Claims
- 1. A system for monitoring fluid flow characteristics in a wellbore, comprising:
a signal sensing demodulator device; and a skin friction sensing device positionable within said wellbore and being in informational communication with said signal sensing demodulator device.
- 2. The system for monitoring fluid flow characteristics in a wellbore as in claim 1 wherein said skin friction sensing device is mounted within a surface of a tubing string in said wellbore, said skin sensing device being engagable by a fluid flowing adjacent to said tubing string.
- 3. The system for monitoring fluid flow characteristics in a wellbore as in claim 2 wherein a plurality of said skin friction sensing devices are circumferentially arranged about a cross section of said tubing string in said wellbore, said skin friction sensing devices being engagable by at least one fluid flowing adjacent to at least one of either an inside surface of said tubing string and an outside surface of said tubing string.
- 4. The system for monitoring fluid flow characteristics in a wellbore as in claim 1 wherein said signal sensing demodulator device is located at a surface location relative to said wellbore.
- 5. The system for monitoring fluid flow characteristics in a wellbore as in claim 1 wherein said signal sensing demodulator device is located at a downhole location relative to said wellbore.
- 6. A system for monitoring fluid flow characteristics in a wellbore, comprising:
a fiber optic sensing demodulator device; and a fiber optic skin friction sensing device positionable within said wellbore and being in informational communication with said fiber optic sensing demodulator device.
- 7. The system for monitoring fluid flow characteristics in a wellbore as in claim 6 wherein said fiber optic skin friction sensing device is mounted within a surface of a tubing string in said wellbore, said fiber optic skin friction sensing device being engagable by a fluid flowing adjacent to said tubing string.
- 8. The system for monitoring fluid flow characteristics in a wellbore as in claim 7 wherein a plurality of said fiber optic skin friction sensing devices are circumferentially arranged about a cross section of said tubing string in said wellbore, said fiber optic skin friction sensing devices being engagable by at least one fluid flowing adjacent to at least one of an inside surface of said tubing string and an outside surface of said tubing string.
- 9. The system for monitoring fluid flow characteristics in a wellbore as in claim 6 wherein said fiber optic sensing demodulator device is located at a surface location relative to said wellbore.
- 10. The system for monitoring fluid flow characteristics in a wellbore as in claim 6 wherein said fiber optic sensing demodulator device is located at a downhole location relative to said wellbore.
- 11. The system for monitoring fluid flow characteristics in a wellbore as in claim 6 wherein said informational communication between said fiber optic sensing demodulator device and said fiber optic skin friction sensing device is maintained through a fiber optic communication means.
- 12. A method for determining fluid flow characteristics in a wellbore, comprising:
exposing a skin friction sensing device to a fluid flow; transmitting a signal obtained as a result of a movement of said skin friction sensing device from said fluid flow to a signal sensing demodulator device; converting said signal to a numerical value; and computing a parameter of said fluid flow in said wellbore from said numerical value.
- 13. The method for determining fluid flow characteristics in a wellbore as in claim 12 wherein said exposing of said skin friction sensing device to said fluid flow comprises mounting said skin friction sensing device in a tubing string wall such that said skin friction sensing device is engagable by said fluid flow.
- 14. The method for determining fluid flow characteristics in a wellbore as in claim 13 wherein said exposing further comprises measuring a direction of said fluid flow and a drag force associated with said fluid flow.
- 15. A method for determining fluid flow characteristics in a wellbore, comprising:
exposing a fiber optic skin friction sensing device to a fluid flow; transmitting a signal obtained as a result of a movement of said fiber optic skin friction sensing device from said fluid flow to a fiber optic sensing demodulator device; converting said signal to a numerical value; and computing a parameter of said fluid flow in said wellbore from said numerical value.
- 16. The method for determining fluid flow characteristics in a wellbore as in claim 15 wherein said exposing of said fiber optic skin friction sensing device to said fluid flow comprises mounting said fiber optic skin friction sensing device in a tubing string wall such that said fiber optic skin friction sensing device is engagable by said fluid flow.
- 17. The method for determining fluid flow characteristics in a wellbore as in claim 16 wherein said exposing further comprises measuring a direction of said fluid flow and a drag force associated with said fluid flow.
- 18. The method for determining fluid flow characteristics in a wellbore as in claim 15 wherein said transmitting of said signal to said fiber optic sensing demodulator device is through a fiber optic communications cable.
- 19. The method for determining fluid flow characteristics in a wellbore as in claim 13 wherein said exposing further comprises measuring a magnitude and direction of drag forces associated with said fluid flow.
- 20. The method for determining fluid flow characteristics in a wellbore as in claim 16 wherein said exposing further comprises measuring a magnitude and direction of drag forces associated with said fluid flow.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of an earlier filing date from U.S. Provisional Application Serial No. 60/323,780 filed Sep. 20, 2001, the entire disclosure of which is incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60323780 |
Sep 2001 |
US |