Claims
- 1. A circulating fluidized bed reactor, comprising:
- a reactor enclosure defined by side, front and rear enclosure walls and having an unobstructed bottom portion, an unobstructed upper portion, and two exit openings, one exit opening located in the upper portion on the front enclosure wall and the other exit opening located in the upper portion on the rear enclosure wall;
- primary, impact-type particle separator means located within the upper portion of the reactor enclosure at both exit openings, for collecting particles entrained in a gas flowing within the reactor enclosure from the lower portion to the upper portion thereof and causing the particles entrained with the gas flowing within the reactor enclosure to fall towards the bottom portion of the reactor enclosure;
- particle-receiving means, connected to each of the primary, impact-type particle separator means at both exit openings, and located entirely within the upper portion of the reactor enclosure, for receiving collected particles as the collected particles fall from the primary, impact-type particle separator means; and
- returning means, particles connected to each of the particle-receiving means at both exit openings and located entirely within the reactor enclosure, for returning particles from the particle-receiving means directly and internally into the bottom portion of the reactor enclosure so that the received particles from the particle-receiving means free fall unobstructed and unchanneled down along the enclosure walls to the bottom portion of the reactor enclosure for subsequent recirculation.
- 2. The reactor of claim 1, further comprising means for supplying fuel and sorbent to the lower portion of the reactor enclosure.
- 3. The reactor of claim 1, further comprising a windbox 30 connected to the lower portion of the reactor enclosure.
- 4. The reactor of claim 1, wherein the primary, impact particle separator comprises rows of concave impingement members which are U-shaped, E-shaped, W-shaped or of some other concave configuration.
- 5. The reactor of claim 4, wherein the rows of concave impingement members are arranged in two groups, an upstream group and a downstream group, each group having at least two rows of concave impingement members.
- 6. The reactor of claim 1, wherein the CFB reactor is substantially symmetrical about a vertical centerline plane (P) passing through the side walls of the reactor enclosure.
- 7. The reactor of claim 1, further comprising at least one division wall heating surface and at least one wingwall heating surface located within the reactor enclosure.
- 8. The reactor of claim 1, further comprising a convection pass fluidically connected to both exit openings, for providing flue gases and entrained particles to heat exchanger surfaces located therein.
- 9. The reactor of claim 8, wherein the heat exchanger surfaces located within the convection pass comprise at least one superheater surface, at least one reheater surface, and at least one economizer surface.
- 10. The reactor of claim 1, further comprising a plurality of separate intermediate flue passages, each having an inlet, an outlet and no heating surfaces therein and each being fluidically connected at their respective inlets to an exit opening on at least one of the front enclosure wall and the rear enclosure wall, wherein the outlet of each separate intermediate flue passage is combined into a single, common convection pass containing downstream heating surfaces.
Parent Case Info
This appln is a 371 of PCT/US96/19039 filed Nov. 29, 1996, also claims the benefit of U.S. Provisional No. 60/008,253 filed Dec. 1, 1995.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
102e Date |
371c Date |
PCT/US96/19039 |
11/29/1996 |
|
|
6/29/1998 |
6/29/1998 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO97/20172 |
6/5/1997 |
|
|
US Referenced Citations (8)
Foreign Referenced Citations (3)
Number |
Date |
Country |
26 18 290 A1 |
Dec 1976 |
DEX |
762421 |
Apr 1976 |
ZAX |
2011594 |
Jul 1979 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Belin et al., "Repowering of Ukrainian Power Plants with CFB Boilers", PowerGen Americas '95 Conference in Anaheim, CA, pp 1-18, Dec. 1995. |