Method of controlling combustion apparatus
US-2016363348-A1 · Dec 15, 2016 · US
US11098924B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11098924-B2 |
| Application number | US-201816218320-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 12, 2018 |
| Priority date | Dec 12, 2018 |
| Publication date | Aug 24, 2021 |
| Grant date | Aug 24, 2021 |
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A combustion tube assembly of a water heater includes a combustion tube having an open end, a closed end, and an outflow opening between the open end and the closed end. A cavity of the combustion tube provides a chamber for a combustion of a water heater fuel, where the outflow opening provides an outlet for an exhaust gas resulting from the combustion of the water heater fuel to exit the combustion tube. The combustion tube assembly further includes a spring positioned in the cavity of the combustion tube at the closed end of the combustion tube.
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What is claimed is: 1. A combustion tube assembly of a water heater, the combustion tube assembly comprising: a combustion tube and having an open end, a closed end, and an outflow opening between the open end and the closed end, wherein a cavity of the combustion tube provides a chamber for combustion of a water heater fuel and wherein the outflow opening provides an outlet for an exhaust gas resulting from the combustion of the water heater fuel to exit the combustion tube; and a spring positioned in the cavity of the combustion tube and having a free end disposed between the open end and the closed end of the combustion tube, at least a portion of the exhaust gas flowing through an interior of the spring. 2. The combustion tube assembly of claim 1 , wherein the combustion tube is closed at the closed end by a cover structure and wherein the spring is attached to the cover structure. 3. The combustion tube assembly of claim 2 , wherein the spring is a conical spring having a large diameter end and a small diameter end and wherein the large diameter end of the spring is attached to the cover structure. 4. The combustion tube assembly of claim 1 , wherein the spring is a helical spring. 5. The combustion tube assembly of claim 1 , wherein the spring is centrally located in the combustion tube. 6. The combustion tube assembly of claim 5 , wherein the spring is spaced from an inner wall of the combustion tube. 7. The combustion tube assembly of claim 1 , wherein the outflow opening is located proximal to the closed end. 8. A heat exchanger assembly of a water heater, the heat exchanger assembly comprising: a combustion tube having an open end, a closed end, and an outflow opening between the open end and the closed end, wherein a cavity of the combustion tube provides a chamber for combustion of a water heater fuel; a spring positioned in the cavity of the combustion tube and having a free end disposed between the open end and the closed end of the combustion tube, at least a portion of exhaust gas resulting from the combustion of the water heater fuel lowing through an interior of the spring; and a hollow coil attached to the combustion tube, wherein the outflow opening provides an outlet for the exhaust gas to flow from the combustion tube into the hollow coil. 9. The heat exchanger assembly of claim 8 , wherein the combustion tube is closed at the closed end by a cover structure and wherein the spring is attached to the cover structure. 10. The heat exchanger assembly of claim 9 , wherein the spring is a conical spring having a large diameter end and a small diameter end and wherein the large diameter end of the spring is attached to the cover structure. 11. The heat exchanger assembly of claim 8 , wherein the spring is a helical spring. 12. The heat exchanger assembly of claim 8 , wherein the spring is centrally located inside the combustion tube. 13. The heat exchanger assembly of claim 12 , wherein the spring is spaced from an inner wall of the combustion tube. 14. The heat exchanger assembly of claim 8 , wherein the outflow opening is located proximal to the closed end. 15. The heat exchanger assembly of claim 8 , wherein the hollow coil provides an exhaust outlet for the exhaust gas to exit the hollow coil. 16. A water heater, comprising: a water tank; a combustion system positioned at a top end of the water heater; and a heat exchanger assembly positioned inside the water tank, the heat exchanger assembly comprising: a combustion tube having an open end, a closed end, and an outflow opening between the open end and the closed end, wherein a cavity of the combustion tube provides a chamber for combustion of a water heater fuel, wherein the open end is proximal to the top end of the water heater, and wherein the closed end is distal from the top end of the water heater; a spring positioned in the cavity of the combustion tube and having a free end disposed between the open end and the closed end of the combustion tube, at least a portion of exhaust gas resulting from the combustion of the water heater fuel flowing through an interior of the spring; and a hollow coil attached to the combustion tube wherein the outflow opening provides an outlet for the exhaust gas to flow from the combustion tube into the hollow coil. 17. The water heater of claim 16 , wherein the combustion tube is closed at the closed end by a cover structure and wherein the spring is attached to the cover structure. 18. The water heater of claim 17 , wherein the spring is a conical spring having a large diameter end and a small diameter end and wherein the large diameter end of the spring is attached to the cover structure. 19. The water heater of claim 16 , wherein the spring is a helical spring. 20. The water heater of claim 16 , wherein the spring is centrally located inside the combustion tube.
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