IP Library Granted Patent US 12,385,330
Granted Patent B2
US 12,385,330 · App. 18/514,352 · Granted Aug 12, 2025

Valve rod guides for bottom hole pump assemblies, and related methods and parts

Inventors: Nathan Flynn (Alsike, CA); Derrik Meinczinger (Alsike, CA)
Assignee: OPTIMUM PUMP LTD.
E21B17/1071E21B17/0426F04B47/026
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Quick Facts
Patent No.
US 12,385,330
App. No.
18/514,352
Granted
Aug 12, 2025
Kind
B2
Abstract

A bottom hole pump (BHP) assembly for a reciprocating sucker rod in a production well has: a downhole fluid pump; a valve rod mounted to reciprocate within the downhole fluid pump, the valve rod having a sucker rod connector; and a valve rod guide mounted to the downhole fluid pump around the valve rod and connected to, in use, receive fluids into an internal fluid chamber from an internal bore of the downhole fluid pump and direct the fluids radially outward to an annulus of a well bore through a radial port in the valve rod guide assembly; and in which the valve rod guide has a ceramic wear sleeve that lines an internal valve-rod-receiving cylindrical passage defined by the valve rod guide.

Claims (36)

1. A bottom hole pump (BHP) assembly for a reciprocating sucker rod in a production well comprising:

a downhole fluid pump;

a valve rod mounted to reciprocate within the downhole fluid pump, the valve rod having a sucker rod connector; and

a valve rod guide mounted to the downhole fluid pump around the valve rod and connected to, in use, receive fluids into an internal fluid chamber from an internal bore of the downhole fluid pump and direct the fluids radially outward to an annulus of a well bore through a radial port in the valve rod guide assembly;

in which the valve rod guide has a ceramic wear sleeve that lines an internal valve-rod-receiving cylindrical passage defined by the valve rod guide; and

in which the valve rod guide comprises:

a rod guide body; and

a rod guide cap that defines a bushing keyway torque slot.

2. The BHP assembly of claim 1 in which the ceramic wear sleeve is cylindrical.

3. The BHP assembly of claim 1 in which the rod guide body has an open downhole end that defines the internal fluid chamber and the radial port.

4. The BHP assembly of claim 3 in which the open downhole end defines a threaded female box.

5. The BHP assembly of claim 3 in which the rod guide body defines an uphole-facing internal axial shoulder that seats a downhole end of the ceramic wear sleeve in the internal valve-rod-receiving cylindrical passage.

6. The BHP assembly of claim 5 in which the rod guide cap is threaded to an uphole end of the rod guide body.

7. The BHP assembly of claim 6 in which the rod guide cap defines a downhole-facing internal axial shoulder that secures an uphole end of the ceramic wear sleeve.

8. The BHP assembly of claim 6 in which the rod guide cap has a threaded female box end that mounts to a threaded male end of the rod guide body.

9. The BHP assembly of claim 1 in which the bushing keyway torque slot defines a radial slot at an uphole end of the rod guide cap.

10. The BHP assembly of claim 1 in which a valve rod bushing, of the sucker rod connector or connected to the sucker rod connector, defines a key structured to mate with the bushing keyway torque slot for torque transfer.

11. The BHP assembly of claim 1 in which the downhole fluid pump comprises:

a traveling valve mounted to the valve rod; and

a standing valve mounted to a downhole fluid inlet of the downhole fluid pump.

12. A production well assembly comprising:

a sucker rod string within a well that penetrates a formation;

a primary mover at a well surface, the primary mover connected to reciprocate the sucker rod string; and

the BHP assembly of claim 1 in which the sucker rod connector of the valve rod is connected to the sucker rod string.

13. A method of operating the production well assembly of claim 12 comprising reciprocating the sucker rod string using the primary mover to pump well fluids from a fluid inlet of the downhole fluid pump, through the valve rod guide, and up to the well surface.

14. A valve rod guide comprising:

a rod guide body defining an open downhole cylindrical pump-barrel-mounting end that defines an internal pump fluid chamber and a radial port to an exterior surface of the rod guide body, the rod guide body being structured for, in use, receiving and directing well fluids pumped through the open downhole cylindrical pump-barrel-mounting end into a wellbore annulus via the radial port, the rod guide body defining a valve rod axial bore therethrough;

a ceramic wear sleeve seated within an internal valve-rod-receiving cylindrical passage defined by the rod guide body; and

a rod guide cap mounted to an uphole end of the rod guide body to secure an uphole end of the ceramic wear sleeve within the wear sleeve receptacle, in which:

the rod guide cap has a threaded female box that mounts to a threaded male end of the rod guide body; and

the rod guide cap defines a bushing keyway torque slot.

15. The valve rod guide of claim 14 in which:

the ceramic wear sleeve is cylindrical; and

the open downhole cylindrical pump-barrel-mounting end defines the threaded female box.

16. The valve rod guide of claim 14 in which the bushing keyway torque slot comprises a radial slot along an uphole end of the rod guide cap.

17. A method comprising driving a sucker rod string to pump well fluids from a fluid inlet of a downhole fluid pump, through a valve rod guide, and up to the well surface, in which the valve rod guide has a rod guide body, a rod guide cap that defines a bushing keyway torque slot, and an internal ceramic wear sleeve that lines an interior bore of the valve rod guide and encircles a valve rod, which is driven by the sucker rod string to drive the downhole fluid pump.

Priority Claims (1)
CA CA 3182494 · Nov 18, 2022 · national
Continuity (1)
Related Publication 20240167345A1 · May 23, 2024
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