Claims
- 1. A high efficiency liquid fuel atomizer comprising:
an elongated generally tubular member defining a liquid fuel pre-atomization chamber, said member having an outer wall that extends at least partially around said chamber, an upstream end adapted for connection to a source of liquid fuel and a downstream fuel delivery outlet; structure defining a generally annular pressurized atomizing fluid supply conduit disposed in surrounding relationship relative to said chamber, said structure including a conduit inlet adapted for connection to a source of pressurized atomizing fluid and a downstream pressurized atomizing fluid delivery outlet, said outer wall having at least one orifice therethrough intercommunicating said chamber and said conduit to permit pressurized atomizing fluid to enter said chamber and at least partially atomize said fluid fuel therein; and an atomizing tip including at least one mixing port arrangement that is in fluid communication with said outlets for receiving and intermixing at least partially atomized liquid fuel from said chamber and pressurized atomizing fluid from said conduit whereby to further atomize said liquid fuel.
- 2. A high efficiency liquid fuel atomizer comprising:
an elongated generally tubular member defining a liquid fuel pre-heating chamber, said member having an outer wall that extends at least partially around said chamber, an upstream end adapted for connection to a source of liquid fuel and a downstream fuel delivery outlet; structure defining a generally annular pressurized atomizing fluid supply conduit disposed in surrounding relationship relative to said chamber, said structure including a conduit inlet adapted for connection to a source of heated pressurized atomizing fluid and a downstream pressurized atomizing fluid delivery outlet, at least a portion of said outer wall being formed of a heat conductive material, said portion having an inner surface positioned for being contacted by liquid fuel in said chamber and an outer surface positioned for being contacted by heated pressurized atomizing fluid in said conduit whereby to heat said fuel by transfer of heat from said heated fluid to said fuel; and an atomizing tip including at least one mixing port arrangement that is in fluid communication with said outlets for receiving and intermixing heated liquid fuel from said chamber and atomizing fluid from said conduit whereby to atomize said heated liquid fuel.
- 3. A high efficiency fuel oil atomizer as set forth in claim 2, wherein said outer wall has at least one orifice therethrough intercommunicating said chamber and said conduit to permit said heated and pressurized atomizing fluid to enter said chamber and at least partially atomize said fluid fuel therein.
- 4. A high efficiency fuel oil atomizer as set forth in claim 1, wherein said port arrangement comprises a y-shaped array which includes a first elongated port having an upstream end in fluid communication with said fuel delivery outlet and a downstream end and a second elongated port having an upstream end in fluid communication with said fluid delivery outlet and a downstream end, said ports being arranged at an angle, said first port being positioned such that the downstream end thereof intersects with said second port at a location between the ends of the latter, whereby at least partially atomized fuel passing through said first port is intermixed in said second port with atomizing fluid passing through said second port and atomized further thereby and an admixture of atomized fuel and atomizing fluid is discharged through the downstream end of the second port.
- 5. A high efficiency fuel oil atomizer as set forth in claim 2, wherein said port arrangement comprises a y-shaped array which includes a first elongated port having an upstream end in fluid communication with said fuel delivery outlet and a downstream end and a second elongated port having an upstream end in fluid communication with said fluid delivery outlet and a downstream end, said ports being arranged at an angle, said first port being positioned such that the downstream end thereof intersects with said second port at a location between the ends of the latter, whereby heated fuel passing through said first port is intermixed in said second port with atomizing fluid passing through said second port and atomized thereby and an admixture of atomized fuel and heated atomizing fluid is discharged through the downstream end of the second port.
- 6. A high efficiency fuel oil atomizer as set forth in claim 3, wherein said port arrangement comprises a y-shaped array which includes a first elongated port having an upstream end in fluid communication with said fuel delivery outlet and a downstream end and a second elongated port having an upstream end in fluid communication with said fluid delivery outlet and a downstream end, said ports being arranged at an angle, said first port being positioned such that the downstream end thereof intersects with said second port at a location between the ends of the latter, whereby the heated and at least partially atomized fuel passing through said first port is intermixed in said second port with atomizing fluid passing through said second port and atomized further thereby and an admixture of atomized fuel and heated atomizing fluid is discharged through the downstream end of the second port.
- 7. A high efficiency fuel oil atomizer as set forth in claim 4, wherein said at least partially atomized fluid fuel from said first port is introduced into said second port as a cone shaped sheet that is pierced by the atomizing fluid flowing through the second port.
- 8. A high efficiency fuel oil atomizer as set forth in claim 5, wherein said at least partially atomized fluid fuel from said first port is introduced into said second port as a cone shaped sheet that is pierced by the atomizing fluid flowing through the second port.
- 9. A high efficiency fuel oil atomizer as set forth in claim 6, wherein said at least partially atomized fluid fuel from said first port is introduced into said second port as a cone shaped sheet that is pierced by the atomizing fluid flowing through the second port.
