IP Library › Granted Patent US 11,959,349
Granted Patent B2
US 11,959,349 · App. 17/790,898 · Granted Apr 16, 2024

Downhole pressure pulse system

Inventors: Paul Victor Oberlin (Houston, TX); John Matthew King (Houston, TX)
Assignee: National Oilwell Varco, L.P.
E21B31/005
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Quick Facts
Patent No.
US 11,959,349
App. No.
17/790,898
Granted
Apr 16, 2024
Kind
B2
Abstract

A pressure pulse system includes a stator, a rotor rotatably positioned in the stator, and a valve assembly configured to induce a pressure pulse in response to rotation of the rotor within the stator, wherein the valve assembly includes a first valve plate coupled to one of the stator and the rotor and including a flow passage, and a second valve plate coupled to the other of the stator or the rotor to which the first valve plate is not coupled and comprising a first flow passage and a second flow passage that is spaced from the first flow passage, wherein the valve assembly provides a first flowpath and a second flowpath between the flow passage of the first valve plate and the second flow passage of the second valve plate.

Claims (43)

1. A pressure pulse system disposable in a wellbore, comprising:

a stator comprising a plurality of helical stator lobes;

a rotor rotatably positioned in the stator and comprising a plurality of helical rotor lobes; and

a valve assembly coupled to the stator and to the rotor and configured to induce a pressure pulse in response to rotation of the rotor within the stator, wherein the valve assembly comprises:

a first valve plate coupled to one of the stator and the rotor and comprising a flow passage; and

a second valve plate coupled to the other of the stator or the rotor to which the first valve plate is not coupled and comprising a first flow passage and a second flow passage that is spaced from the first flow passage of the second valve plate, wherein a central axis of the first valve plate is offset from a central axis of the second valve plate whereby the second valve plate is configured to rotate eccentrically relative to the first valve plate;

wherein the valve assembly comprises a first configuration that provides a first flowpath between the flow passage of the first valve plate and the second flow passage of the second valve plate, and wherein the second flow passage of the second valve plate is encompassed entirely within the flow passage of the first valve plate in an end view when the valve assembly is in the first configuration;

wherein the valve assembly comprises a second configuration that provides a second flowpath between the flow passage of the first valve plate and the first flow passage of the second valve plate.

2. The pressure pulse system of claim 1 , wherein the second flow passage of the second valve plate is circumferentially spaced about the central axis of the second valve plate from the first flow passage of the second valve plate.

3. The pressure pulse system of claim 2 , wherein:

the first valve plate is coupled to the rotor and the central axis of the first valve plate is coaxial with a central axis of the rotor; and

the second valve plate is coupled to the stator and the central axis of the second valve plate is coaxial with a central axis of the stator.

4. The pressure pulse system of claim 3 , wherein the first valve plate rotates about the central axis of the first valve plate in a first rotational direction and about the central axis of the second valve plate in a second rotational direction opposite the first rotational direction.

5. The pressure pulse system of claim 1 , wherein a minimum flow area of the second flow passage of the second valve plate is less than both a minimum flow area of the first flow passage of the second valve plate and a minimum flow area of the flow passage of the first valve plate.

6. The pressure pulse system of claim 1 , wherein the first flowpath has a minimum flow area that corresponds to a minimum flow area providable through the valve assembly.

7. The pressure pulse system of claim 1 , wherein the minimum flow area of the first flowpath corresponds to a minimum flow area providable through the valve assembly, and wherein a minimum flow area of the second flow passage of the second valve plate defines the minimum flow area of the first flowpath.

8. A pressure pulse system disposable in a wellbore, comprising:

a stator comprising a plurality of helical stator lobes;

a rotor rotatably positioned in the stator and comprising a plurality of helical rotor lobes; and

a valve assembly coupled to the stator and to the rotor and configured to induce a pressure pulse in response to rotation of the rotor within the stator, wherein the valve assembly comprises:

a first valve plate coupled to one of the stator and the rotor and comprising a flow passage; and

a second valve plate coupled to the other of the stator or the rotor to which the first valve plate is not coupled and comprising a flow passage;

wherein the valve assembly comprises a first configuration that provides a first flowpath through the valve assembly between the flow passage of the first valve plate and the flow passage of the second valve plate, the first flowpath having a minimum flow area that corresponds to a minimum flow area providable through the valve assembly, and wherein the flow passage of the second valve plate is encompassed entirely within the flow passage of the first valve plate in an end view when the valve assembly is in the first configuration.

