Claims
- 1. A furnace comprising:
(a) a housing including sidewalls; (b) at least one burner defining a combustion zone arranged within said housing, a plurality of vertical lanes defined by space between said sidewalls and opposing sides of said combustion zone; and (c) a plurality of overfire air (OFA) ports arranged in said housing located above said combustion zone, said OFA ports arranged in a plurality of rows including an upper row and a lower row, said upper row having more of said OFA ports than said lower row, said upper row being arranged at a greater vertical distance than said lower row from said combustion zone than said lower row, at least one of said OFA ports in said lower row arranged in at least one of said vertical lanes.
- 2. The furnace of claim 1, further comprising air withdrawal and distribution means for withdrawing air from said combustion zone and distributing such air to said plurality of OFA ports to be injected into said furnace as OFA above said combustion zone.
- 3. The furnace of claim 1, wherein said plurality of vertical lanes comprise first and second vertical lanes wherein at least one of said OFA ports in said lower row is in said first vertical lane and at least one of said OFA ports of said lower row is in said second vertical lane.
- 4. The furnace of claim 3, wherein said at least one burner comprises a plurality of burner outlets arranged in at least one row, said combustion zone being defined by said at least one row of burner outlets.
- 5. The furnace of claim 3, wherein said housing further includes an exit passageway through which byproducts of combustion such as CO can flow, said exit passageway being arranged above the upper row of OFA ports such that OFA injected above said combustion zone will oxidize the CO produced in said combustion zone and convert it to CO2 whereby the quantity of CO that would otherwise flow through said exit passageway is reduced.
- 6. An overfire air (OFA) port for use in a furnace, said OFA port comprising:
(a) an inner barrel having inlet and outlet ends, said inner barrel defining an inner passageway extending between said inlet and outlet ends thereof through which air is permitted to flow; (b) an outer barrel having inlet and outlet ends, said outer barrel surrounding at least a portion of said inner barrel, said outer barrel defining an outer passageway extending between said inlet and outlet ends thereof through which air is permitted to flow; and (c) at least one baffle arranged between said inner and outer barrels to interrupt the flow of air as it exits said outlet end of said outer barrel.
- 7. The OFA port of claim 6 wherein said baffle is arranged closer to said outlet end of said outer barrel than it is to said inner end thereof.
- 8. The OFA port of claim 6, wherein said baffle is attached to said outer barrel.
- 9. The OFA port of claim 6, wherein said at least one baffle comprises a plurality of baffles.
- 10. The OFA port of claim 6 wherein the inlet end of said outer barrel comprises a different geometric configuration than the outlet end of said outer barrel.
- 11. The OFA port of claim 10 wherein said outlet end of said outer barrel comprises an elliptical configuration.
- 12. The OFA port of claim 11, wherein the geometrical configuration of said inlet end of said outer barrel comprises a circular configuration.
- 13. The OFA port of claim 6, wherein the inlet end of said inner barrel comprises a different geometrical configuration than the outlet end of said inner barrel.
- 14. The OFA port of claim 13, wherein the geometry of said outlet end of said inner barrel comprises an elliptical configuration.
- 15. The OFA port of claim 13, wherein the geometry of said inlet end of said inner barrel comprises a circular configuration.
- 16. The OFA port of claim 6, wherein the inlet end of said inner barrel comprises a different geometrical configuration than the outlet end of said inner barrel and said inlet end of said outer barrel comprises a different geometrical configuration than said outlet end of said outer barrel.
- 17. The OFA port of claim 16, wherein the outlet end of said inner and outer barrels comprise elliptical configurations.
