Koch, Myriam ; Hohloch, Jens ; Wirth, Isabell ; Sturm, Sebastian ; Zink, Markus H. ; Kuechler, Andreas (2018)
Experimental and simulative analysis of the thermal behavior of high voltage cable joints.
VDE High Voltage Technology. Berlin, Germany (12.-14.11.2018)
Konferenzveröffentlichung, Bibliographie
Kurzbeschreibung (Abstract)
Nowadays, cable systems are often preferred when deciding on the type of new transmission lines even in the high and extra high voltage range. One of the main reasons is the better public acceptance. In addition, the power to be transmitted in the grid is increasing leading to increased ohmic losses and thus, to higher thermal stress on the materials. The investigations in this contribution focus on cable joints, which represent important and decisive components of cable systems. In order to optimize the design and to ensure reliable operation over the entire service life, the temperature profile within these components is of special interest. For their detailed investigation, a test circuit was set up consisting of a cable section and sections with build-up stages of a cable joint. A large number of measuring points were defined also at points where no measurement is possible in normal operation. With a thermographic camera the surface temperature distributions were observed. With the laboratory setup temperature profiles under various load conditions were recorded. A detailed FEM model was built and verified with help of these measurements. The model permits the investigation of specific questions of cable systems such as the comparison of temperature loads resulting from normal operating conditions and of test procedures according to the relevant standards. Besides others the effect of stressing the insulation and sealing system by heating the inner conductor vs. heating from outside by surrounding water is discussed.
Typ des Eintrags: | Konferenzveröffentlichung |
---|---|
Erschienen: | 2018 |
Autor(en): | Koch, Myriam ; Hohloch, Jens ; Wirth, Isabell ; Sturm, Sebastian ; Zink, Markus H. ; Kuechler, Andreas |
Art des Eintrags: | Bibliographie |
Titel: | Experimental and simulative analysis of the thermal behavior of high voltage cable joints |
Sprache: | Englisch |
Publikationsjahr: | 16 Dezember 2018 |
Verlag: | VDE-Verlag |
Buchtitel: | VDE-Fachtagung Hochspannungstechnik 2018 |
Reihe: | ETG Fachbericht |
Band einer Reihe: | 157 |
Veranstaltungstitel: | VDE High Voltage Technology |
Veranstaltungsort: | Berlin, Germany |
Veranstaltungsdatum: | 12.-14.11.2018 |
URL / URN: | https://ieeexplore.ieee.org/document/8576752 |
Kurzbeschreibung (Abstract): | Nowadays, cable systems are often preferred when deciding on the type of new transmission lines even in the high and extra high voltage range. One of the main reasons is the better public acceptance. In addition, the power to be transmitted in the grid is increasing leading to increased ohmic losses and thus, to higher thermal stress on the materials. The investigations in this contribution focus on cable joints, which represent important and decisive components of cable systems. In order to optimize the design and to ensure reliable operation over the entire service life, the temperature profile within these components is of special interest. For their detailed investigation, a test circuit was set up consisting of a cable section and sections with build-up stages of a cable joint. A large number of measuring points were defined also at points where no measurement is possible in normal operation. With a thermographic camera the surface temperature distributions were observed. With the laboratory setup temperature profiles under various load conditions were recorded. A detailed FEM model was built and verified with help of these measurements. The model permits the investigation of specific questions of cable systems such as the comparison of temperature loads resulting from normal operating conditions and of test procedures according to the relevant standards. Besides others the effect of stressing the insulation and sealing system by heating the inner conductor vs. heating from outside by surrounding water is discussed. |
Fachbereich(e)/-gebiet(e): | 18 Fachbereich Elektrotechnik und Informationstechnik 18 Fachbereich Elektrotechnik und Informationstechnik > Institut für Elektrische Energiesysteme > Hochspannungstechnik 18 Fachbereich Elektrotechnik und Informationstechnik > Institut für Elektrische Energiesysteme |
Hinterlegungsdatum: | 04 Apr 2024 08:32 |
Letzte Änderung: | 23 Jul 2024 09:33 |
PPN: | 520086015 |
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