9. The pressure pulse system of claim 8 , wherein a minimum flow area of the flow passage of the second valve plate is less than a minimum flow area of the flow passage of the first valve plate.

10. The pressure pulse system of claim 8 , wherein the second valve plate comprises a first flow passage and a second flow passage that is spaced from the first flow passage, the second flow passage corresponding to the flow passage that is encompassed entirely within the flow passage of the first valve plate in an end view when the valve assembly is in the first configuration.

11. The pressure pulse system of claim 10 , wherein:

the first valve plate is coupled to the rotor and a central axis of the first valve plate is coaxial with a central axis of the rotor; and

the second valve plate is coupled to the stator and a central axis of the second valve plate is coaxial with a central axis of the stator, wherein the central axis of the second valve plate is offset from the central axis of the first valve plate.

12. The pressure pulse system of claim 11 , wherein the first valve plate rotates about the central axis of the first valve plate in a first rotational direction and about the central axis of the second valve plate in a second rotational direction opposite the first rotational direction.

13. The pressure pulse system of claim 10 , wherein the valve assembly comprises a second configuration that provides a second flowpath between the flow passage of the first valve plate and the first flow passage of the second valve plate.

14. The pressure pulse system of claim 13 , the second flowpath has a minimum flow area that corresponds to a maximum flow area providable through the valve assembly.

15. The pressure pulse system of claim 8 , wherein a minimum flow area of the flow passage of the second valve plate defines the minimum flow area of the first flowpath.

16. A pressure pulse system disposable in a wellbore, comprising:

a stator comprising a plurality of helical stator lobes;

a rotor rotatably positioned in the stator and comprising a plurality of helical rotor lobes; and

a valve assembly coupled to the stator and to the rotor and configured to induce a pressure pulse in response to rotation of the rotor within the stator, wherein the valve assembly comprises:

a first valve plate coupled to one of the stator and the rotor and comprising a flow passage; and

a second valve plate coupled to the other of the stator or the rotor to which the first valve plate is not coupled and comprising a flow passage;

wherein the valve assembly comprises a first configuration that provides a first flowpath through the valve assembly between the flow passage of the first valve plate and the flow passage of the second valve plate, wherein a minimum flow area of the first flowpath corresponding to a minimum flow area providable through the valve assembly, and wherein a minimum flow area of the flow passage of the second valve plate defines the minimum flow area of the first flowpath;

wherein the flow passage of the second valve plate is encompassed entirely within the flow passage of the first valve plate in an end view when the valve assembly is in the first configuration.

17. The pressure pulse system of claim 16 , wherein a minimum flow area of the flow passage of the second valve plate is less than a minimum flow area of the flow passage of the first valve plate.

18. The pressure pulse system of claim 16 , wherein the second valve plate comprises a first flow passage and a second flow passage that is spaced form the first flow passage, the second flow passage corresponding to the flow passage that defines the minimum flow area of the first flowpath.

19. The pressure pulse system of claim 18 , wherein the valve assembly comprises a second configuration that provides a second flowpath between the flow passage of the first valve plate and the first flow passage of the second valve plate, the second flowpath having a minimum flow area that corresponds to a maximum flow area providable through the valve assembly.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2022
From: OBERLIN, PAUL VICTOR; KING, JOHN MATTHEW
To: NATIONAL OILWELL VARCO, L.P.
Reel/Frame 060576/0924 →
Continuity (2)
Provisional Application 62957771 · Jan 6, 2020
Related Publication 20230027048A1 · Jan 26, 2023
Cited By (1)
US 12,480,365