Claims
- 1. A boiler comprising:a combustion chamber having a top portion, a bottom portion where fuel may be burned and a freeboard region; and a fluid bed assembly affixed to said bottom portion in a manner whereby said freeboard region is effectively increased without adding additional height to said top portion of said combustion chamber, wherein said fluid bed assembly has a lower region adapted to hold a fluidized fuel bed and an upper region above the fluidized fuel bed, and wherein said freeboard region is effectively increased by at least a height of the upper region.
- 2. The boiler of claim 1, wherein said fluid bed assembly includes at least one side wall defining said upper and lower regions, wherein a first plurality of in-bed-heat exchange tubes are disposed at a slight angle to the horizontal in said fluidized bed, and wherein a second plurality of side wall heat exchange tubes are disposed along said side wall of said lower region.
- 3. The boiler of claim 2, further comprising a secondary air inlet disposed in said upper region above the fluidized bed, a fuel feed inlet disposed in said upper region above the fluidized bed, and a recycle inlet disposed in said upper region above the fluidized bed.
- 4. The boiler of claim 3, wherein said combustion chamber has a gaseous discharge port through which discharge gases pass, wherein a plurality of convective passes are arranged in a serpentine path, and wherein the discharge gases are directed through said convective passes along said serpentine path.
- 5. The boiler of claim 4, wherein said serpentine path includes an outlet, wherein the outlet is connected to said recycle inlet, and wherein any solid particles entrained in said discharge gases that separate therefrom are directed through said outlet to said recycle inlet to said upper region.
- 6. The boiler of claim 2, further comprising an inlet mechanism that is disposed at a bottom of said lower region and that is adapted to admit a fluidized gas to said fluidized bed at flow rates to control a fluidizing velocity and particle circulation through said in-bed-heat exchange tubes.
- 7. The boiler of claim 1, wherein the attached fluid bed assembly increases said freeboard region by about 50% to about 100%.
- 8. The boiler of claim 1, wherein said fluid bed assembly comprises:a fluid bed chamber having at least one side wall, an upper region and a lower region, the lower region defining a fluidized bed; a first plurality of in bed-heat exchange tubes disposed at a slight angle to the horizontal in said fluidized bed; and a second plurality of side wall heat exchange tubes disposed along said side wall of said lower region.
- 9. The boiler of claim 8, wherein said slight angle is in the range of about 15 to 20°.
- 10. The boiler of claim 8, wherein said fluid bed assembly further comprises:an inlet mechanism that is disposed at a bottom of said lower region and that is adapted to admit fluidized gas to said fluidized bed; a secondary air inlet disposed in said upper region above the fluidized bed; a fuel feed inlet disposed in said side wall in said upper region above the fluidized bed; and a recycle inlet disposed in said side wall in said upper region above the fluidized bed.
- 11. The boiler of claim 10, wherein said slight angle is in the range of about 15 to 20°.
- 12. The boiler of claim 10, wherein said first plurality of in-bed heat exchange tubes includes first and second groups of the in-bed heat exchange tubes, wherein the second group of in-bed heat exchange tubes is disposed between the first group of in-bed heat exchange tubes and said side wall.
- 13. The boiler of claim 12, wherein said fluid bed assembly further comprises a plurality of metal membranes disposed between adjacent ones of the in-bed heat exchange tubes of said first group, thereby forming a water cooled fluid bed circulation baffle within the lower region.
- 14. The boiler of claim 8, wherein said first plurality of in-bed heat exchange tubes includes first and second groups of the in-bed heat exchange tubes, wherein the second group of in-bed heat exchange tubes is disposed between the first group of in-bed heat exchange tubes and said side wall.
- 15. The boiler of claim 8, wherein said fluid bed assembly further comprises a plurality of metal membranes disposed between adjacent ones of the in-bed heat exchange tubes of said first group, thereby forming a water cooled fluid bed circulation baffle within the lower region.
- 16. The boiler of claim 8, wherein said fluid bed assembly further comprises:an inlet mechanism that supplies fluidized gas to said lower region to form said fluidized bed; and a water system that supplies water to the plurality of in-bed heat exchange tubes and to said plurality of side wall heat exchange tubes.
- 17. The boiler of claim 8, wherein said fluid bed assembly further comprises one or more connectors that couple said plurality of in-bed heat exchange tubes and said plurality of side wall heat exchange tubes to a boiler water circuit of said boiler.
Parent Case Info
This application claims the benefit of U.S. Provisional Application Ser. No. 60/123,598, filed Mar. 10, 1999.
US Referenced Citations (7)