerated water treeing test data. © 2007 Elsevier Ltd. All rights reserved.

Chonung Kim - One of the best experts on this subject based on the ideXlab platform.

  • Finite element analysis of electric field distribution in water treed XLPE cable insulation (1): The influence of Geometrical Configuration of water electrode for accelerated water treeing test
    Polymer Testing, 2007
    Co-Authors: Chonung Kim, Jongbok Jang, Pingkai Jiang, Xingyi Huang, Hyeil Kim
    Abstract:

    Water trees are localized degraded zones that can be found in the polymeric insulation of service-aged underground cables, and observed as microchannels or chains of microcavities in the bulk of a solid dielectric material. Since water trees have microscale local structures, some phenomena related to them can be understood and analyzed in detail only when using numerical analysis methods such as finite element method (FEM). For the artificial accelerated growth of water trees, water electrodes in needle form or with conical structure are often utilized, and then some unexpected initiation positions and shapes of water trees have frequently been observed. This paper deals with the investigation of the influence of the Geometrical Configuration of water electrodes on water tree initiation and its shape, on the basis of numerical experiment results using the FEM and accelerated water treeing test data. © 2007 Elsevier Ltd. All rights reserved.