IP Library Granted Patent US 8,817,266
Granted Patent B2
US 8,817,266 · App. 13/971,219 · Granted Aug 26, 2014

Gas separators with fiber optic sensors

Inventors: Brown Lyle Wilson (Tulsa, OK); Donn J. Brown (Broken Arrow, OK); Ketankumar K. Sheth (Tulsa, OK)
Assignee: Baker Hughes Incorporated
G01N21/00G01D5/268G01D5/35383G01N21/47
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Quick Facts
Patent No.
US 8,817,266
App. No.
13/971,219
Granted
Aug 26, 2014
Kind
B2
Abstract

Devices and methods for detecting operational parameters associated with a gas separator used in an electric submersible pump in a wellbore. A fiber optic sensing arrangement is used to detect the operational parameter and includes a fiber optic signal processor and an optic fiber that is associated with the gas separator to provide a signal indicative of the parameter to the signal processor.

Claims (33)

1. A gas separator system for use in separating gas from production fluid in an electric submersible pump, the gas separator system comprising:

a gas separator having an outer housing defining a separator chamber and having a fluid inlet and fluid outlet ports for evacuation of separated gases, and a central shaft that is retained within the housing and rotatable within to cause separation of gas from production fluid within the outer housing; and

an optic fiber sensing arrangement to detect at least one parameter associated with the gas separator.

2. The gas separator system of claim 1 wherein the fiber optic sensing arrangement comprises:

a fiber optic signal processor; and

an optic fiber operably associated with the fiber optic signal processor to provide to the fiber optic signal processor a signal indicative of the operational parameter.

3. The gas separator system of claim 1 wherein the operational parameters include at least one of the parameters from the group consisting of: temperature, pressure, vibration, viscosity and fluid contamination.

4. The gas separator system of claim 2 wherein the optic fiber has an axial length and includes one or more Bragg gratings for detection of the operational parameter along the axial length of the fiber.

5. The gas separator system of claim 4 wherein the optic fiber is further disposed between the outer housing and a liner within the outer housing.

6. The gas separator system of claim 2 wherein:

the optic fiber is disposed through the outer housing of the gas separator; and

the axial end of the optic fiber is used to detect the operational parameter.

7. The gas separator system of claim 6 wherein the axial end of the optic fiber is located proximate a bearing within the gas separator.

8. A gas separator system for use in separating gas from production fluid in an electric submersible pump, the gas separator system comprising:

a gas separator having an outer housing defining a separator chamber and having a fluid inlet and fluid outlet ports for evacuation of separated gases, and a central shaft that is retained within the housing and rotatable within to cause separation of gas from production fluid within the outer housing; and

an optic fiber associated with the gas separator to detect an operational parameter associated with the gas separator.

9. The gas separator system of claim 8 wherein the operational parameters include at least one of the parameters from the group consisting of: temperature, pressure, vibration, viscosity and fluid contamination.

10. The gas separator system of claim 8 wherein the optic fiber is operably associated with a fiber optic signal processor which is capable of transmitting optical pulses into the optic fiber and analyzing the light that is returned, reflected or scattered therein.

11. The gas separator system of claim 8 wherein the optic fiber has an axial length and includes one or more Bragg gratings for detection of the operational parameter along the axial length of the fiber.

12. The gas separator system of claim 11 wherein the optic fiber is further disposed between the outer housing and a liner within the outer housing.

13. The gas separator of claim 8 wherein:

the optic fiber is disposed through the outer housing of the gas separator; and the axial end of the optic fiber is used to detect the operational parameter.

14. The gas separator system of claim 13 wherein the axial end of the optic fiber is located proximate a bearing within the gas separator.

15. A method for detecting an operational parameter associated with a gas separator that separates gas from production fluid in an electric submersible pump, the method comprising the steps of:

providing a fiber optic sensing arrangement having a fiber optic signal processor and an operably associated optic fiber to provide a signal to the fiber optic signal processor that is indicative of a sensed operational parameter; and

operably associating the optic fiber with the gas separator so that the optic fiber senses the operational parameter.

16. The method of claim 15 wherein the operational parameters include at least one of the parameters from the group consisting of: temperature, pressure, vibration, proximity, viscosity and fluid contamination.

17. The method of claim 15 wherein:

the gas separator includes an outer housing; and

the optic fiber is disposed through the outer housing to detect the operational parameter at a location within the outer housing.

18. The method of claim 17 wherein the operational parameter is sensed using a Bragg grating.

19. The method of claim 17 wherein the operational parameter is sensed using an axial end of the optic fiber.

20. The method of claim 17 wherein the operational parameter is sensed proximate a bearing.

Assignments (2)
CHANGE OF NAME Recorded Jun 9, 2023
From: BAKER HUGHES INCORPORATED; BAKER HUGHES, A GE COMPANY, LLC
To: BAKER HUGHES HOLDINGS LLC
Reel/Frame 063955/0424 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2013
From: WILSON, BROWN LYLE; BROWN, DONN J.; SHETH, KETANKUMAR K.
To: BAKER HUGHES INCORPORATED
Reel/Frame 031210/0613 →
Continuity (2)
Continuation In Part 13314010 · Dec 7, 2011
Related Publication 20140000345A1 · Jan 2, 2014