- 10. A high efficiency method for atomizing a liquid fuel comprising:
providing a liquid fuel and causing the same to flow into and through a pre-atomization chamber; injecting a first portion of a pressurized atomizing fluid into the liquid fuel flowing through said chamber so as to at least partially atomize said fuel and provide a first admixture containing atomized fuel and atomizing fluid; delivering said first admixture from said chamber and causing the same to flow into and through a first elongated port in an atomizing tip connected to said chamber; directing a second portion of pressurized atomizing fluid into a second elongated port in said tip and causing said second portion to flow through said second port; introducing said first admixture from said first port into said second port and causing the same to become intimately intermixed with said second portion of pressurized atomizing fluid so as to further atomize said fuel and provide a second admixture comprising atomized fuel and atomizing fluid; and discharging said second admixture from said tip.
- 11. A high efficiency method for atomizing a liquid fuel as set forth in claim 10, wherein said liquid fuel is heated in said chamber.
- 12. A high efficiency method for atomizing a liquid fuel as set forth in claim 10, wherein said chamber is elongated and generally tubular in form and said atomizing fluid is caused to flow in an annular flow path in surrounding relationship to an outer wall of said chamber, said injecting being accomplished via an opening provided in said wall.
- 13. A high efficiency method for atomizing a liquid fuel as set forth in claim 10, wherein said first admixture is introduced into said second port as a cone shaped sheet that is pierced by the atomizing fluid flowing through the second port.
- 14. A high efficiency method for atomizing a liquid fuel as set forth in claim 10, wherein said ports are arranged at an angle and said second port has an inlet end and an outlet end, said first port being positioned so as to intersect with said second port at a location between said ends.
- 15. A high efficiency method for atomizing a liquid fuel as set forth in claim 11, wherein said chamber is elongated and generally tubular in form and said atomizing fluid is steam, said steam being caused to flow in an annular flow path in surrounding relationship to an outer wall of said chamber, said injecting being accomplished via an opening provided in said wall, said heating being accomplished both by intermixing of steam with fluid fuel in said chamber and by heat transfer through said wall.
- 16. A high efficiency method for atomizing a liquid fuel as set forth in claim 15, wherein said first admixture is introduced into said second port as a cone shaped sheet that is pierced by the atomizing fluid flowing through the second port.
- 17. A high efficiency method for atomizing a liquid fuel as set forth in claim 15, wherein said ports are arranged at an angle and said second port has an inlet end and an outlet end, said first port being positioned so as to intersect with said second port at a location between said ends.
- 18. A high efficiency method for atomizing a liquid fuel comprising:
providing a liquid fuel and causing the same to flow into and through a pre-heating chamber; heating said liquid fuel in said chamber; delivering heated fuel from said chamber and causing the same to flow into and through a first elongated port in an atomizing tip connected to said chamber; directing a pressurized atomizing fluid into a second elongated port in said tip and causing said fluid to flow through said second port; introducing said heated fuel from said first port into said second port and causing the same to become intimately intermixed with said pressurized atomizing fluid so as to atomize said heated fuel and provide an admixture comprising atomized fuel and atomizing fluid; and discharging said admixture from said tip.
- 19. A high efficiency method for atomizing a liquid fuel as set forth in claim 18, wherein said chamber is elongated and generally tubular in form and said atomizing fluid is steam, said steam being caused to flow in an annular flow path in surrounding relationship to an outer wall of said chamber, said heating being accomplished by heat transfer through said wall.
- 20. A high efficiency method for atomizing a liquid fuel as set forth in claim 19, wherein said first admixture is introduced into said second port as a cone shaped sheet that is pierced by the atomizing fluid flowing through the second port.
- 21. A high efficiency method for atomizing a liquid fuel as set forth in claim 19, wherein said ports are arranged at an angle and said second port has an inlet end and an outlet end, said first port being positioned so as to intersect with said second port at a location between said ends.
- 22. A high efficiency, one piece atomizing nozzle tip for admixing a liquid fuel with a pressurized atomizing fluid so as to atomize the liquid fuel, said nozzle tip comprising:
a monolithic metallic main nozzle tip body; a y-shaped port arrangement in said body, said arrangement including a first elongated essentially straight fuel port having an upstream end and a downstream end and a second elongated essentially straight atomizing fluid port having an upstream end and a downstream end, said ports having essentially circular cross-sectional flow areas and being arranged at an angle relative to one another, said first port being positioned such that the downstream end thereof intersects with said second port at a location between said ends of the latter, whereby fuel passing through said first port is intermixed in said second port with atomizing fluid passing through said second port and an admixture of atomized fuel and atomizing fluid is discharged through the downstream end of the second port.
- 23. A high efficiency, one piece atomizing nozzle tip as set forth in claim 22, wherein a first portion of the second port adjacent said upstream end thereof has a smaller diameter than a second portion of the second port which extends from said location to said downstream end of the second port.
- 24. A high efficiency, one piece atomizing nozzle tip as set forth in claim 23, wherein the ratio of the cross-sectional flow area of the first port to the cross-sectional flow area of the first portion of the second port ranges from about 1.2 to about 3.
- 25. A high efficiency, one piece atomizing nozzle tip as set forth in claim 23, wherein the ratio of the cross-sectional flow area of the second portion of the second port to the total of the cross-sectional flow areas of the first port and the first portion of the second port ranges from about 1 to about 1.7.
