IP Library Granted Patent US 11,713,987
Granted Patent B2
US 11,713,987 · App. 16/949,743 · Granted Aug 1, 2023

Insertable flow meter assembly

Inventors: Kjetil Berntsen (Sandsli, NO); Thomas McIlroy (Aberdeen, GB); Alexandre Lupeau (Sandsli, NO); Phillip Rice (Aberdeen, GB)
Assignee: OneSubsea IP UK Limited
G01F1/44E21B34/025E21B47/10G01F15/005
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Quick Facts
Patent No.
US 11,713,987
App. No.
16/949,743
Granted
Aug 1, 2023
Kind
B2
Abstract

An insertable flow meter assembly includes a flow measuring device configured to be inserted into a flow passage of a receiving structure. The flow measuring device is configured to enable determination of a flow rate of fluid through the flow passage, the flow measuring device is formed as a single continuous structure, and an outer cross-section of at least a portion of the flow measuring device is configured to be substantially the same as an inner cross-section of the flow passage. The insertable flow meter assembly also includes an end cap configured to engage an exterior surface of the receiving structure and to couple to the receiving structure at an end of the flow passage. The end cap is configured to block movement of the flow measuring device out of the end of the flow passage.

Claims (47)

1. An insertable flow meter assembly, comprising:

a flow measuring device configured to be inserted into a flow passage of a receiving structure, wherein the flow measuring device is configured to enable determination of a flow rate of fluid through the flow passage, the flow measuring device is formed as a single continuous structure, and an outer cross-section of at least a portion of the flow measuring device is configured to be substantially the same as an inner cross-section of the flow passage; and

an end cap configured to engage an exterior surface of the receiving structure and to couple to the receiving structure at an end of the flow passage, wherein the end cap is configured to substantially seal the end of the flow passage, and the end cap is configured to block movement of the flow measuring device out of the end of the flow passage;

wherein the flow measuring device comprises:

a first port extending from a throat of the flow measuring device and configured to receive the fluid at the throat of the flow measuring device;

a first conduit extending through the flow measuring device to a first aperture at a longitudinal end of the flow measuring device, wherein the first conduit is configured to receive the fluid from the first port;

a second port extending from a section of the flow measuring device and configured to receive the fluid at the section of the flow measuring device, wherein the section comprises one of an inlet or an outlet of the flow measuring device; and

a second conduit extending through the flow measuring device to a second aperture at the longitudinal end of the flow measuring device, wherein the second conduit is configured to receive the fluid from the second port.

2. The insertable flow meter assembly of claim 1 , wherein the flow measuring device comprises a venturi.

3. The insertable flow meter assembly of claim 1 , comprising a fluid monitoring system fluidly coupled to the first aperture and to the second aperture, wherein the fluid monitoring system is configured to determine the flow rate of the fluid through the flow passage based on a first pressure of the fluid at the throat of the flow measuring device and a second pressure of the fluid at the section of the flow measuring device.

4. The insertable flow meter assembly of claim 1 , wherein the end cap is not structurally coupled to the flow measuring device.

5. The insertable flow meter assembly of claim 1 , wherein the flow measuring device has an annular recess configured to receive a seal configured to substantially block flow of the fluid around the flow measuring device along the flow passage.

6. The insertable flow meter assembly of claim 1 , wherein the flow measuring device has an outlet configured to expel the fluid substantially perpendicularly to a direction of flow of the fluid through the flow passage.

7. The insertable flow meter assembly of claim 1 , comprising at least one fastener configured to couple the end cap to the receiving structure.

8. An insertable flow meter assembly, comprising:

a flow measuring device configured to be inserted into a flow passage of a receiving structure, wherein the flow measuring device is configured to enable determination of a flow rate of fluid through the flow passage, the flow measuring device is formed as a single continuous structure, and the flow measuring device comprises:

a first port extending from a throat of the flow measuring device and configured to receive the fluid at the throat of the flow measuring device;

a first conduit extending through the flow measuring device to a first aperture at a longitudinal end of the flow measuring device, wherein the first conduit is configured to receive the fluid from the first port;

a second port extending from a section of the flow measuring device and configured to receive the fluid at the section of the flow measuring device, wherein the section comprises one of an inlet or an outlet of the flow measuring device; and

a second conduit extending through the flow measuring device to a second aperture at the longitudinal end of the flow measuring device, wherein the second conduit is configured to receive the fluid from the second port; and

an end cap configured to engage an exterior surface of the receiving structure and to couple to the receiving structure at an end of the flow passage, wherein the end cap is configured to substantially seal the end of the flow passage, and the end cap is configured to block movement of the flow measuring device out of the end of the flow passage.

