Claims
- 1. A tower distributor apparatus for use in a furnace system, the apparatus comprising:
an inlet section for receiving a heterogeneous stream comprising at least one solid fuel and a carrier gas; a mixer section coupled to the inlet section for creating turbulence and mixing the heterogeneous stream; a recovery section arranged downstream of the mixer section for receiving the mixed heterogeneous stream, the recovery section having a length such that turbulence in the mixed heterogeneous stream substantially subsides as the stream flows therealong, whereby a laminar mixed heterogeneous stream is obtained; and an outlet section for receiving the laminar mixed heterogeneous stream and for splitting the laminar mixed heterogeneous stream into a plurality of output streams such that the plurality of output streams have substantially equal amounts of the at least one solid fuel.
- 2. The apparatus of claim 1, wherein the length of the recovery section is at least one-half of the dimension of the diameter thereof.
- 3. The apparatus of claim 1, wherein the mixer section includes a diffuser.
- 4. The apparatus of claim 1, wherein the mixer section includes an impeller.
- 5. The apparatus of claim 1, wherein the length of the recovery section is greater than the length of the mixer section.
- 6. The apparatus of claim 1, wherein the inlet section includes a transition section for receiving the heterogeneous stream, wherein the transition section includes a geometry that matches a geometry of at least one pipe, which provides the heterogeneous stream to the apparatus.
- 7. The apparatus of claim 6, wherein the recovery section includes a length that is greater than the length of the mixer section.
- 8. The apparatus of claim 1, wherein the inlet section further comprises an inlet diameter and an outlet diameter, wherein the inlet diameter is greater than the outlet diameter.
- 9. The apparatus of claim 1, wherein the outlet section further comprises an inlet diameter and an outlet diameter.
- 10. A furnace system comprising:
a furnace; at least one feed pipe for providing at least one heterogeneous stream comprising at least one solid fuel and a carrier gas; a tower distributor coupled to the at least one feed pipe for receiving the at least one heterogeneous stream and for distributing the at least one heterogeneous stream into a plurality of output streams, each of the plurality of output streams having substantially equal amounts of the at least one solid fuel; a plurality of burners coupled to the furnace for receiving each of the plurality of output streams for combustion in the furnace; wherein the tower distributor includes
an inlet section for receiving the at least one heterogeneous stream comprising at least one solid fuel and a carrier gas; a mixer section coupled to the inlet section for creating turbulence and mixing the at least one heterogeneous stream to provide a single mixed stream; a recovery section arranged downstream of the mixer section for receiving the single mixed heterogeneous stream, the recovery section having a length such that turbulence in the single mixed heterogeneous stream substantially subsides as the stream flows therealong, whereby a laminar mixed heterogeneous stream is obtained; and an outlet section for receiving the laminar mixed heterogeneous stream and for splitting the laminar mixed heterogeneous stream into a plurality of output streams such that the plurality of output streams have substantially equal amounts of the at least one solid fuel
- 11. The furnace system of claim 10, wherein the length of the recovery section is at least one-half of the dimension of the diameter thereof.
- 12. The furnace system of claim 10, wherein the mixer section includes a diffuser.
- 13. The furnace system of claim 10, wherein the mixer section includes an impeller.
- 14. The furnace system of claim 10, wherein the length of the recovery section is greater than the length of the mixer section.
- 15. The furnace system of claim 10, wherein the tower distributor is coupled to the at least one feed pipe at the inlet section.
- 16. The furnace system of claim 15, wherein the inlet section includes a transition section having a geometry that matches the geometry of the at least one feed pipe.
- 17. The furnace system of claim 16, wherein the recovery section includes a length that is greater than the length of the mixer section.
- 18. The furnace system of claim 15, wherein the inlet section further comprises an inlet diameter and an outlet diameter, wherein the inlet diameter is greater than the outlet diameter.
- 19. The furnace system of claim 10, wherein the outlet section further comprises an inlet diameter and an outlet diameter, wherein the inlet diameter is greater than the outlet diameter.
- 20. A method of distributing a heterogeneous stream, the heterogeneous stream comprising at least one solid fuel and a carrier gas, the method comprising:
receiving the heterogeneous stream; mixing the received heterogeneous stream to create turbulence and provide a turbulent mixed heterogeneous stream; converting the turbulent mixed heterogeneous stream into a laminar mixed heterogeneous stream within a recovery section having a length such that turbulence in the mixed heterogeneous stream substantially subsides as the stream flows therealong whereby the recovery section converts the turbulent mixed heterogeneous stream into the laminar mixed heterogeneous stream and splitting the laminar mixed heterogeneous stream into a plurality of output streams for distribution such that the plurality of output streams have substantially equal amounts of the at least one solid fuel.
- 21. The method of claim 20, wherein the length of the recovery section is at least one-half of the dimension of the diameter thereof.
- 22. The method of claim 20, wherein the mixing step is performed by using a diffuser.
- 23. The method of claim 20, wherein the mixing step is performed by using an impeller.
- 24. The method of claim 20, wherein the at least one solid fuel is pulverized coal and turbulence in the heterogeneous stream subsides as the stream flows within the recovery section having a length that is greater than the length of the mixing section.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims benefit of U.S. Provisional Patent Application 60/355,676, filed Feb. 7, 2002, the disclosure of which is incorporated by reference herein.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60355676 |
Feb 2002 |
US |