Claims
- 1. A production control system comprising:
A series of nested tubular members wherein at least one axial flow channel and at least two annular flow channels are formed; and at least one valve configured and positioned to control flow from each said flow channel.
- 2. A production control system as claimed in claim 1 wherein at least one valve is associated with each flow channel.
- 3. A production control system as claimed in claim 2 wherein each said valve is actuatable individually.
- 4. A production control system as claimed in claim 1 wherein said system further selectively joins flow from all said flow channels.
- 5. A production control system as claimed in claim 1 wherein said system further comprises at least one controller and at least one sensor, said at least one controller being in operable communication with said sensor.
- 6. A production control system as claimed in claim 5 wherein said controller is configured to operate said at least one valve automatically pursuant to information gained from said at least one sensor.
- 7. A production apparatus comprising:
a series of nested tubulars connected to one another such that at least an axial flow channel and at least two annular flow channels are formed; a valve associated with each of said flow channels configured and positioned to independently control flow from each of said flow channels.
- 8. A production apparatus as claimed in claim 7 wherein said apparatus further includes at least one sensor.
- 9. A production apparatus as claimed in claim 8 wherein said sensor senses at least one production fluid parameter.
- 10. A production apparatus as claimed in claim 9 wherein said parameter is selected from such as pressure temperature, chemical constitution, water cut, pH, solid content, scale buildup and resistivity.
- 11. A production apparatus as claimed in claim 8 wherein said apparatus further includes a controller.
- 12. A production apparatus as claimed in claim 11 wherein the controller is located in the downhole environment.
- 13. A method for controlling commingling of flows from multiple zones comprising:
physically containing flows from different zones to individual concentric flow channels in a nested tubular arrangement; and selectively commingling one or more of the flows by setting at least one valve associated with each flow channel to one of a closed position and an infinite number of flow capable positions.
- 14. A method for controlling commingling of flows from multiple zones as claimed in claim 13 wherein said method further comprises sensing fluid parameters to determine desirable valve position.
- 15. A method for controlling commingling of flows from multiple zones as claimed in claim 13 wherein said method further comprises automatically controlling said at least one valve to maintain a desired condition.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of an earlier filing date from U.S. Provisional Application Ser. No. 60/378,208 filed May 6, 2002, the entire disclosure of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
|
60378208 |
May 2002 |
US |