Claims
- 1. A hybrid type gas insulation switch gear apparatus, comprising:
a main enclosure including a first cylindrical section having a base and a second cylindrical section branched from the base, the first and second sections having first and second openings and first and second hollow spaces; a bushing mounted on the first openings and including a hollow insulating housing having a housing space and a central conductor extended in the hollow insulating housing; a first insulating spacer provided in the first cylindrical section and configured to separate the first hollow space into first and second segment spaces; an insulating enclosure mounted to the second opening of the second cylindrical section and including an enclosure space, an insulating gas being sealed in the main enclosure and the insulating enclosure; a second insulating spacer provided between the insulating enclosure and the second cylindrical section and configured to separate the enclosure space from the second hollow space; a first fixed electrode electrically connected to the conductor and a first movable electrode which are received in the first cylindrical section to form a disconnecting switch; an insulating member configured to support the first fixed electrode on the first cylindrical section; a connecting conductor electrically connected to the first movable electrode of the disconnecting switch, arranged in the first cylindrical section, and including a branched conductor extending in the second cylindrical section; a main electrode provided in the insulating enclosure; a second movable electrode provided in the insulating enclosure and configured to be moved to the main electrode and electrically connected to the main electrode and the connecting conductor to form a circuit breaker connected to the disconnecting switch in series; a current transformer arranged around the second cylindrical section to detect a current flowing through the connecting conductor; and an earth switch mounted to the first cylindrical section and including a movable counter electrode configured to connect and disconnect the fixed electrode of the disconnecting switch to the ground.
- 2. The hybrid type gas insulation switch gear apparatus according to claim 1, further comprising a driving mechanism configured to drive the second movable electrode of the circuit breaker, which is arranged in the connecting conductor.
- 3. The hybrid type gas insulation switch gear apparatus according to claim 1, wherein the insulating member has a substantially columnar shape, which is fixed in the first cylindrical section and supports the conductor of the bushing.
- 4. The hybrid type gas insulation switch gear apparatus according to claim 1, wherein the current transformer is of a light transforming type.
- 5. The hybrid type gas insulation switch gear apparatus according to claim 1, wherein one of the insulating enclosure and the hollow insulating housing is formed of porcelain.
- 6. The hybrid type gas insulation switch gear apparatus according to claim 1, wherein one of the insulating enclosure and the hollow insulating housing is formed of a non-porcelain material.
- 7. A hybrid type gas insulation switch gear apparatus, comprising:
a main enclosure including a first cylindrical section having a base and second and third cylindrical sections branched from the base, the first, second and third sections having first, second and third openings and first, second and third hollow spaces; first and second bushings mounted on first and third openings and including first and second hollow insulating housings having housing spaces and central conductors extended in the hollow insulating housing, respectively; first and second insulating spacers provided in the first and third cylindrical sections and configured to separate the first and second hollow spaces into first and second segment spaces, respectively; an insulating enclosure mounted to the second opening of the second cylindrical section and including an enclosure space, an insulating gas being sealed in the main enclosure and the insulating enclosure; a second insulating spacer provided between the insulating enclosure and the second cylindrical section and configured to separate the enclosure space from the second hollow space; first and second fixed electrode electrically connected to the first and second conductors and first and second movable electrode which are received in the first and third cylindrical sections to form first and second disconnecting switches, respectively; first and second insulating members configured to support the first and second fixed electrodes on the first and third cylindrical sections, respectively; a connecting conductor electrically connected to the first and second movable electrodes of the first and second disconnecting switches, arranged in the first and third cylindrical sections, and including a branched conductor extending in the second cylindrical section; a main electrode provided in the insulating enclosure; a second movable electrode provided in the insulating enclosure and configured to be moved to the main electrode and electrically connected to the main electrode and the connecting conductor to form a circuit breaker connected to the first and second disconnecting switch in series, respectively; a current transformer arranged around the second cylindrical section to detect a current flowing through the connecting conductor; and first and second earth switch mounted to the first and third cylindrical sections and including a movable counter electrode configured to connect and disconnect the first and second fixed electrodes of the disconnecting switch to the ground.
- 8. The hybrid type gas insulation switch gear apparatus according to claim 6, further comprising a driving mechanism configured to drive the second movable electrode of the circuit breaker, which is arranged in the connecting conductor.
- 9. The hybrid type gas insulation switch gear apparatus according to claim 6, wherein the insulating members have a substantially columnar shape, which are fixed in the first and third cylindrical section and supports the conductors of the first and second bushings, respectively.
- 10. The hybrid type gas insulation switch gear apparatus according to claim 6, wherein the current transformer is of a light transforming type.
- 11. The hybrid type gas insulation switch gear apparatus according to claim 1, wherein one of the insulating enclosure and the hollow insulating housings is formed of porcelain.