9. The insertable flow meter assembly of claim 8 , wherein an outer cross- section of at least a portion of the flow measuring device is configured to be substantially the same as an inner cross-section of the flow passage.

10. The insertable flow meter assembly of claim 8 , comprising a fluid monitoring system fluidly coupled to the first aperture and to the second aperture, wherein the fluid monitoring system is configured to determine the flow rate of the fluid through the flow passage based on a first pressure of the fluid at the throat of the flow measuring device and a second pressure of the fluid at the section of the flow measuring device.

11. The insertable flow meter assembly of claim 8 , wherein the flow measuring device has an annular recess configured to receive a seal configured to substantially block flow of the fluid around the flow measuring device along the flow passage.

12. The insertable flow meter assembly of claim 8 , wherein the outlet of the flow measuring device is configured to expel the fluid substantially perpendicularly to a direction of flow of the fluid through the flow passage.

13. The insertable flow meter assembly of claim 8 , wherein the end cap is not structurally coupled to the flow measuring device.

14. A choke assembly, comprising:

an inlet flow passage configured to receive fluid;

an intermediate flow passage offset from the inlet flow passage and configured to receive the fluid from the inlet flow passage;

an outlet flow passage configured to receive the fluid from the intermediate flow passage;

a valve assembly configured to control flow of the fluid through the outlet flow passage; and

an insertable flow meter assembly, comprising:

a flow measuring device disposed within the intermediate flow passage, wherein the flow measuring device is configured to enable determination of a flow rate of the fluid through the intermediate flow passage, the flow measuring device is formed as a single continuous structure, and an outer cross-section of the flow measuring device is substantially the same as an inner cross-section of the intermediate flow passage; and

an end cap engaged with an exterior surface of a body of the choke assembly and coupled to the body of the choke assembly at an end of the intermediate flow passage, wherein the end cap is configured to substantially seal the end of the intermediate flow passage, and the end cap is configured to block movement of the flow measuring device out of the end of the intermediate flow passage

wherein the flow measuring device comprises:

a first port extending from a throat of the flow measuring device and configured to receive the fluid at the throat of the flow measuring device;

a first conduit extending through the flow measuring device to a first aperture at a longitudinal end of the flow measuring device, wherein the first conduit is configured to receive the fluid from the first port;

a second port extending from a section of the flow measuring device and configured to receive the fluid at the section of the flow measuring device, wherein the section comprises one of an inlet or an outlet of the flow measuring device; and

a second conduit extending through the flow measuring device to a second aperture at the longitudinal end of the flow measuring device, wherein the second conduit is configured to receive the fluid from the second port.

15. The choke assembly of claim 14 , wherein the flow measuring device comprises a venturi.

16. The choke assembly of claim 14 , wherein the insertable flow meter comprises a fluid monitoring system fluidly coupled to the first aperture and to the second aperture, and the fluid monitoring system is configured to determine the flow rate of the fluid through the intermediate flow passage based on a first pressure of the fluid at the throat of the flow measuring device and a second pressure of the fluid at the section of the flow measuring device.

17. The choke assembly of claim 14 , wherein the end cap is not structurally coupled to the flow measuring device.

18. The choke assembly of claim 14 , comprising a first flow passage and a second flow passage, wherein:

the first flow passage extends substantially perpendicularly from the inlet flow passage, and the first flow passage is configured to receive the fluid from the inlet flow passage;

the intermediate flow passage extends substantially perpendicularly from the first flow passage, and the intermediate flow passage is configured to receive the fluid from the first flow passage;

the second flow passage extends substantially perpendicularly from the intermediate flow passage, and the second flow passage is configured to receive the fluid from the intermediate flow passage; and

the outlet flow passage is configured to receive the fluid from the second flow passage.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 6, 2023
From: ONESUBSEA IP UK LIMITED
To: SCHLUMBERGER TECHNOLOGY CORPORATION
Reel/Frame 065147/0409 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2021
From: BERNTSEN, KJETIL; MCILROY, THOMAS; LUPEAU, ALEXANDRE; RICE, PHILLIP
To: ONESUBSEA IP UK LIMITED
Reel/Frame 055268/0808 →
Continuity (1)
Related Publication 20220146290A1 · May 12, 2022
Cited By (1)
US 12,428,922