Claims
- 1. A circulating fluidized bed reactor device comprising a reactor chamber delimited horizontally by walls, a centrifugal separator and a back pass for heat recovery, the reactor device comprising means for introducing a fluidizing gas into the reactor chamber and for maintaining a fluidized bed of particles in said chamber, means for transferring gas to be dedusted from the reactor chamber into the separator, means for discharging separated particles from the separator and means for transferring dedusted gas from the separator into the back pass, the latter having a common wall with the reactor chamber, -and the separator having a side wall which is a common wall with a side wall of the back pass.
- 2. A reactor device as claimed in claim 1, wherein said common walls are planar walls.
- 3. A reactor device as claimed in claim 1 wherein said common walls form between them a substantially right angle.
- 4. A reactor device as claimed in claim 1, wherein the common wall between the back pass and the reactor chamber is the front wall of the back pass and wherein the separator has a front wall disposed as an extension of said front wall of the back pass.
- 5. A reactor device as claimed in claim 1, wherein the separator has a rear wall disposed as an extension of the rear wall of the back pass, opposed to said front wall thereof.
- 6. A reactor device as claimed in claim 1, wherein the side wall which is common between the separator and the back pass is disposed as an extension of a side wall of the reactor chamber.
- 7. A reactor device as claimed in claim 1, wherein the side wall which is common between the separator and the back pass is offset, in a direction going from said common wall to an opposite wall of the back pass, with respect to the side wall of the reactor chamber that is the closest to said common wall.
- 8. A reactor device as claimed in claim 1, wherein the means for transferring dedusted gas from the separator into the back pass comprise an opening formed in a side wall of the back pass which is an upper extension of the common wall between the separator and the back pass.
- 9. A reactor device as claimed in claim 8, wherein said side wall of the back pass comprises heat exchange tubes in which a fluid transfer medium can pass and in that said opening is formed in this side wall by bent portions of said tubes.
- 10. A reactor device as claimed in claim 1, wherein the side wall which is common between the separator and the back pass comprises heat exchange tubes that are connected to a series of heat exchange tubes in other walls of the separator and tubes that are connected to a series of heat exchange tubes in other walls of the back pass, the tubes of the two series being intercalated in said common side wall.
- 11. A reactor device as claimed in claim 1, wherein the means for transferring gas to be dedusted from the reactor chamber into the separator comprise an acceleration duct which extends between a wall of the reactor chamber in which an outlet for gas to be dedusted is formed and a wall of the separator in which an inlet for gas to be dedusted is formed, said acceleration duct having a cross section which decreases in a direction going from said outlet to said inlet.
- 12. A reactor device as claimed in claim 11, wherein the wall of the reactor chamber in which said outlet is formed is a side wall of said chamber and wherein the separator wall in which said inlet is formed is a front wall of the separator.
- 13. A reactor device as claimed in claim 11, wherein the acceleration duct comprises a first part connected to said wall of the reactor chamber in which said gas outlet is formed and a second part connected to said wall of the separator in which said gas inlet is formed, said first and second parts being connected together at a knee of the acceleration duct and presenting substantially planar walls.
- 14. A reactor device as claimed in claim 13, wherein the first part of the acceleration duct has a decreasing cross section towards the knee, whereas the second part of said duct has a cross section that remains substantially constant from the knee to the gas inlet.
- 15. A reactor device as claimed in claims 13, wherein the second part of the acceleration duct has a lower wall that is inclined downwardly in a direction going towards the front wall of the separator.
- 16. A reactor device as claimed in claim 13, wherein the walls of the reactor chamber and the walls of the separator comprise heat exchange tubes in which a heat transfer medium can pass and wherein tubes of the chamber walls are bent so as to extend in the walls of said first part of said acceleration duct and tubes of the separator wall are bent so as to extend in the walls of said second part of said duct.
