IP Library Granted Patent US 11,114,234
Granted Patent B2
US 11,114,234 · App. 15/580,553 · Granted Sep 7, 2021

Transformer arrangement and method for controlling pressure in a liquid-filled transformer

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Quick Facts
Patent No.
US 11,114,234
App. No.
15/580,553
Granted
Sep 7, 2021
Kind
B2
Abstract

A transformer including a transformer tank, an expansion tank, and piping connecting the tanks enabling liquid to flow there between. The piping includes a valve configured for liquid to flow from the transformer to the expansion tank when the pressure is above a predefined first threshold and for preventing the liquid to flow from the transformer to the expansion tank when the pressure is below the first threshold. The valve is also configured for liquid to flow from the expansion to the transformer tank when the pressure is below a predefined second threshold and for preventing the liquid to flow from the expansion to the transformer tank when the pressure is above the predefined second threshold.

Claims (24)

1. A transformer arrangement comprising:

a transformer tank for a liquid-filled electrical transformer;

an expansion tank; and

piping, connecting the transformer tank with the expansion tank for enabling liquid of the liquid-filled transformer to flow between the transformer tank and the expansion tank via the piping, the piping including a valve, wherein the piping includes a first pipe and a second pipe, the first pipe extending between the valve and the transformer tank, the second pipe extending between the valve and the expansion tank, and at the valve, the first pipe is arranged at a non-zero angle relative to the second pipe;

wherein the valve is configured for allowing the liquid to flow from the transformer tank to the expansion tank when the pressure of the liquid in the transformer tank is above a predefined first threshold and for preventing the liquid to flow from the transformer tank to the expansion tank when the pressure of the liquid in the transformer tank is below the predefined first threshold;

wherein the valve is configured for allowing the liquid to flow from the expansion tank to the transformer tank when the pressure of the liquid in the transformer tank is below a predefined second threshold and for preventing the liquid to flow from the expansion tank to the transformer tank when the pressure of the liquid in the transformer tank is above the predefined second threshold;

wherein the expansion tank is positioned relative to the transformer tank such as to allow a top surface of the liquid in the expansion tank to be lower than a top surface of the liquid in the transformer tank; and

wherein a portion of the piping connecting the valve to the expansion tank extends from above the top surface of the liquid in the expansion tank to below the top surface of the liquid in the expansion tank.

2. The transformer arrangement of claim 1 , wherein the valve has an overpressure spring for allowing the liquid to flow from the transformer tank to the expansion tank when the pressure of the liquid in the transformer tank is above the predefined first threshold and for preventing the liquid to flow from the transformer tank to the expansion tank when the pressure of the liquid in the transformer tank is below the predefined first threshold.

3. The transformer arrangement of claim 1 , wherein the valve has a vacuum spring for allowing the liquid to flow from the expansion tank to the transformer tank when the pressure of the liquid in the transformer tank is below the predefined second threshold and for preventing the liquid to flow from the expansion tank to the transformer tank when the pressure of the liquid in the transformer tank is above the predefined second threshold.

4. The transformer arrangement of claim 1 , wherein the piping further includes a Buchholz relay between the transformer tank and the valve.

5. The transformer arrangement of claim 1 , wherein the expansion tank includes a diaphragm for separating the liquid from a gas phase in the expansion tank.

6. A method performed in a transformer arrangement including a liquid-filled transformer tank and an expansion tank, wherein the expansion tank is positioned relative to the transformer tank such that a top surface of the liquid in the expansion tank is lower than a top surface of the liquid in the transformer tank, the method including:

allowing the liquid to flow from the transformer tank to the expansion tank via piping, when the pressure of the liquid in the transformer tank is above a predefined first threshold by automatically opening a valve of the piping, the liquid being allowed to flow through a portion of the piping which connects the valve to the expansion tank and which extends from above the top surface of the liquid in the expansion tank to below the top surface of the liquid in the expansion tank, wherein allowing the liquid to flow from the transformer tank to the expansion tank via piping comprising allowing the liquid to flow through a first portion of the piping from the transformer tank to the valve at a non-zero angle at the valve relative to the portion of the piping which connects the valve to the expansion tank;

preventing the liquid to flow from the transformer tank to the expansion tank when the pressure of the liquid in the transformer tank is below the predefined first threshold by automatically closing the valve; and

allowing the liquid to flow from the expansion tank to the transformer tank when the pressure of the liquid in the transformer tank is below a predefined second threshold, lower than the predefined first threshold, by automatically opening the valve.

7. The method of claim 6 , wherein the predefined first threshold is above ambient pressure and the predefined second threshold is below ambient pressure.

8. The transformer arrangement of claim 2 , wherein the valve has a vacuum spring for allowing the liquid to flow from the expansion tank to the transformer tank when the pressure of the liquid in the transformer tank is below the predefined second threshold and for preventing the liquid to flow from the expansion tank to the transformer tank when the pressure of the liquid in the transformer tank is above the predefined second threshold.

9. The transformer arrangement of claim 2 , wherein the piping further includes a Buchholz relay between the transformer tank and the valve.

10. The transformer arrangement of claim 2 , wherein the expansion tank includes a diaphragm for separating the liquid from a gas phase in the expansion tank.

11. The transformer arrangement of claim 3 , wherein the piping further includes a Buchholz relay between the transformer tank and the valve.

12. The transformer arrangement of claim 3 , wherein the expansion tank includes a diaphragm for separating the liquid from a gas phase in the expansion tank.

13. The transformer arrangement of claim 4 , wherein the expansion tank includes a diaphragm for separating the liquid from a gas phase in the expansion tank.

14. The method of claim 7 , wherein the ambient pressure is atmospheric pressure.

Assignments (4)
MERGER Recorded Nov 13, 2023
From: HITACHI ENERGY SWITZERLAND AG
To: HITACHI ENERGY LTD
Reel/Frame 065549/0576 →
CHANGE OF NAME Recorded Dec 31, 2021
From: ABB POWER GRIDS SWITZERLAND AG
To: HITACHI ENERGY SWITZERLAND AG
Reel/Frame 058666/0540 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2020
From: ABB SCHWEIZ AG
To: ABB POWER GRIDS SWITZERLAND AG
Reel/Frame 052916/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2017
From: CARDONA, JULIAN
To: ABB SCHWEIZ AG
Reel/Frame 044880/0483 →