Dissolved gas analysis devices, systems, and methods
US-2018259444-A1 · Sep 13, 2018 · US
US10586649B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10586649-B2 |
| Application number | US-201715458010-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 13, 2017 |
| Priority date | Mar 13, 2017 |
| Publication date | Mar 10, 2020 |
| Grant date | Mar 10, 2020 |
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Devices, systems, and methods for determining gas characteristics to monitor transformer operation include extracting gas from transformer fluid for analysis.
Opening claim text (preview).
The invention claimed is: 1. A transformer, comprising: at least one electrical winding, a fluid system including fluid for insulating the at least one electrical winding, and a gas analysis system for determining characteristics of gas dissolved in the fluid of the fluid system, the gas analysis system including an extraction coil and a gas cell for analysis of gas, the extraction coil arranged in contact with the fluid and including a gas-permeable material for receiving dissolved gas from the fluid, the extraction coil and the gas cell fluidly communicating to form a gas circulation loop for circulating gas. 2. The transformer of claim 1 , wherein the gas cell is arranged for determining characteristics of gas extracted from the fluid. 3. The transformer of claim 2 , wherein a transport conduit is fluidly coupled with each of the extraction coil and the gas cell to transport gas received from the fluid to the gas cell for analysis. 4. The transformer of claim 2 , wherein the extraction coil is formed as a conduit having an inner volume for receiving gas permeating through the gas-permeable material. 5. The transformer of claim 4 , wherein a gas species that is both within the inner volume and dissolved in the fluid is in equilibrium. 6. The transformer of claim 1 , wherein the gas-permeable material includes a fluoropolymer. 7. The transformer of claim 6 , wherein the gas-permeable material includes a fluoroplastic having at least one of: a yield strength within the range of about 26 MPa to about 29 MPa at about 73° F., a yield strength within the range of about 0.5 MPa to about 13 MPa at about 302° F., a yield strength within the range of about 4 MPa to about 13 MPa at about 428° F., a tensile strength within the range of about 24 MPa to about 29 MPa at about 73° F., a tensile strength within the range of about 1 MPa to about 15 MPa at about 302° F., and a tensile strength within the range of about 3 MPa to about 7 MPa at about 428° F. 8. The transformer of claim 1 , wherein the extraction coil includes a number of coil loops each permitting dissolved gas to permeate therein. 9. The transformer of claim 3 , wherein the transport conduit includes a motive pressure source fluidly coupled with the extraction coil to circulate gas through the transport conduit. 10. The transformer of claim 9 , wherein the motive pressure source is fluidly coupled with the extraction coil to provide a lower pressure within the extraction coil relative to a pressure within the gas cell. 11. The transformer of claim 3 , wherein the transport conduit includes a supply segment fluidly connected to provide gas from the extraction coil to the gas cell and a return segment fluidly connected to provide gas from the gas cell to the extraction coil. 12. The transformer of claim 1 , wherein the gas analysis system includes a light source and at least one light detector for receiving light from the light source. 13. The transformer of claim 12 , wherein the light source is arranged to pass light from one side of the gas cell through gas within a cavity of the gas cell to another side of the gas cell, and the at least one light detector is arranged on the another side to receive light from the light source. 14. The transformer of claim 1 , wherein the gas cell includes a cavity for receiving dissolved gas extracted from the fluid for analysis.
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