IP Library Granted Patent US 11,028,664
Granted Patent B2
US 11,028,664 · App. 16/804,206 · Granted Jun 8, 2021

Kinetic shear ram for well pressure control apparatus

Inventors: Bobby James Gallagher (Houston, TX); Billy Jack Gallagher (Houston, TX)
Assignee: Kinetic Pressure Control Ltd.
E21B33/063
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Quick Facts
Patent No.
US 11,028,664
App. No.
16/804,206
Granted
Jun 8, 2021
Kind
B2
Abstract

A blowout preventer has a main body having a through bore. A housing is mounted to the main body and defines a passage connected to and transverse to the through bore. An isolation ring cutter is initially disposed around the through bore and closes the passage to fluid flow. The isolation ring cutter is movable along the passage and has an opening coincident with the through bore. A piston and gate are disposed in the passage spaced apart from the isolation ring cutter. A propellant charge is disposed between the piston and an end.

Claims (42)

1. A blowout preventer comprising:

a main body having a through bore;

a passage transverse to the through bore;

a ring cutter disposed in the passage and configured for positioning with an opening on the cutter coincident with the through bore;

a gate disposed separated and spaced apart from the ring cutter and configured for motion along the passage; and

a charge configured for activation to propel the gate along the passage into contact with the ring cutter to move the cutter across the through bore.

2. The blowout preventer of claim 1 further comprising an energy absorbing element configured to absorb kinetic energy associated with motion of the gate.

3. The blowout preventer of claim 2 wherein the energy absorbing element is configured to allow the gate to progressively come to rest after the gate is propelled into motion.

4. The blowout preventer of claim 2 wherein the energy absorbing element is configured to crumple as it absorbs energy.

5. The blowout preventer of claim 1 further comprising a restraint to restrain motion of the gate until gas pressure from the charge reaches a selected threshold.

6. The blowout preventer of claim 1 wherein the ring cutter comprises a cutting edge formed on a surface of the opening thereon.

7. The blowout preventer of claim 1 further comprising a seal arrangement to restrict fluid flow between the through bore and the passage.

8. The blowout preventer of claim 1 wherein a pre-initiation spacing between the gate and the ring cutter is at least equal to ½ the diameter of the through bore.

9. The blowout preventer of claim 1 further comprising a piston disposed between the charge and the gate, and a restraint to restrain motion of the piston until gas pressure from the charge reaches a selected threshold.

10. A blowout preventer comprising:

a main body having a through bore;

a passage transverse to the through bore;

a ring cutter disposed in the passage and configured for positioning with an opening on the cutter coincident with the through bore; and

a gate configured for motion along the passage in response to activation of a charge,

wherein the gate is configured to move along the passage between a position separated and spaced apart from the ring cutter to a position where the gate contacts the ring cutter to move the cutter across the through bore.

11. The blowout preventer of claim 10 further comprising an energy absorbing element configured to absorb kinetic energy associated with motion of the gate.

12. The blowout preventer of claim 11 wherein the energy absorbing element is configured to allow the gate to progressively come to rest after the gate is propelled into motion.

13. The blowout preventer of claim 11 wherein the energy absorbing element is configured to crumple as it absorbs energy.

14. The blowout preventer of claim 10 further comprising a restraint to restrain motion of the gate until gas pressure from the activation of the charge reaches a selected threshold.

15. The blowout preventer of claim 10 wherein the ring cutter comprises a cutting edge formed on a surface of the opening thereon.

16. The blowout preventer of claim 10 further comprising a seal arrangement to restrict fluid flow between the through bore and the passage.

17. The blowout preventer of claim 10 wherein a pre-initiation spacing between the gate and the ring cutter is at least equal to ½ the diameter of the through bore.

18. The blowout preventer of claim 10 further comprising a piston disposed between the charge and the gate, and a restraint to restrain motion of the piston until gas pressure from the charge reaches a selected threshold.

19. A method of operating a blowout preventer having a body with a through bore, comprising:

actuating a charge to propel a gate along a passage in the body transverse to the through bore,

wherein the gate is propelled from a position separated and spaced apart from a ring cutter disposed in the passage with an opening on the cutter coincident with the through bore, to a position where the gate contacts the ring cutter; and

allowing the propelled gate to move the ring cutter across the through bore.

20. The method of claim 19 further comprising slowing the motion of the gate with an energy absorbing element.

21. The method of claim 20 wherein the energy absorbing element is configured to allow the gate to progressively come to rest.

22. The method of claim 20 wherein the energy absorbing element is configured to crumple as it slows the motion of the gate.

23. The method of claim 19 further comprising restraining motion of the gate until gas pressure from the charge reaches a selected threshold.

24. The method of claim 19 wherein the ring cutter comprises a cutting edge formed on a surface of the opening thereon.

25. The method of claim 19 further comprising allowing the gate to pass across the through bore to restrict fluid flow in the through bore.

26. The method of claim 19 wherein the blowout preventer comprises a seal arrangement to restrict fluid flow between the through bore and the passage.

27. The method of claim 19 wherein a pre-initiation spacing between the gate and the ring cutter is at least equal to ½ the diameter of the through bore.

28. The method of claim 19 further comprising moving the ring cutter across the though bore to cut a device in the through bore.

29. The method of claim 19 further comprising restraining motion of a piston disposed between the charge and the gate, until gas pressure from the charge reaches a selected threshold.

Assignments (2)
SECURITY INTEREST Recorded Apr 22, 2025
From: SCOUT SURFACE SOLUTIONS LLC; WSI ENTERPRISES, INC.; WSI ACQUISITION, LLC; KINETIC PRESSURE CONTROL LIMITED
To: MAPLEMARK BANK
Reel/Frame 070917/0693 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2020
From: GALLAGHER, BOBBY; GALLAGHER, BILLY
To: KINETIC PRESSURE CONTROL LIMITED
Reel/Frame 051960/0316 →
Continuity (3)
Continuation PCTUS2019025252 · Apr 1, 2019
Provisional Application 62651929 · Apr 3, 2018
Related Publication 20200208489A1 · Jul 2, 2020
Cited By (1)
US 12,247,456