Compressed-gas-insulated electric power transmission device has externally stabilized and self-stabilized compensation elements that are arranged between sections to compensate movement of sections relative to one another along path

The device has phase conductors (10a) which are enclosed within an electrically insulated fluid from a capsule housing. The phase conductors are extended along a path (4). The encapsulating structure is divided in sections (2,3) along the path. The compensating elements (1) are arranged between the...

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Hauptverfasser: LUETHY, NORBERT, DAMBIETZ, HANS-PETER
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DAMBIETZ, HANS-PETER
description The device has phase conductors (10a) which are enclosed within an electrically insulated fluid from a capsule housing. The phase conductors are extended along a path (4). The encapsulating structure is divided in sections (2,3) along the path. The compensating elements (1) are arranged between the sections for compensating the movement of sections relative to one another along the path. The first compensating element is an externally stabilized compensation element and the second compensating element is a self-stabilized compensation element. Eine Elektroenergieübertragungseinrichtung weist zumindest einen Phasenleiter (10a, 10b, 10c) auf. Der Phasenleiter (10a, 10b, 10c) ist innerhalb eines Fluids elektrisch isoliert von einem Kapselungsgehäuse umschlossen. Der Phasenleiter (10a, 10b, 10c) verläuft längs einer Bahn (4). Das Kapselungsgehäuse ist längs der Bahn (4) in Abschnitte (2, 3, 23, 25, 27) unterteilt. Zwischen den Abschnitten (2, 3, 23, 25, 27) sind zur Kompensation von Relativbewegungen der Abschnitte (2, 3, 23, 25, 27) relativ zueinander längs der Bahn (4) zumindest ein erstes Kompensationselement (1, 26, 28) sowie ein zweites Kompensationselement (14) angeordnet. Das erste Kompensationselement (1, 26, 28) ist ein fremdstabilisiertes Kompensationselement (1, 26, 28). Das zweite Kompensationselement (14) ist ein eigenstabilisiertes Kompensationselement (14).
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The phase conductors are extended along a path (4). The encapsulating structure is divided in sections (2,3) along the path. The compensating elements (1) are arranged between the sections for compensating the movement of sections relative to one another along the path. The first compensating element is an externally stabilized compensation element and the second compensating element is a self-stabilized compensation element. Eine Elektroenergieübertragungseinrichtung weist zumindest einen Phasenleiter (10a, 10b, 10c) auf. Der Phasenleiter (10a, 10b, 10c) ist innerhalb eines Fluids elektrisch isoliert von einem Kapselungsgehäuse umschlossen. Der Phasenleiter (10a, 10b, 10c) verläuft längs einer Bahn (4). Das Kapselungsgehäuse ist längs der Bahn (4) in Abschnitte (2, 3, 23, 25, 27) unterteilt. Zwischen den Abschnitten (2, 3, 23, 25, 27) sind zur Kompensation von Relativbewegungen der Abschnitte (2, 3, 23, 25, 27) relativ zueinander längs der Bahn (4) zumindest ein erstes Kompensationselement (1, 26, 28) sowie ein zweites Kompensationselement (14) angeordnet. Das erste Kompensationselement (1, 26, 28) ist ein fremdstabilisiertes Kompensationselement (1, 26, 28). 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Zwischen den Abschnitten (2, 3, 23, 25, 27) sind zur Kompensation von Relativbewegungen der Abschnitte (2, 3, 23, 25, 27) relativ zueinander längs der Bahn (4) zumindest ein erstes Kompensationselement (1, 26, 28) sowie ein zweites Kompensationselement (14) angeordnet. Das erste Kompensationselement (1, 26, 28) ist ein fremdstabilisiertes Kompensationselement (1, 26, 28). 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The phase conductors are extended along a path (4). The encapsulating structure is divided in sections (2,3) along the path. The compensating elements (1) are arranged between the sections for compensating the movement of sections relative to one another along the path. The first compensating element is an externally stabilized compensation element and the second compensating element is a self-stabilized compensation element. Eine Elektroenergieübertragungseinrichtung weist zumindest einen Phasenleiter (10a, 10b, 10c) auf. Der Phasenleiter (10a, 10b, 10c) ist innerhalb eines Fluids elektrisch isoliert von einem Kapselungsgehäuse umschlossen. Der Phasenleiter (10a, 10b, 10c) verläuft längs einer Bahn (4). Das Kapselungsgehäuse ist längs der Bahn (4) in Abschnitte (2, 3, 23, 25, 27) unterteilt. Zwischen den Abschnitten (2, 3, 23, 25, 27) sind zur Kompensation von Relativbewegungen der Abschnitte (2, 3, 23, 25, 27) relativ zueinander längs der Bahn (4) zumindest ein erstes Kompensationselement (1, 26, 28) sowie ein zweites Kompensationselement (14) angeordnet. Das erste Kompensationselement (1, 26, 28) ist ein fremdstabilisiertes Kompensationselement (1, 26, 28). Das zweite Kompensationselement (14) ist ein eigenstabilisiertes Kompensationselement (14).</abstract><oa>free_for_read</oa></addata></record>
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subjects BOARDS, SUBSTATIONS, OR SWITCHING ARRANGEMENTS FOR THE SUPPLYOR DISTRIBUTION OF ELECTRIC POWER
CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
ELECTRICITY
GENERATION
INSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINEDOPTICAL AND ELECTRIC CABLES OR LINES
title Compressed-gas-insulated electric power transmission device has externally stabilized and self-stabilized compensation elements that are arranged between sections to compensate movement of sections relative to one another along path
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