IP Library Granted Patent US 10,038,312
Granted Patent B2
US 10,038,312 · App. 15/506,879 · Granted Jul 31, 2018

High-voltage combined electrical apparatus

Inventors: Yan Song Li (Jinan, CN); Xue Hua Lu (Shanghai, CN); Yi Fei Ni (Ningbo, CN); Yong Hui Wang (Hangzhou, CN); Jian Zhou (Beijing, CN)
Assignee: SIEMENS AKTIENGESELLSCHAFT
H02B5/06H02B1/04H02B1/20H02B1/26H02B1/28
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Quick Facts
Patent No.
US 10,038,312
App. No.
15/506,879
Granted
Jul 31, 2018
Kind
B2
Abstract

A high-voltage combined electrical apparatus includes a transformer, at least one circuit breaker, at least one oil/gas separation module and at least one operating mechanism. In an embodiment, the circuit breaker includes a ceramic insulator, an upper outgoing line seat, a lower outgoing line seat, and a disconnecting mechanism connected there between. The oil/gas separation module includes a first end electrically connected to a transformer coil of the transformer, and a second end electrically connected to the lower outgoing line seat. The operating mechanism is connected to and controls the disconnecting mechanism. The high-voltage combined electrical apparatus of an embodiment integrates a circuit breaker and a transformer, omitting the conventional transformer oil/gas sleeve and overhead line, so that the structure thereof is simpler, the cost is lower, the area of ground occupied by the equipment is reduced, and the occurrence of short circuits associated with overhead lines is avoided.

Claims (32)

1. A high-voltage combined electrical apparatus, comprising:

a transformer including a transformer coil;

three circuit breakers, each of the three circuit breakers including a ceramic insulator, an upper outgoing line seat, a lower outgoing line seat, and a circuit-breaking mechanism connected between the upper outgoing line seat and the lower outgoing line seat;

three oil/gas separation modules, each of the three oil/gas separation module including a first end electrically connected to the transformer coil of the transformer, and a second end electrically connected to the lower outgoing line seat; and

an operating mechanism, connected to and configured to control the circuit-breaking mechanism,

wherein each of the three circuit breakers are disposed at a relatively top portion of the transformer, and wherein the first ends of each of the three oil/gas separation modules are electrically connected to the transformer coil via a lead wire.

2. The high-voltage combined electrical apparatus of claim 1 , further comprising:

a connecting rod compartment fixed to a housing of the transformer, the lower outgoing line seats of the three circuit breakers each being respectively connected, individually, to a top portion of the connecting rod compartment, and the second ends of the three oil/gas separation modules each being respectively connected, individually, to a bottom portion of the connecting rod compartment.

3. The high-voltage combined electrical apparatus of claim 2 , wherein each of the three oil/gas separation modules includes an oil/gas separation module housing and an insulating support base, the lower outgoing line seat passing through a second end of a respective one of the three oil/gas separation modules and being connected to the transformer via an insulator; wherein an upper part of a pull rod passes through the lower outgoing line seat and is connected to the circuit-breaking mechanism; and wherein a lower part of the pull rod passes through the insulating support base and is connected to the operating mechanism, and maintains gas-tightness via a seal.

4. The high-voltage combined electrical apparatus of claim 2 , wherein the three circuit breakers are disposed at a side of the transformer.

5. The high-voltage combined electrical apparatus of claim 4 , wherein the first end of each of the three oil/gas separation modules is connected mechanically to a housing of the transformer, wherein the second end of each of the three oil/gas separation modules is connected mechanically to the lower outgoing line seat; and wherein each of the three oil/gas separation modules further includes a third end, a pull rod passing through the second end, the third end and the lower outgoing line seat, and connecting the circuit-breaking mechanism and the operating mechanism.

6. The high-voltage combined electrical apparatus of claim 5 , further comprising:

a support platform fixed to a side of the transformer housing, wherein the third end of each of the three oil/gas separation modules is fixed mechanically to the support platform.

7. The high-voltage combined electrical apparatus of claim 6 , wherein the operating mechanism includes three operating mechanisms, each said pull rod individually connecting a respective one said circuit-breaking mechanism and a respective one said three operating mechanism.

8. The high-voltage combined electrical apparatus of claim 6 , wherein the operating mechanism includes one single operating mechanism, the high-voltage combined electrical apparatus further comprising a connecting rod mechanism connected to the one single operating mechanism.

