Claims
- 1. A fluidized bed reactor comprising:at least one furnace section delimited by side walls and a bottom grid, said at least one furnace section provided for containing a bed of fluidized solid particles therein; and supplying means for introducing a gas into said at least one furnace section at a level above said bottom grid, said supplying means comprising (i) a gas source chamber, (ii) at least one opening in at least one of said side walls at a level above said bottom grid, and (iii) at least one conduit, having a first end connected to said at least one opening at a first vertical level l1 and a second end in communication with said gas source chamber, for introducing gas from said gas source chamber to said at least one furnace section, said at least one conduit having a bend between said first end and said second end thereof and extending upward from the first vertical level l1 to a second vertical level l2, said at least one conduit comprising a solid flow preventing element for preventing solid particles from flowing backward from said at least one furnace section into said at least one conduit.
- 2. A fluidized bed reactor according to claim 1, wherein said solid flow preventing element is formed by said at least one conduit having a highest point at the second vertical level l2, which second vertical level l2 is higher than the first vertical level l1.
- 3. A fluidized bed reactor according to claim 2, wherein the second end is at the second vertical level l2.
- 4. A fluidized bed reactor according to claim 2, wherein the second end is connected at a third vertical level l3 to an opening in an enclosure delimiting said gas source chamber, said conduit having the highest point at an upward bent portion of the conduit, between its first end and its second end.
- 5. A fluidized bed reactor according to claim 4, wherein said gas source chamber is at least partly above the bottom grid and the first vertical level l1 is above the third vertical level l3.
- 6. A fluidized bed reactor according to claim 1, wherein said supplying means further comprises (iv) a plurality of openings at the same vertical level in at least one of said side walls, and (v) one of said at least one conduits being connected to each of said openings.
- 7. A fluidized bed reactor according to claim 1, wherein said solid flow preventing element is formed by the second end of said at least one conduit projecting into said gas source chamber to the second vertical level l2, which is higher than the first vertical level l1.
- 8. A fluidized bed reactor according to claim 7, wherein said at least one conduit is a substantially upright standpipe, having a bent lower portion connecting said standpipe to said at least one opening in one of said sidewalls.
- 9. A fluidized bed reactor according to claim 1, wherein said at least one conduit is a standpipe having (i) a lower upward inclined portion, the axis thereof forming an angle≧30 but <90 with the horizontal plane, and (ii) an upper portion, the axis thereof forming an angle>45 with the horizontal plane.
- 10. A fluidized bed reactor according to claim 1, wherein said solid flow preventing element is formed by said conduit having (i) a first substantially upright conduit portion connected by its lower end to one of said at least one openings at the first vertical level l1 in a side wall, (ii) a second substantially upright conduit portion connected by its lower end to an air distributor plate connected to a gas source chamber, at a third vertical level l3, and (iii) the upper ends of said first and second conduit portions being connected to each other at the second vertical level l2, which is higher than the first vertical level l1.
- 11. A fluidized bed reactor according to claim 10, wherein the third vertical level l3 is lower than the first vertical level l1.
- 12. A fluidized bed reactor according to claim 1, wherein the fluidized bed reactor comprises two furnace sections which are separated from each other by a partition.
- 13. A fluidized bed reactor according to claim 1, wherein the fluidized bed reactor comprises two furnace sections separated by a partition, which is formed of two substantially upright or inclined partition walls delimiting a partition space between them.
- 14. A fluidized bed reactor according to claim 13, wherein said supplying means for introducing gas into the furnace sections is connected to said partition and includes (i) openings in said partition walls, and (ii) conduits arranged within the partition space and connected by their first ends to said openings in said partition walls and by their second ends being in flow communication with said gas source chamber.
- 15. A fluidized bed reactor according to claim 14, wherein a portion of the partition space between said two partition walls forms said gas source chamber, and said conduits are standpipes arranged within said gas source chamber.
- 16. A fluidized bed reactor according to claim 15, wherein the partition space is delimited at its vertical sides by said two partition walls and at its bottom by a nozzle supporting plate separating the partition space from said gas source chamber, and said conduits arranged within the partition space are connected by their second ends to openings in said nozzle supporting plate, for providing gas from said gas source chamber to said furnace sections.
- 17. A fluidized bed reactor according to claim 13, wherein said partition is made of cooling surfaces.
- 18. A fluidized bed reactor according to claim 1, wherein said reactor comprises a large scale circulating fluidized bed boiler, in which said side walls are made of cooling surfaces, comprising at least one of finned tube panels and membrane walls, forming a portion of a water/steam system of the boiler.
- 19. A fluidized bed reactor according to claim 18, wherein the conduits are substantially upright standpipes connected by their lower ends, which are outlet ends of air conduits, at the first vertical level l1 to openings in the side walls, and by their upper ends to a gas source chamber, the upper ends being the inlet ends of the air conduits and located at a second vertical level l2, which is higher than the first vertical level l1.