- 18. An overfire air (OFA) port for use in a furnace, said OFA port comprising:
(a) an inner barrel having inlet and outlet ends, said inner barrel defining an inner passageway extending between said inlet and outlet ends thereof through which air is permitted to flow, said inner barrel further comprising an inner inlet section, an inner transitional section, and a geometric section; (b) an outer barrel having inlet and outlet ends, said outer barrel surrounding at least a portion of said inner barrel, said outer barrel defining an outer passageway extending between said inlet and outlet ends thereof through which air is permitted to flow, said outer barrel further comprising an outer inlet section and an outer transition section; and (c) at least one baffle arranged between said inner and outer barrels to interrupt the flow of air as it exits said outlet end of said outer barrel.
- 19. The OFA port of claim 18, wherein said outer transition section of said outer barrel further comprises transitional inlet and transitional outlet ends each having diameters, said diameter of said transitional inlet end being smaller than said diameter of said transitional outlet end.
- 20. The OFA port of claim 18, wherein said outer inlet section and said outer transition section are the same length.
- 21. The OFA port of claim 18, wherein at least two baffles are arranged between said inner and outer barrels to interrupt the flow of air as it exits said outlet end of said outer barrel.
- 22. The OFA port of claim 18, wherein said inlet end of said outer barrel comprises a different geometrical configuration than the outlet end of said outer barrel.
- 23. The OFA port of claim 18, wherein said outlet end of said outer barrel comprises an elliptical configuration.
- 24. The OFA port of claim 18, wherein said inlet end of said inner barrel comprises a circular configuration.
- 25. A furnace comprising:
(a) at least one burner defining a combustion zone; (b) at least one overfire air (OFA) port including: (i) an inner barrel having inlet and outlet ends, said inner barrel defining an inner passageway extending between said inlet and outlet ends thereof through which air is permitted to flow; (ii) an outer barrel having inlet and outlet ends, said outer barrel surrounding at least a portion of said inner barrel, said outer barrel defining an outer passageway extending between said inlet and outlet ends thereof through which air is permitted to flow; and (iii) at least one baffle arranged between said inner and outer barrels to interrupt the flow of air as it exits said outlet end of said outlet end of said outer barrel.
- 26. The furnace of claim 25 further comprising a sleeve damper located at said inlet end of said outer barrel to regulate the amount of OFA flowing into said at least one OFA port.
- 27. A furnace comprising:
(a) a housing; (b) at least one burner comprising a combustion zone; (c) a plurality of overfire air (OFA) ports arranged in said housing located above said combustion zone, said OFA ports arranged in a plurality of rows including an upper row and a lower row, said upper row having more of said OFA ports than said lower row, said upper row being arranged at a greater vertical distance than said lower row from said combustion zone than said lower row, at least one of said OFA ports in said lower row arranged in at least one of said vertical lanes; and (d) at least one OFA port including
(i) an inner barrel having inlet and outlet ends, said inner barrel defining an inner passageway extending between said inlet and outlet ends thereof through which air is permitted to flow; (ii) an outer barrel having inlet and outlet ends, said outer barrel surrounding at least a portion of said inner barrel, said outer barrel defining an outer passageway extending between said inlet and outlet ends thereof through which air is permitted to flow; and (iii) at least one baffle arranged between said inner and outer barrels to interrupt the flow of air as it exits said outlet end of said outer barrel.
- 28. A method of efficiently operating a furnace, the method comprising:
(a) removing a portion of the combustion air from a combustion zone through use of an overfire air (OFA) system; (b) reinjecting said portion of combustion air into the furnace above said combustion zone by directing said portion of combustion air through OFA ports arranged in at least two rows in at least one upper row and at least one lower row located above the combustion zone; (c) further directing air through at least one OFA port located in a row closest to the combustion zone in at least one vertical lane located between the outermost edge of the combustion zone and the furnace sidewall.
- 29. The method of claim 28, further comprising reinjecting said portion of combustion air into OFA ports located above said combustion zone by directing said portion of combustion air through OFA ports located in a row closest to the combustion zone in two vertical lanes located on opposing sides of the combustion zone.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims benefit of U.S. Provisional Patent Application 60/355,674, filed Feb. 7, 2002, the disclosure of which is incorporated by reference herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60355674 |
Feb 2002 |
US |