- 26. A high efficiency, one piece atomizing nozzle tip as set forth in claim 24, wherein the ratio of the cross-sectional flow area of the second portion of the second port to the total of the cross-sectional flow areas of the first port and the first portion of the second port ranges from about 1 to about 1.7.
- 27. A high efficiency fuel oil atomizer as set forth in claim 4, wherein a first portion of the second port adjacent said upstream end thereof has a smaller diameter than a second portion of the second port which extends from said location to said downstream end of the second port.
- 28. A high efficiency fuel oil atomizer as set forth in claim 27, wherein the ratio of the cross-sectional flow area of the first port to the cross-sectional flow area of the first portion of the second port ranges from about 1.2 to about 3.
- 29. A high efficiency fuel oil atomizer as set forth in claim 27, wherein the ratio of the cross-sectional flow area of the second portion of the second port to the total of the cross-sectional flow areas of the first port and the first portion of the second port ranges from about 1 to about 1.7.
- 30. A high efficiency fuel oil atomizer as set forth in claim 28, wherein the ratio of the cross-sectional flow area of the second portion of the second port to the total of the cross-sectional flow areas of the first port and the first portion of the second port ranges from about 1 to about 1.7.
- 31. A high efficiency fuel oil atomizer as set forth in claim 5, wherein a first portion of the second port adjacent said upstream end thereof has a smaller diameter than a second portion of the second port which extends from said location to said downstream end of the second port.
- 32. A high efficiency fuel oil atomizer as set forth in claim 31, wherein the ratio of the cross-sectional flow area of the first port to the cross-sectional flow area of the first portion of the second port ranges from about 1.2 to about 3.
- 33. A high efficiency fuel oil atomizer as set forth in claim 31, wherein the ratio of the cross-sectional flow area of the second portion of the second port to the total of the cross-sectional flow areas of the first port and the first portion of the second port ranges from about 1 to about 1.7.
- 34. A high efficiency fuel oil atomizer as set forth in claim 32, wherein the ratio of the cross-sectional flow area of the second portion of the second port to the total of the cross-sectional flow areas of the first port and the first portion of the second port ranges from about 1 to about 1.7.
- 35. A high efficiency fuel oil atomizer as set forth in claim 6, wherein a first portion of the second port adjacent said upstream end thereof has a smaller diameter than a second portion of the second port which extends from said location to said downstream end of the second port.
- 36. A high efficiency fuel oil atomizer as set forth in claim 35, wherein the ratio of the cross-sectional flow area of the first port to the cross-sectional flow area of the first portion of the second port ranges from about 1.2 to about 3.
- 37. A high efficiency fuel oil atomizer as set forth in claim 35, wherein the ratio of the cross-sectional flow area of the second portion of the second port to the total of the cross-sectional flow areas of the first port and the first portion of the second port ranges from about 1 to about 1.7.
- 38. A high efficiency fuel oil atomizer as set forth in claim 36, wherein the ratio of the cross-sectional flow area of the second portion of the second port to the total of the cross-sectional flow areas of the first port and the first portion of the second port ranges from about 1 to about 1.7.
- 39. A high efficiency, one piece atomizing nozzle tip as set forth in claim 22, wherein the angle between a longitudinal axis of the first port and a longitudinal axis of the second port ranges from about 15° to about 70°.
- 40. A high efficiency fuel oil atomizer as set forth in claim 4, wherein the angle between a longitudinal axis of the first port and a longitudinal axis of the second port ranges from about 15° to about 70°.
- 41. A high efficiency fuel oil atomizer as set forth in claim 5, wherein the angle between a longitudinal axis of the first port and a longitudinal axis of the second port ranges from about 15° to about 70°.
- 42. A high efficiency fuel oil atomizer as set forth in claim 6, wherein the angle between a longitudinal axis of the first port and a longitudinal axis of the second port ranges from about 15° to about 70°.
- 43. A high efficiency method for atomizing a liquid fuel as set forth in claim 10, wherein said second portion of the pressurized atomizing fluid comprises from about 15% to about 75% of the total of said first and second portions of the pressurized atomizing fluid combined.
- 44. A high efficiency method for atomizing a liquid fuel as set forth in claim 11, wherein said pressurized atomizing fluid comprises steam and said second portion of the steam comprises from about 15% to about 75% of the total of said first and second portions of the steam combined.
- 45. A high efficiency fuel oil atomizer as set forth in claim 4, wherein the angle between a longitudinal axis of the second port and a longitudinal axis of atomizer ranges from about 2° to about 30°.
- 46. A high efficiency fuel oil atomizer as set forth in claim 5, wherein the angle between a longitudinal axis of the second port and a longitudinal axis of atomizer ranges from about 2° to about 30°.
- 47. A high efficiency fuel oil atomizer as set forth in claim 6, wherein the angle between a longitudinal axis of the second port and a longitudinal axis of atomizer ranges from about 2° to about 30°.
REFERENCE TO RELATED APPLICATION
[0001] Priority is claimed in the present application pursuant to 35 U.S.C. § 119(e) from provisional application serial number 60/177,828 filed Jan. 25, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60177828 |
Jan 2000 |
US |