Claims
- 1. In a forced air combustion burner, having a fuel delivery assembly responsive to a control system which enables a modulation of heat firing rate at desired rates between a maximum rate and a minimum rate, the improvement comprising an air damper responsive to the control system for precise control of a combustion air flow rate at all firing rates, the air damper providing improved operating efficiency and turn down ratio of the burner wherein the air damper comprises:
- a frame forming a rectangular frame opening through which the combustion air is passable;
- a shaft rotatably supported by said frame, the shaft comprising a first end rotatable in response to the control system and thereby rotatable to determinative air flow rate positions;
- a louver supported by said shaft providing a transverse profile substantially filling said frame opening in a closed position, said louver rotatable with said shaft to said determinative air flow rate positions to substantially fill the width of said frame opening and variably restrict the height of said frame opening; and
- means for sealing said louver within said frame to prevent air flow in the closed position, and to prevent air flow between said frame and ends of said louver, in determinative positions of minimal air flow approaching the closed position.
- 2. The burner of claim 1, wherein the louver comprises:
- an arcuate top surface;
- an arcuate bottom surface symmetrically disposed to said top surface about a central axis;
- a first engaging portion, in coplanar relationship to the central axis, supporting a first tip in abutting engagement with said top surface and said bottom surface, and coextensive with the width of said louver, said first tip forming a leading edge of said louver;
- a second engaging portion, in coplanar relationship to the central axis, supporting a second tip in abutting engagement with said top surface and said bottom surface, and coextensive with the width of said louver, said second tip forming a trailing edge of said louver.
- 3. The burner of claim 2 wherein each of said tips comprises an elastomeric material.
- 4. The burner of claim 3 wherein each of said tips forms a contacting face, and wherein said contacting faces sealingly engage said frame in a closed position so as to prevent air flow through said air damper.
- 5. The burner of claim 4 wherein each of said tips comprise a hollow passage which forms a thin material wall thickness at each of said contacting faces, so as to provide flexibility to said contacting faces to improve the sealing engagement of said contacting faces against said frame.
- 6. The burner of claim 5 wherein each of said tips comprises a rubber material.
- 7. The burner of claim 6 wherein each of said tips comprises EPDM rubber.
- 8. The burner of claim 1 wherein a first louver end seal is compressingly disposed between the first end of said louver and said frame, and a second louver end seal is compressingly disposed between the second end of said louver and said frame, so as to prevent air flow between the ends of said louver and said frame in a closed position, and to prevent air flow between the ends of said louver and said frame in determinative positions of minimal air flow approaching a closed position.
- 9. The burner of claim 8 wherein said louver and seal comprises:
- a compressible foam material adhered to said frame; and
- a facing material substantially wider than said foam, wherein said facing material overlays said foam by adhering to said frame and by medially adhering to said foam.
- 10. The burner of claim 9 wherein said foam comprises polyurethane, and wherein said facing comprises a polyethylene terephthalate such as MYLAR.
- 11. In a forced air combustion burner assembly, having a fuel delivery assembly responsive to a control system which enables a modulation of heat firing rate at desired rates between a maximum rate and a minimum rate, the improvement comprising an air damper furthermore responsive to the control system for precise control of a combustion air flow rate at all heat firing rates, the air damper providing improved operating efficiency and turn down ratio of the burner, wherein the air damper comprises:
- a frame forming a rectangular frame opening through which the combustion air passes;
- a first shaft rotatably supported by said frame, the shaft having a first end rotatable in response to the control system and thereby rotatable to determinative airflow rate positions;
- a second shaft rotatably supported by said frame;
- means for engaging said first and second shaft as to rotate said second shaft to determinative position of said first shaft;
- a first louver supported by said first shaft, said first louver rotatable with said first shaft as to be rotatable to said determinative air flow rate positions, to substantially fill the width of said frame opening and variably restrict the height of said frame opening;
- a second louver supported by said second shaft, said second louver rotatable with said second shaft so as to be rotatable to said determinative air flow rate positions, to substantially fill the width of said frame opening and variably restrict the height of said frame opening; and
- means for sealing said louvers within said frame to prevent air flow in a closed position, and to prevent air flow between said frame and ends of said louvers in determinative positions of minimal air flow approaching a closed position.
- 12. The burner of claim 11, wherein each of said louvers comprises:
- an arcuate top surface;
- an arcuate bottom surface symmetrically disposed to said top surface about a central axis;
- a first engaging portion, in coplanar relationship to the central axis, supporting a first tip in abutting engagement with said top surface and said bottom surface, and coextensive with the width of said louver, said first tip forming a leading edge of said louver;
- a second engaging portion, in coplanar relationship to the central axis, supporting a second tip in abutting engagement with said top surface and said bottom surface, and coextensive with the width of said louver, said second tip forming a trailing edge of said louver.
- 13. The burner of claim 12 wherein each of said tips comprises an elastomeric material.
- 14. The burner of claim 13 wherein each of said tips forms a contacting face, and wherein said contacting faces of said louver leading edges sealingly engage said frame, and wherein said contacting face of said first louver trailing edge sealingly engages said contacting face of said second louver trailing edge so as to prevent air flow through said air damper.
- 15. The burner of claim 14 wherein each of said tips comprises a hollow passage which forms a thin material wall thickness at each of said contacting faces, so as to provide flexibility to said contacting faces to improve the sealing engagement of said contacting faces.
- 16. The burner of claim 15 wherein each of said tips comprises a rubber material.
- 17. The burner of claim 16 wherein each of said tips comprises EPDM rubber.
- 18. The burner of claim 17 wherein a first louver end seal is compressingly disposed between the first ends of said louvers and said frame, and a second louver end seal is compressingly disposed between the second ends of said louvers and said frame, so as to prevent air flow between the ends of said louvers and said frame in a closed position, and to prevent air flow between the ends of said louvers and said frame in determinative positions of minimal air flow approaching the closed position.
- 19. The burner of claim 18 wherein said louver end seal comprises:
- a compressible foam material adhered to said frame; and
- a facing material substantially wider than said foam, wherein said facing material overlays said foam by adhering to said frame and by medially adhering to said foam.
- 20. The burner of claim 19 wherein said foam comprises polyurethane, and wherein said facing comprises a polyethylene terephthalate such as MYLAR.
- 21. The burner of claim 11 wherein said engaging means comprises:
- a first gear supported by the distal end of said first shaft and thereby matingly engaged so that rotation of said first shaft imparts rotation to said first gear;
- a second gear supported by the distal end of said second shaft and thereby matingly engaged so that rotation of said second gear imparts rotation to said second shaft; and
- wherein said first gear and said second gear are meshingly engaged, so that rotation of said first gear imparts an opposite rotation to said second gear, and so that rotation of said first shaft imparts an opposite rotation to said second shaft.
- 22. The burner of claim 21 wherein said gears comprise arc portions forming gear teeth, wherein said gear teeth of said first gear are interlocked with said gear teeth of said second gear providing said meshing engagement therebetween, and wherein said arc portions of gear teeth is less than the total circumference of said gear so that non-teeth portions are formed, so that each of said gear rotation is positively limited by rotation of the gears such that the interlocked engagement of said gears abut said non-teeth portions.
CROSS REFERENCE TO RELATED APPLICATION
This application claims the benefit of U.S. Provisional Patent Application Ser. No. 060/015,842, fled Apr. 18, 1996.
US Referenced Citations (9)
Non-Patent Literature Citations (1)
Entry |
Lucoma AG, Precision control flaps for air conditioning plants, Reglair 5001-G-M52-SM220 (no date on publication). |