- 17. A reactor device as claimed in claim 1, wherein the reactor chamber has a wall portion, that extends as an extension of said common wall between the reactor chamber and the back pass and that is common to a wall portion of the separator, and wherein an opening enabling gas to be dedusted to circulate from the chamber to the separator is formed in said common wall portion.
- 18. A reactor device as claimed in claim 1, wherein the reactor chamber has heat exchanging means forming panels of said chamber that comprise heat exchange tubes extending in said chamber from at least one wall thereof.
- 19. A reactor device as claimed in claim 18, wherein at least part of said panels are connected to said wall of the reactor chamber which is common with the back pass and form stiffening means for said common wall.
- 20. A reactor device as claimed in claim 1 comprising at least one stiffened wall that extends between two supporting walls and that is stiffened by stiffening means comprising a truss beam extending along said stiffened wall and having respective ends that are respectively supported by said supporting walls.
- 21. A reactor device as claimed in claim 20, wherein the truss beam is attached to the stiffened wall by attaching mans allowing a relative sliding between said beam and said wall.
- 22. A reactor device as claimed in claim 20, wherein the truss beam is composed of at least a first elongate beam member located against the stiffened wall, a second elongate member, parallel to said first beam member and spaced therefrom, and a plurality of spacing members, defining spaces between them and connecting said first and second elongate beam members.
- 23. A reactor device as claimed in claim 20, wherein the truss beam has a tube structure formed of tubes allowing a circulation of a heat transfer medium therein.
- 24. A reactor device as claimed in claim 1, comprising two separators respectively disposed adjacent the side walls of the back pass.
- 25. A reactor device as claimed in claim 24, comprising a reactor chamber, a first back pass located behind said chamber, a second back pass located in front of said chamber and at least a first and a second separators connected to the reactor chamber and, respectively, to said first and second back pass.
- 26. A reactor device as claimed in claim 24, comprising a back pass, a first and a second reactor chamber, respectively located in front of the back pass and behind said back pass, and at last a first and a second separator, connected to the back pass and, respectively, to said first and second reactor chambers.
- 27. An installation of a circulating fluidized bed reactor, comprising at least two coupled reactor devices, each one of which comprises a reactor chamber delimited horizontally by walls, a centrifugal separator and a back pass for heat recovery, means for introducing a fluidizing gas into the reactor chamber and for maintaining a fluidized bed of particles in said chamber, means for transferring gas to be dedusted from the reactor chamber into the separator, means for discharging separated particles from the separator and means for transferring dedusted gas from the separator into the back pass, wherein, in each reactor device, the back pass has a common wall with the reactor chamber and the separator has a side wall which is a common wall with a side wall of the back pass.
- 28. An installation as claimed in claim 27, wherein the two reactor devices are coupled by a coupling wall which, for each device, is formed by a side wall of the reactor chamber of the device and by a side wall of the back pass of the device which is disposed opposite to the common side wall between the back pass and the separator of the device.
- 29. An installation as claimed in claim 28, wherein, for each device, the side wall of the reactor chamber and the side wall the back pass that belong to said coupling wall are aligned.
- 30. An installation as claimed in claim 27, wherein the two reactor devices are coupled at a coupling wall which, for each device, is formed by a front wall of the reactor chamber of the device which is disposed opposite to the common side wall between said reactor chamber and the back pass of the device.
- 31. An installation as claimed in claims 27, wherein the two reactor devices are coupled at a coupling wall which, for each device, comprises a rear wall of the back pass which is disposed opposite to the common side wall between said reactor chamber and the back pass of the device.
- 32. An installation as claimed in claim 31, wherein, for each reactor device, the coupling wall comprises a rear wall of the separator that is aligned with said rear wall of the back pass.
- 33. An installation as claimed in claim 27, wherein, in each reactor device, the means for transferring gas to be dedusted from the reactor chamber into the separator comprise an acceleration duct which extends between an outlet of the reactor chamber and an inlet of the separator, said acceleration duct having a cross section that decreases in a direction going from said outlet to said inlet.
