Claims
- 1. An apparatus for measuring an unsteady pressure within a pipe, the apparatus comprising:
at least one optical fiber wrapped around a circumference of the pipe and providing a signal indicative of said unsteady pressure.
- 2. The apparatus of claim 1, wherein a length of said optical fiber changes in response to said unsteady pressures within said pipe.
- 3. The apparatus of claim 1, further comprising a reflective element disposed within said fiber having a reflective wavelength related to said unsteady pressure.
- 4. The apparatus of claim 1, further comprising a reflective element disposed within said fiber having a reflective wavelength that changes in response to said unsteady pressure.
- 5. The apparatus of claim 1, wherein said optical fiber measures a circumferential-average unsteady pressure at an axial position along said pipe.
- 6. The apparatus of claim 1, wherein said optical fiber measures an axial average unsteady pressure along a predetermined axial length of said pipe.
- 7. The apparatus of claim 1, wherein said at least one optical fiber comprises a plurality of fiber optic sensors wrapped around a circumference of said pipe, each said sensor providing a signal indicative of said unsteady pressure.
- 8. The apparatus of claim 7, wherein said sensors are each disposed at a different axial position along said pipe and measure said unsteady pressure at each said axial position.
- 9. An apparatus for non-intrusively measuring unsteady pressure at least one axial location along a pipe, said apparatus comprising:
an optical fiber having at least a portion of said fiber disposed around at least a portion of a circumference of the pipe; and a reflective element disposed within said fiber having a reflection wavelength related to said unsteady pressure in the pipe.
- 10. The apparatus of claim 9 wherein said reflection wavelength changes in response to said unsteady pressure.
- 11. The apparatus of claim 9 wherein said reflective element comprises a fiber Bragg grating.
- 12. A method for measuring unsteady pressure within a pipe, the method comprising:
wrapping a predetermined length of an optical fiber around the pipe; measuring a change in said length of said optical fiber due to the pressure; and determining said unsteady pressure from said length of said optical fiber.
- 13. The method of claim 12 wherein said fiber has a reflective element embedded therein.
- 14. The method of claim 12 wherein said reflective element comprises a fiber Bragg grating.
- 15. The method of claim 12 wherein said method further comprising measuring a circumferential-average pressure at a given axial location along the pipe.
- 16. The method of claim 12 wherein said method further comprising measuring an axial average pressure along a given axial length of the pipe.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation of commonly owned co-pending U.S. patent application Ser. No. 09/344,093, entitled “Non-lntrusive Fiber Optic Pressure Sensor for Measuring Unsteady Pressures within a Pipe” filed Jun. 25, 1999 which is a continuation-in-part of commonly owned co-pending U.S. patent application, Ser. No., 09/105,525, entitled “Non-Intrusive Fiber Optic Pressure Sensor for Measuring Pressure Inside, Outside and Across Pipes”, filed Jun. 26, 1998.
Continuations (1)
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Number |
Date |
Country |
Parent |
09344093 |
Jun 1999 |
US |
Child |
10224821 |
Aug 2002 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09105525 |
Jun 1998 |
US |
Child |
09344093 |
Jun 1999 |
US |