IP Library Granted Patent US 7,125,006
Granted Patent B2
US 7,125,006 · App. 10/031,856 · Granted Oct 24, 2006

Methods and apparatus for mixing fluids

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Quick Facts
Patent No.
US 7,125,006
App. No.
10/031,856
Granted
Oct 24, 2006
Kind
B2
Abstract

A bubble cap ( 100 ) has a riser ( 120 ) and a cap ( 130 ), separated by a divider ( 140 ) that extends to a length at least 50% of a distance measured between the top of the riser ( 122 ) and the bottom of the cap ( 134 ). In another aspect, the riser ( 120 ) and cap ( 130 ) cooperate to provide a skirt height ( 160 ) of no less than 1.5″. More preferred bubble caps ( 400 ) have a relatively high skirt height ( 460 ) or long slit length ( 497 ), or both. In yet another aspect, flow-redirecting vanes ( 610 ) and plates ( 630 ) cooperate to provide a rough distribution of fluids to subsequent distribution tray ( 650 ).

Claims (29)

1. A bubble cap adapted for co-current transport of a mixture of a liquid fluid and a gaseous fluid, comprising:

(a) a riser having a top; (b) a cap having a bottom and at least one side slot, the side slot having an upper end, wherein the cap is coupled to the riser to thereby form a space between the riser and the cap; and (c) a divider coupled to at least one of the riser and the cap and disposed in the space, wherein the divider extends to a length of at least 70% of a distance measured between the top of the riser and the bottom of the cap;

wherein the divider extends across the upper end of the slot such that an upper end of the divider is located above the upper end of the slot and such that a lower end of the divider is located below the upper end of the slot;

wherein the slot is configured to have a length such that the upper end of the slot is above a liquid fluid disposed on a distribution plate;

wherein the bubble cap is coupled to the distribution plate to thereby form a passage for downward flow of a mixture of the liquid fluid and a gaseous fluid through the distribution plate; and

wherein the distribution plate is disposed within a reactor that is configured such that the liquid fluid and the gaseous fluid move in a downward motion within the reactor.

2. The bubble cap of claim 1 wherein the length of the divider is at least 80% of the distance between the top of the riser and the bottom of the cap.

3. The bubble cap of claim 1 wherein the length of the divider is at least 90% of the distance between the top of the riser and the bottom of the cap.

4. The bubble cap of claim 1 wherein the length of the divider is 100% of the distance between the top of the riser and the bottom of the cap.

5. The bubble cap of claim 1 wherein the divider is attached to the riser.

6. The bubble cap of claim 1 wherein the divider is attached to the cap.

7. The bubble cap of claim 1 wherein the divider is attached to both the riser and the cap.

8. The bubble cap of claim 1 wherein the bubble cap has at least two dividers.

9. The bubble cap of claim 1 wherein the bubble cap has at least three dividers.

10. The bubble cap of claim 1 wherein the bubble cap has at least six dividers.

11. The bubble cap of claim 1 , further comprising a swirl director attached to the riser.

12. A mixing device having a plurality of bubble caps according to claim 1 .

13. A mixing device having a bubble cap of claim 1 wherein the bubble cap, having at least one slot, is positioned with respect to a distribution plate and the bottom of the cap is positioned at least 1.5 inches from the distribution plate.

14. A bubble cap, comprising:

a cap with at least one slot that has an upper end, and a riser configured to provide the cap with a skirt height of no less than 1.5 inches, wherein the bubble cap is configured to be coupled to a distribution plate in a vessel such that a liquid fluid and a gaseous fluid flow co-currently upwardly in a space between the riser and the cap;

a divider disposed in a space between the cap and the riser and extending to a length at least 70% of a distance measured between the tap of the riser and the bottom of the cap;

wherein the divider extends across the upper end of the slot such that an upper end of the divider is located above the upper end of the slot and such that a lower end of the divider is located below the upper end of the slot; and

wherein the slot is configured to have a length such that the upper end of the slot is above a liquid fluid surrounding the bubble cap.

15. The bubble cap of claim 14 , wherein the skirt height is no less than 2.5 inches.

16. The bubble cap of claim 14 , wherein the skirt height is no less than 4 inches.

17. The bubble cap of claim 14 , wherein the cap has a side that includes at least three slots.

18. The bubble cap of claim 14 , wherein the slot has a length of at least 2.5 inches.

19. The bubble cap of claim 14 , wherein the slot has a length of at least 3.5 inches.

20. The bubble cap of claim 14 , wherein the slot has a length of at least 5 inches.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2005
From: FLUOR ENTERPRISES, INC.
To: FLUOR TECHNOLGIES CORPORATION
Reel/Frame 015541/0783 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2005
From: FLUOR CORPORATION
To: FLUOR ENTERPRISES, INC.
Reel/Frame 015552/0248 →