IP Library Granted Patent US 12,571,278
Granted Patent B2
US 12,571,278 · App. 18/582,532 · Granted Mar 10, 2026

Well control sealing system

Inventors: Steven Angstmann (Houston, TX); Bobby Gallagher (Houston, TX); Billy Gallagher (Houston, TX); Sean Laird (Houston, TX)
Assignee: Kinetic Pressure Control Ltd.
E21B33/06
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Quick Facts
Patent No.
US 12,571,278
App. No.
18/582,532
Granted
Mar 10, 2026
Kind
B2
Abstract

A blowout preventer includes a main body having a through bore and defining a passage transverse to the through bore. At least one seal is configured for positioning with an opening on the seal coincident with the through bore. The at least one seal being disposed to engage an element disposed in the transverse passage. The at least one seal being configured to receive a fluid under pressure to energize the seal to restrict fluid flow between the through bore and the transverse passage when the element is disposed proximate the through bore. A method for operating a blowout preventer.

Claims (40)

1 . A blowout preventer (BOP), comprising:

a main body having a through bore, the main body defining a passage transverse to the through bore;

at least one seal configured for positioning with an opening on the at least one seal in alignment with the through bore;

the at least one seal configured for disposal in the main body to engage an element disposed in the transverse passage;

a first chamber configured to contain a fluid for communication with at least one port configured to convey the fluid to the at least one seal;

a second chamber configured to contain a gas under pressure;

wherein the first and second chambers are linked together to permit expansion of the pressurized gas from the second chamber into the first chamber to pressurize the fluid in the first chamber; and

wherein the at least one seal is configured to receive the fluid under pressure to energize the seal to restrict fluid flow between the through bore and the transverse passage when the element is disposed proximate the through bore.

2 . The BOP of claim 1 wherein the element comprises a gate or a ring cutter.

3 . The BOP of claim 1 wherein the fluid comprises a grease compound.

4 . The BOP of claim 1 further comprising a first piston disposed within the first chamber to displace the fluid in the first chamber for conveyance to the at least one seal.

5 . The BOP of claim 4 further comprising a second piston disposed within the first chamber to actuate the first piston.

6 . The BOP of claim 1 further comprising a plurality of chambers configured to contain the fluid for conveyance to the at least one seal.

7 . The BOP of claim 6 wherein each chamber of the plurality of chambers comprises a piston to displace the fluid in the chamber.

8 . The BOP of claim 6 further comprising a gas generator configured to pressurize the fluid in at least one of the chambers configured to contain the fluid.

9 . The BOP of claim 8 further comprising a gas chamber configured to contain a gas under pressure to pressurize the fluid in at least one of the chambers configured to contain the fluid.

10 . The BOP of claim 1 further comprising:

a plurality of seals, each seal of the plurality of seals configured for positioning with an opening on the seal in alignment with the through bore;

each seal of the plurality of seals configured for disposal in the main body to engage an element disposed in the transverse passage;

wherein each seal of the plurality of seals is configured to receive a fluid under pressure to energize the seal to restrict fluid flow between the through bore and the transverse passage when the element is disposed proximate the through bore.

11 . The BOP of claim 10 wherein each seal of the plurality of seals is configured to receive a fluid under pressure to energize the seal to restrict fluid flow between the through bore and the transverse passage when the element is disposed proximate the through bore in between two of the seals of the plurality of seals.

12 . The BOP of claim 10 wherein the plurality of seals are disposed on an insert configured for disposal in the main body.

13 . A method for operating a blowout preventer (BOP) comprising a main body having a through bore and a passage transverse to the through bore, at least one seal configured for positioning with an opening on the at least one seal in alignment with the through bore, the at least one seal configured for disposal in the main body to engage an element disposed in the transverse passage, a first chamber containing a fluid, and a second chamber containing a gas under pressure, wherein the first and second chambers are linked together, the method comprising:

releasing the pressurized gas from the second chamber into the first chamber to pressurize the fluid in the first chamber; and

applying the fluid under pressure to the at least one seal via a port to energize the at least one seal to restrict fluid flow between the through bore and the passage when the element is disposed proximate the through bore.

14 . The method of claim 13 wherein the element comprises a gate or a ring cutter.

15 . The method of claim 13 wherein the fluid comprises a grease compound.

16 . The method of claim 13 further comprising using a first piston disposed within the first chamber to displace the fluid in the first chamber for conveyance to the at least one seal.

17 . The method of claim 16 further comprising actuating the first piston with a second piston disposed within the first chamber.

18 . The method of claim 13 wherein applying the fluid under pressure comprises actuating a gas generator disposed on the BOP.

19 . The method of claim 13 wherein applying the fluid under pressure comprises sequentially actuating a gas generator disposed on the BOP and releasing a pressurized gas from a chamber disposed on the BOP.

20 . The method of claim 13 wherein the BOP comprises a plurality of seals, each seal of the plurality of seals configured for positioning with an opening on the seal in alignment with the through bore, each seal of the plurality of seals configured for disposal in the main body to engage an element disposed in the transverse passage, and applying the fluid under pressure to each seal of the plurality of seals to energize the seal to restrict fluid flow between the through bore and the passage when the element is disposed proximate the through bore.

21 . A method for operating a blowout preventer comprising a main body having a through bore and a passage transverse to the through bore, at least one seal configured for positioning with an opening on the at least one seal in alignment with the through bore, the at least one seal configured for disposal in the main body to engage an element disposed in the transverse passage, the method comprising:

energizing the at least one seal to restrict fluid flow between the through bore and the passage when the element is disposed proximate the through bore by sequentially applying a fluid under pressure to the at least one seal.

22 . A blowout preventer comprising:

a main body having a through bore;

the main body having a passage transverse to the through bore;

at least one seal configured for positioning with an opening on the at least one seal in alignment with the through bore;

the at least one seal configured for disposal in the main body to engage an element disposed in the transverse passage; and

wherein the at least one seal is configured to sequentially receive a fluid under pressure to energize the at least one seal to restrict fluid flow between the through bore and the transverse passage when the element is disposed proximate the through bore.

Assignments (1)
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 →
Continuity (3)
Continuation In Part 17789207
Provisional Application 62957891 · Jan 7, 2020
Related Publication 20240247561A1 · Jul 25, 2024
References Cited (3)
US 2593793A · Rector · 1952 [cited by examiner]
US 3078865A · Estes · 1963 [cited by examiner]
US 3766979A · Petrick · 1973 [cited by examiner]