- 12. The hybrid type gas insulation switch gear apparatus according to claim 1, wherein one of the insulating enclosure and the hollow insulating housings is formed of a non-porcelain material.
- 13. A hybrid type gas insulation switch gear apparatus, comprising:
a main enclosure including a hollow base section and first and second cylindrical sections branched from the hollow base section, the first and second sections having first and second openings and first and second hollow spaces; first and second bushings mounted on first and second openings and including first and second hollow insulating housings having housing spaces and central conductors extended in the hollow insulating housing, respectively; first and second insulating spacers provided in the first and second cylindrical sections and configured to separate the first and second hollow spaces into first and second segment spaces, respectively; first and second fixed electrode electrically connected to the first and second conductors and first and second movable electrode which are received in the first segment spaces of the first and second cylindrical sections to form first and second disconnecting switches, respectively; first and second insulating members configured to support the first and second movable electrodes on the first and third cylindrical sections, respectively; a connecting conductor electrically connected to the first and second fixed electrodes of the first and second disconnecting switches, arranged in the first and second cylindrical sections and the hollow base section; a main electrode provided in the hollow base section; a second movable electrode provided in hollow base section and configured to be moved to the main electrode and electrically connected to the main electrode and the connecting conductor to form a circuit breaker connected to the first and second disconnecting switch in series, respectively; current transformers arranged around the first and second cylindrical sections to detect a current flowing through the connecting conductor; and first and second earth switch mounted to the first and second cylindrical sections and including a movable counter electrode configured to connect and disconnect the first and second fixed electrodes of the disconnecting switch to the ground.
- 14. The hybrid type gas insulation switch gear apparatus according to claim 6, further comprising a driving mechanism configured to drive the second movable electrode of the circuit breaker, which is arranged in the connecting conductor.
- 15. The hybrid type gas insulation switch gear apparatus according to claim 6, wherein the insulating members have a substantially columnar shape, which are fixed in the first and third cylindrical section and supports the conductors of the first and second bushings, respectively.
- 16. The hybrid type gas insulation switch gear apparatus according to claim 12, wherein the current transformer is of a light transforming type.
- 17. The hybrid type gas insulation switch gear apparatus according to claim 12, wherein the hollow insulating housings are formed of porcelain.
- 18. The hybrid type gas insulation switch gear apparatus according to claim 12, wherein the hollow insulating housings is formed of a non-porcelain material.
- 19. A hybrid type gas insulation switch gear apparatus, comprising:
a main enclosure including a first cylindrical section having a base and a second cylindrical section branched from the base of the first cylindrical section, the first and second sections having first and second openings and first and second hollow spaces; first and second bushings mounted on first and second openings and including first and second hollow insulating housings having housing spaces and central conductors extended in the hollow insulating housing, respectively; first and second insulating spacers provided in the first and second cylindrical sections and configured to separate the first and second hollow spaces into first and second segment spaces, respectively; first and second movable electrode electrically connected to the first and second conductors and first and second fixed electrode which are received in the first segment spaces of the first and second cylindrical sections to form first and second disconnecting switches, respectively; first and second insulating members configured to support the first and second fixed electrodes on the first and third cylindrical sections, respectively; connecting conductors electrically connected to the first and second fixed electrodes of the first and second disconnecting switches, arranged in the first and second cylindrical sections and the hollow base section; a main electrode provided in the base of the first cylindrical section and connected to corresponding one of the connecting conductors; a second movable electrode provided in the base of the first cylindrical section and configured to be moved to the main electrode and electrically connected to the main electrode and another one of the connecting conductors to form a circuit breaker connected to the first and second disconnecting switch in series, respectively; current transformers arranged around the first and second cylindrical sections to detect a current flowing through the connecting conductor; and first and second earth switch mounted to the first and second cylindrical sections and including a movable counter electrode configured to connect and disconnect the first and second fixed electrodes of the disconnecting switch to the ground.
- 20. The hybrid type gas insulation switch gear apparatus according to claim 18, further comprising a driving mechanism configured to drive the second movable electrode of the circuit breaker, which is arranged in the one of connecting conductor.
- 21. The hybrid type gas insulation switch gear apparatus according to claim 18, wherein the insulating members have a substantially columnar shape, which are fixed in the first and second cylindrical section and supports the conductors of the first and second bushings, respectively.
- 22. The hybrid type gas insulation switch gear apparatus according to claim 18, wherein the current transformer is of a light transforming type.
- 23. The hybrid type gas insulation switch gear apparatus according to claim 18, wherein the hollow insulating housings are formed of porcelain.
- 24. The hybrid type gas insulation switch gear apparatus according to claim 18, wherein the hollow insulating housings is formed of a non-porcelain material.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-234920 |
Aug 2000 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is based upon and claims the benefit of priority from the prior Japanese Patent Application No. 2000-234920, filed Aug. 2, 2000, the entire contents of which are incorporated herein by reference.