- 34. An installation as claimed in claim 27, wherein each reactor device comprises at least one stiffened wall that extends between two supporting walls and that is stiffened by stiffening means comprising a truss beam extending along said stiffened wall and having respective ends that are respectively supported by said supporting walls.
- 35. A circulating fluidized bed reactor device comprising a reactor chamber delimited horizontally by walls, a centrifugal separator and a back pass for heat recovery, the reactor device comprising means for introducing a fluidizing gas into the reactor chamber and for maintaining a fluidized bed of particles in said chamber, means for transferring gas to be dedusted from the reactor chamber into the separator, means for discharging separated particles from the separator and means for transferring dedusted gas from the separator into the back pass, the separator having a side wall which is a common wall with a side wall of the back pass, wherein the means for transferring dedusted gas from the separator into the back pass comprise an opening formed in a side wall of the back pass which is an upper extension of the common wall between the separator and the back pass.
- 36. A circulating fluidized bed reactor device comprising a reactor chamber delimited horizontally by walls, a centrifugal separator and a back pass for heat recovery, the reactor device comprising means for introducing a fluidizing gas into the reactor chamber and for maintaining a fluidized bed of particles in said chamber, means for transferring gas to be dedusted from the reactor chamber into the separator, means for discharging separated particles from the separator and means for transferring dedusted gas from the separator into the back pass, the separator having a side wall which is a common wall with a side wall of the back pass, wherein the side wall which is common between the separator and the back pass comprises heat exchange tubes that are connected to a series of heat exchange tubes in other walls of the separator and tubes that are connected to a series of heat exchange tubes in other walls of the back pass, the tubes of the two series being intercalated in said common side wall.
- 37. A circulating fluidized bed reactor device comprising a reactor chamber delimited horizontally by walls, a centrifugal separator and a back pass for heat recovery, the reactor device comprising means for introducing a fluidizing gas into the reactor chamber and for maintaining a fluidized bed of particles in said chamber, means for transferring gas to be dedusted from the reactor chamber into the separator, means for discharging separated particles from the separator and means for transferring dedusted gas from the separator into the back pass, the separator having a side wall which is a common wall with a side wall of the back pass, wherein the means for transferring gas to be dedusted from the reactor chamber into the separator comprise an acceleration duct which extends between a wall of the reactor chamber in which an outlet for gas to be dedusted is formed and a wall of the separator in which an inlet for gas to be dedusted is formed, said acceleration duct having a cross section which decreases in a direction going from said outlet to said inlet.
- 38. A reactor device as claimed in claim 37, wherein the acceleration duct comprises a first part connected to said wall of the reactor chamber in which said gas outlet is formed and a second part connected to said wall of the separator in which said gas inlet is formed, said first and second parts being connected together at a knee of the acceleration duct and presenting substantially planar walls.
- 39. A reactor device as claimed in claim 38, wherein the first part of the acceleration duct has a decreasing cross section towards the knee, whereas the second part of said duct has a cross section that remains substantially constant from the knee to the gas inlet.
- 40. A reactor device as claimed in claim 38, wherein the walls of the reactor chamber and the walls of the separator comprise heat exchange tubes in which a heat transfer medium can pass and wherein tubes of the chamber walls are bent so as to extend in the walls of said first part of said acceleration duct and tubes of the separator wall are bent so as to extend in the walls of said second part of said duct.
Priority Claims (1)
Number |
Date |
Country |
Kind |
01402810 |
Oct 2001 |
EP |
|
PRIORITY CLAIM
This is a U.S. national stage of application No. PCT/IEP02/12066, filed on 29 Oct. 2002. Priority is claimed on that application and on the following application: Country: EPO, Application No.: 01 402 810.4, Filed: 30 Oct. 2001.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/EP02/12066 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO03/03833 |
5/8/2003 |
WO |
A |
US Referenced Citations (9)
Foreign Referenced Citations (1)
Number |
Date |
Country |
WO 9960305 |
Nov 1999 |
WO |