9. The high-voltage combined electrical apparatus of claim 1 , wherein at least one of the three circuit breakers is disposed at a side of the transformer.

10. The high-voltage combined electrical apparatus of claim 9 , wherein the first end of each of the three oil/gas separation modules is connected mechanically to a housing of the transformer, wherein the second end of each of the three oil/gas separation modules is connected mechanically to the lower outgoing line seat; and wherein each of the three oil/gas separation modules further includes a third end, a pull rod passing through the second end, the third end and the lower outgoing line seat, and connecting the circuit-breaking mechanism and the operating mechanism.

11. The high-voltage combined electrical apparatus of claim 10 , further comprising:

a support platform fixed to a side of the transformer housing, wherein the third end of each of the three oil/gas separation modules is fixed mechanically to the support platform.

12. The high-voltage combined electrical apparatus of claim 11 , wherein the operating mechanism includes three operating mechanisms, each respective pull rod individually connecting a respective one said circuit-breaking mechanism and a respective one of said three operating mechanisms.

13. The high-voltage combined electrical apparatus of claim 11 , wherein the operating mechanism includes one single operating mechanism, the high-voltage combined electrical apparatus further comprising a connecting rod mechanism connected to the one single operating mechanism.

14. The high-voltage combined electrical apparatus of claim 1 , wherein the three oil/gas separation modules include an oil/gas separation module housing and an insulating support base, the lower outgoing line seat passing through a second end of a respective one oil/gas separation module and being connected to the transformer via an insulator; wherein an upper part of a pull rod passes through the lower outgoing line seat and is connected to the circuit-breaking mechanism; and wherein a lower part of the pull rod passes through the insulating support base and is connected to the operating mechanism, and maintains gas-tightness via a seal.

15. The high-voltage combined electrical apparatus of claim 1 , wherein the operating mechanism includes one single operating mechanism.

16. The high-voltage combined electrical apparatus of claim 15 , further comprising:

a connecting rod compartment fixed to a housing of the transformer, the lower outgoing line seats of the three circuit breakers each being respectively connected, individually, to a top portion of the connecting rod compartment, and the second ends of the three oil/gas separation modules each being respectively connected, individually, to a bottom portion of the connecting rod compartment.

17. A high-voltage combined electrical apparatus, comprising:

a transformer including a transformer coil;

at least one circuit breaker including a ceramic insulator, an upper outgoing line seat, a lower outgoing line seat, and a disconnecting mechanism connected between the upper outgoing line seat and the lower outgoing line seat;

at least one oil/gas separation module including a first end electrically connected to the transformer coil of the transformer, and a second end electrically connected to the lower outgoing line seat; and

an operating mechanism, connected to and configured to control the disconnecting mechanism, the at least one circuit breaker being disposed at a relatively top portion of the transformer, and the first end of the at least one oil/gas separation module being electrically connected to the transformer coil via a lead wire, wherein the at least one oil/gas separation module includes an oil/gas separation module housing and an insulating support base, the lower outgoing line seat passing through a second end of the at least one oil/gas separation module and being connected to the transformer via an insulator; wherein an upper part of a pull rod passes through the lower outgoing line seat and is connected to the circuit-breaking mechanism; and wherein a lower part of the pull rod passes through the insulating support base and is connected to the operating mechanism, and maintains gas-tightness via a seal.

18. The high-voltage combined electrical apparatus of claim 17 , wherein the at least one circuit breaker is disposed at a side of the transformer.

19. The high-voltage combined electrical apparatus of claim 17 , wherein the at least one operating mechanism includes one single operating mechanism.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 21, 2021
From: SIEMENS AKTIENGESELLSCHAFT
To: SIEMENS ENERGY GLOBAL GMBH & CO. KG
Reel/Frame 055997/0014 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2018
From: SIEMENS LTD., CHINA
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 046212/0326 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 21, 2018
From: LI, YAN SONG; LU, XUE HUA; NI, YI FEI; WANG, YONG HUI; ZHOU, JIAN
To: SIEMENS LTD., CHINA
Reel/Frame 046164/0578 →
Priority Claims (1)
CN 2014 1 0438749 · Aug 29, 2014 · national
Continuity (1)
Related Publication 20170256923A1 · Sep 7, 2017