IP Library Granted Patent US 7,881,033
Granted Patent B2
US 7,881,033 · App. 11/281,363 · Granted Feb 1, 2011

High-voltage system and high-power circuit breaker with cooling

Assignee: ABB Research Ltd
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,881,033
App. No.
11/281,363
Granted
Feb 1, 2011
Kind
B2
Abstract

The high-voltage system has at least one feed line and at least one high-power circuit breaker, the at least one feed line having a longitudinally extended feed line inner conductor and a feed line outer conductor surrounding the feed line inner conductor, and the high-power circuit breaker having a longitudinally extended circuit breaker inner conductor and a circuit breaker outer conductor surrounding the circuit breaker inner conductor in the form of a housing, and the inner conductors and the outer conductors being electrically conductively connected to one another. At least one heat pipe is provided for the purpose of dissipating thermal energy from the circuit breaker inner conductor. The heat pipe interacts with a cooling gas flow extending along the circuit breaker inner conductor.

Claims (23)

1. A high-voltage system comprising:

at least one feed line and at least one high-power circuit breaker, the at least one feed line having a longitudinally extended feed line inner conductor and a feed line outer conductor surrounding the feed line inner conductor, and the high-power circuit breaker having a longitudinally extended circuit breaker inner conductor and a circuit breaker outer conductor surrounding the circuit breaker inner conductor in the form of a housing, and the feed line inner conductor and the circuit breaker inner conductor being electrically conductively connected to one another and the feed line outer conductor and the circuit breaker outer conductor being electrically conductively connected to one another,

wherein at least one heat pipe is provided in a space between the circuit breaker inner conductor and the circuit breaker outer conductor for the purpose of dissipating thermal energy from at least one of the feed line inner and the circuit breaker inner conductor, and

wherein an entire length of the at least one heat pipe is provided in the space between the circuit breaker inner conductor and the circuit breaker outer conductor,

wherein at least one production means for flow of cooling gas is provided, by means of which a cooling gas flow, which extends along the longitudinal axis of the circuit breaker inner conductor, can be produced within the circuit breaker outer conductor, and

wherein the heat pipe contains a working medium that dissipates the thermal energy by evaporating the working medium in an evaporator section of the heat pipe and condensing the working medium in a condenser section of the heat pipe, and the evaporator section being in close thermal contact with the circuit breaker inner conductor, and the condenser section interacting with the cooling gas flow.

2. The high-voltage system as claimed in claim 1 , wherein an apparatus for emitting heat is a cooling fin arrangement, which has cooling fins which extend essentially along the extent of the circuit breaker inner conductor.

3. The high-voltage system as claimed in claim 1 , wherein the cooling gas flow extends essentially along the extent of the respective inner conductor within the circuit breaker outer conductor and within the feed line outer conductor.

4. The high-voltage system as claimed in claim 1 , wherein the circuit breaker inner conductor, the feed line inner conductor and the feed line outer conductor are essentially hollow-cylindrical.

5. The high-voltage system as claimed in claim 1 , wherein the circuit breaker inner conductor extends essentially coaxially with respect to the circuit breaker outer conductor and/or the feed line inner conductor extends essentially coaxially with respect to the feed line outer conductor.

6. The high-voltage system as claimed in claim 1 , wherein it contains a plurality of poles, each having two feed lines and a high-power circuit breaker having at least one heat pipe.

7. The high-voltage system as claimed in claim 1 , wherein it is a longitudinally blown generator output line.

8. A high-power circuit breaker comprising:

a longitudinally extended circuit breaker inner conductor and a circuit breaker outer conductor surrounding the circuit breaker inner conductor in the form of a housing,

wherein at least one heat pipe is provided in a space between the inner conductor and the outer conductor for the purpose of dissipating thermal energy from the circuit breaker inner conductor, which heat pipe contains a working medium for the purpose of dissipating the thermal energy by evaporation of the working medium in a section referred to as the evaporator of the heat pipe and condensing the working medium in a section referred to as the condenser of the heat pipe, and the condenser being provided for the purpose of interacting with a cooling gas flow extending within the circuit breaker outer conductor, and

wherein an entire length of the at least one heat pipe is provided in the space between the inner conductor and the outer conductor and wherein at least one production means for flow of cooling gas is provided, by means of which a cooling gas flow, which extends along the longitudinal axis of the circuit breaker inner conductor, can be produced within the circuit breaker outer conductor.

9. A method for cooling a longitudinally extended circuit breaker inner conductor, which is surrounded by a circuit breaker outer conductor in the form of a housing, of a high-power circuit breaker, the method comprising:

evaporating a working medium by thermal energy from the circuit breaker inner conductor being absorbed;

condensing the working medium in a section referred to as the condenser of the heat pipe with emission of heat, the condensor being arranged in a space between the inner conductor and the outer conductor; and

cooling the condenser within the circuit breaker outer conductor by a cooling gas flow extending essentially along the extent of the circuit breaker inner conductor, and

wherein an entire length of the condenser is provided in the space between the inner conductor and the outer conductor,

providing at least one production means for flow of cooling gas, and

producing a cooling gas flow which extends along the longitudinal axis of the circuit breaker inner conductor within the circuit breaker outer conductor.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2023
From: FSV6 LTD.
To: FORSIGHT VISION6, INC.
Reel/Frame 062348/0795 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2020
From: ABB SCHWEIZ AG
To: ABB POWER GRIDS SWITZERLAND AG
Reel/Frame 052916/0001 →
CORRECTION TO PREVIOUSLY RECORDED REEL/FRAME 017250/0701 Recorded May 24, 2007
From: CHARTOUNI, DANIEL; LAKNER, MARTIN; MAUROUX, JEAN-CLAUDE; SCHOENEMANN, THOMAS; KIEFER, JOCHEN; ZEHNDER, LUKAS; MOLLENKOPF, MARC
To: ABB RESEARCH LTD
Reel/Frame 019374/0717 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2005
From: CHARTOUNI, DANIEL; LAKNER, MARTIN; MAUROUX, JEAN-CLAUDE; SCHOENEMANN, THOMAS
To: ABB RESEARCH LTD.
Reel/Frame 017250/0701 →
Priority Claims (1)
EP 04405751 · Dec 3, 2004 · regional
Continuity (1)
Related Publication 20060120024A1 · Jun 8, 2006