IP Library Granted Patent US 9,611,952
Granted Patent B2
US 9,611,952 · App. 14/384,141 · Granted Apr 4, 2017

Reduced cavitation oilfield choke

Inventor: Lane McCaskill (Houston, TX)
Assignee: National Oilwell Varco, L.P.
F16K47/08E21B34/02F16K3/246
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Quick Facts
Patent No.
US 9,611,952
App. No.
14/384,141
Granted
Apr 4, 2017
Kind
B2
Abstract

A choke with reduced cavitation and/or flashing due to a high pressure fluids passing through the choke includes a housing having a high pressure inlet port and a low pressure outlet port, and a cage positioned within the housing and having a passage for passing fluid therethrough. A plurality of beads are each positioned in the cage, such that fluid flows between the cage and the beads and between the beads when passing through the cage. Fluid pressure is reduced by the fluid passing through the cage, thereby reducing cavitation.

Claims (41)

1. A choke with reduced cavitation and/or flashing due to high pressure fluids passing through the choke, comprising:

a housing having a high pressure inlet port and a low pressure outlet port;

one or more cages positioned within the housing and having one or more inlet ports to receive fluid into the cages and one or more outlet ports to allow fluid to exit the cages, wherein one of the cages comprises a bead cage;

an actuator;

a flow controller coupled to the actuator and configured to at least partially block the inlet ports into at least one of the cages; and

a plurality of beads positioned within the bead cage, such that fluid flows between the bead cage and the plurality of beads and between the beads when passing through the bead cage, and fluid pressure is reduced while fluid passes through the bead cage,

wherein the one or more outlet ports of the bead cage are formed in a lid removable secured to the bead cage, and

wherein at least a portion of a length of the bead cage inner diameter is threaded and the lid is formed with mating threads.

2. The choke of claim 1 , wherein the flow controller comprises a control sleeve axially movable with the actuator to open and close the inlet ports into the bead cage.

3. The choke of claim 1 , wherein another of the cages comprises a jet cage disposed upstream from the bead cage and the inlet ports of the jet cage receive fluids from the high pressure inlet port and the one or more outlet ports of the jet cage pass fluid into the bead cage, wherein an interior of the jet cage is in fluid communication through the one or more outlet ports with an interior of the bead cage.

4. The choke of claim 3 , wherein at least one inlet port of the jet cage is positioned in a side of the jet cage and radially opposite another inlet port, such that jetstreams from the side inlet ports impinge within the sleeve.

5. The choke of claim 1 , wherein the lid is configured to retain the plurality of beads in the cage.

6. The choke of claim 5 , wherein the lid is adjustably engaged with the bead cage to compress a variety of quantities of beads loaded into the bead cage for different flow ranges of the choke.

7. The choke of claim 1 , wherein the cage is shrink fit onto a choke seat which is secured to a housing of the choke.

8. The choke of claim 1 , wherein the beads are bonded to each other and to the cage.

9. The choke of claim 8 , wherein the beads are bonded to each other and to the cage by a sintering operation.

10. The choke of claim 1 , wherein the beads are spheroids.

11. A choke, comprising:

a housing having a high pressure inlet port and a low pressure outlet port;

one or more cages positioned within the housing and having one or more inlet ports to receive fluid into the cages and one or more outlet ports to allow fluid to exit the cages, wherein a first one of the cages comprises a bead cage;

an actuator;

a flow controller coupled to the actuator and configured to at least partially block the inlet ports into at least one of the cages; and

a plurality of beads positioned within the bead cage, such that fluid is permitted to flow between the bead cage and the plurality of beads and between the beads when passing through the bead cage,

wherein the plurality of beads are bonded to each other and to the cage.

12. The choke of claim 11 , wherein the flow controller comprises a control sleeve axially movable with the actuator to open and close the inlet ports into the bead cage.

13. The choke of claim 11 , wherein a second one of the cages comprises a jet cage disposed upstream from the bead cage, wherein the inlet ports of the jet cage receive fluids from the high pressure inlet port, and the one or more outlet ports of the jet cage pass fluid into the bead cage, and wherein an interior of the jet cage is in fluid communication through the one or more outlet ports with an interior of the bead cage.

14. The choke of claim 13 , wherein at least one inlet port of the jet cage is positioned in a side of the jet cage and radially opposite another inlet port, such that jetstreams from the side inlet ports impinge within the sleeve.

15. The choke of claim 11 , further comprising a lid removable secured to the bead cage to retain the plurality of beads in the cage.

16. The choke of claim 15 , wherein at least a portion of a length of the bead cage inner diameter is threaded and the lid is formed with mating threads.

17. The choke of claim 15 , wherein the one of more outlet ports of the bead cage are formed in the lid.

18. The choke of claim 11 , wherein the cage is shrink fit onto a choke seat which is secured to a housing of the choke.

19. The choke of claim 11 , wherein the beads are bonded to each other and to the cage by a sintering operation.

20. A choke with reduced cavitation and/or flashing due to high pressure fluids passing through the choke, comprising:

a housing having a high pressure inlet port and a low pressure outlet port;

one or more cages positioned within the housing and having one or more inlet ports to receive fluid into the cages and one or more outlet ports to allow fluid to exit the cages, wherein one of the cages comprises a bead cage;

an actuator;

a flow controller coupled to the actuator and configured to at least partially block the inlet ports into at least one of the cages; and

a plurality of beads positioned within the bead cage, such that fluid flows between the bead cage and the plurality of beads and between the beads when passing through the bead cage, and fluid pressure is reduced while fluid passes through the bead cage,

wherein the one or more outlet ports of the bead cage are formed in a lid removable secured to the bead cage;

wherein the lid is configured to retain the plurality of beads in the cage; and

wherein the lid is adjustably engaged with the bead cage to compress a variety of quantities of beads loaded into the bead cage for different flow ranges of the choke.

Assignments (1)
MERGER Recorded Aug 31, 2016
From: T-3 PROPERTY HOLDINGS, INC.
To: NATIONAL OILWELL VARCO, L.P.
Reel/Frame 039604/0203 →
Continuity (2)
Provisional Application 61610622 · Mar 14, 2012
Related Publication 20150041690A1 · Feb 12, 2015