- 20. A fluidized bed reactor according to claim 19, wherein the height difference Δl between the first vertical level l1 and the second vertical level l2 is about 1.0 meter, to provide a seal leg by the pressure difference between the gas source chamber and the furnace section.
- 21. A fluidized bed reactor according to claim 1, wherein said side walls comprise at least one of external side walls, partial partition walls and complete partition walls of said furnace section.
- 22. A fluidized bed reactor according to claim 1, wherein said side walls comprise external side walls of said furnace and said supplying means is located external to said furnace, outside of said side walls.
- 23. A fluidized bed reactor comprising:at least one furnace section delimited by side walls and a bottom grid, said at least one furnace section provided for containing a bed of fluidized solid particles; and supplying means for introducing a gas into said at least one furnace section at a level above said bottom grid, said supplying means comprising (i) a gas source chamber, (ii) at least one opening in at least one of said side walls at a level above said bottom grid, and (iii) at least one conduit having a first end connected to said at least one opening at a first vertical level l1 and a second end connected to said gas source chamber, for introducing gas from said gas source chamber to said at least one furnace section, said at least one conduit comprising a solid flow preventing element for preventing solid particles from flowing backward from said at least one furnace section into said at least one conduit, wherein said solid flow preventing element is formed by the conduit having a bend between said first end and said second end thereof and extending upward from the first vertical level l1 to a second vertical level l2 and the second end of the conduit being connected at a third vertical level l3 to said gas source chamber, said conduit having the highest point at the second vertical level l2.
- 24. A fluidized bed reactor according to claim 23, wherein said supplying means further comprises (iv) a plurality of openings at the same vertical level in at least one of said side walls, and (v) one of said at least one conduits being connected to each of said openings.
- 25. A fluidized bed reactor according to claim 23, wherein the gas source chamber is at least partly above the bottom grid and the first vertical level l1 is above the third vertical level l3.
- 26. A fluidized bed reactor according to claim 23, wherein the fluidized bed reactor comprises two furnace sections which are separated from each other by a partition.
- 27. A fluidized bed reactor according to claim 26, wherein said partition is made of cooling surfaces.
- 28. A fluidized bed reactor according to claim 23, wherein the fluidized bed reactor comprises two furnace sections separated by a partition wall, which is formed of two substantially upright or inclined partition walls delimiting a partition space between them.
- 29. A fluidized bed reactor according to claim 28, wherein said supplying means for introducing gas into said furnace sections is connected to said partition and includes (i) openings in said partition walls, and (ii) conduits arranged within the partition space and connected by their first ends to said openings in said partition walls, and by their second ends being in flow communication with said gas source chamber.
- 30. A fluidized bed reactor according to claim 29, wherein the partition space is delimited at its vertical sides by said two partition walls and at its bottom by a nozzle supporting plate separating the partition space from said gas source chamber, and said conduits arranged within the partition space are connected by their second ends to openings in said nozzle supporting plate, for providing gas from said gas source chamber to said furnace sections.
- 31. A fluidized bed reactor according to claim 23, wherein said reactor comprises a large scale circulating fluidized bed boiler, in which said side walls are made of cooling surfaces, comprising at least one of finned tube panels and membrane walls, forming a portion of a water/steam system of the boiler.
- 32. A fluidized bed reactor according to claim 23, wherein said side walls comprise at least one of external side walls, partial partition walls and complete partition walls of said furnace section.
- 33. A fluidized bed reactor according to claim 23, wherein said side walls comprise external side walls of said furnace and said supplying means is located external to said furnace, outside said side walls.
- 34. A fluidized bed reactor comprising:at least one furnace section delimited by side walls and a bottom grid, said at least one furnace section provided for containing a bed of fluidized solid particles therein; and supplying means for introducing a gas into said at least one furnace section at a level above said bottom grid, said supplying means comprising (i) a gas source chamber, (ii) at least one opening in at least one of said side walls at a level above said bottom grid, and (iii) at least one conduit, having a first end connected to said at least one opening at a first vertical level l1 and a second end connected to said gas source chamber, for introducing gas from said gas source chamber to said at least one furnace section, said at least one conduit comprising a solid flow preventing element for preventing solid particles from flowing backward from said at least one furnace section into said at least one conduit, wherein said solid flow preventing element is formed by said at least one conduit having (i) a first substantially upright conduit portion connected by its lower end to one of said at least one openings at the first vertical level l1 in a side wall, (ii) a second substantially upright conduit portion connected by its lower end to an air distributor plate connected to a gas source chamber, at a third vertical level l3, and (iii) the upper ends of the first and second conduit portions being connected to each other at a second vertical level l2, which is higher than the first vertical level l1.
- 35. A fluidized bed reactor according to claim 34, wherein the third vertical level l3 is lower than the first vertical level l1.
Parent Case Info
This application is a continuation-in-part of application Ser. No. 08/888,790, filed Jul. 7, 1997, now U.S. Pat. No. 6,029,612.
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Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08/888790 |
Jul 1997 |
US |
Child |
09/467924 |
|
US |