IP Library Granted Patent US 11,078,763
Granted Patent B2
US 11,078,763 · App. 16/676,246 · Granted Aug 3, 2021

Downhole perforating tool with integrated detonation assembly and method of using same

Inventors: James William Anthony (Missouri City, TX); Cameron Michael Bryant (Sugar Land, TX); Vadim Akhmadikin (Sugar Land, TX)
Assignee: GR Energy Services Management, LP
E21B43/117E21B43/119
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Quick Facts
Patent No.
US 11,078,763
App. No.
16/676,246
Granted
Aug 3, 2021
Kind
B2
Abstract

An integrated detonation assembly of a perforating unit includes a detonator assembly and a charge assembly. The detonator assembly is positioned in the outer housing and comprises a bulkhead connected to the outer housing; a charge connector connected to the bulkhead, the charge connection having a connection end; a detonator carried by the charge connector; and a trigger coupled to the detonator and to a remote actuator. The charge assembly is insertable into the outer housing, and comprises a charge tube to support shaped charges therein; a charge feedthru; and a receiver. The receiver is at an opposite end of the charge tube, and has a receptacle shaped to matingly receive the connection end of the charge connector and to engage the trigger whereby, upon insertion of the charge assembly into the outer housing, the receiver is oriented and communicatively secured to the detonator assembly.

Claims (118)

1. A detonation assembly for a perforating unit of a downhole tool positionable in a wellbore penetrating a subterranean formation, the perforating unit comprising an outer housing connectable to the downhole tool, the detonation assembly comprising:

a detonator assembly positioned in the outer housing, the detonator assembly comprising:

a bulkhead connected to the outer housing;

a charge connector connected to the bulkhead, the charge connector having a connection end;

a detonator carried by the charge connector; and

a trigger coupled to the detonator; and

a charge assembly insertable into the outer housing, the charge assembly comprising:

a charge tube to support shaped charges therein;

a charge feedthru at one end of the charge tube; and

a receiver at an opposite end of the charge tube, the receiver having a receptacle shaped to matingly receive the connection end of the charge connector and to engage the trigger whereby, upon insertion of the charge assembly into the outer housing, the receiver is oriented and communicatively secured to the detonator assembly;

wherein the charge feedthru is connectable to the bulkhead.

2. The detonation assembly of claim 1 , wherein the connection end has an asymmetrical cross-section corresponding to an asymmetrical cross-section of the receptacle.

3. The detonation assembly of claim 1 , wherein the connection end has openings to receive contacts of the trigger therethrough, the contacts communicatively engageable with the receiver.

4. The detonation assembly of claim 1 , wherein the charge feedthru comprises a locking cap, a plunger, a retainer, and an end plate.

5. The detonation assembly of claim 4 , wherein the detonator assembly further comprises a detonator feedthru supported in the bulkhead, the detonator feedthru engageable with the plunger of the charge connector and coupled to the detonator by the trigger.

6. The detonation assembly of claim 1 , wherein the detonator assembly further comprises a detonator housing connectable between the bulkhead and the charge connector.

7. The detonation assembly of claim 1 , wherein the trigger comprises a switch, a plurality of plugs, and a contact.

8. The detonation assembly of claim 1 , wherein the charge connector is connectable to the charge feedthru of another charge assembly of another perforating unit of the downhole tool.

9. The detonation assembly of claim 1 , further comprising a communication link coupling the trigger to a remote actuator.

10. The detonation assembly of claim 1 , wherein a charge cable is coupled to the charge feedthru.

11. A perforating unit of a downhole tool positionable in a wellbore penetrating a subterranean formation, the perforating unit comprising:

an outer housing; and

a detonation assembly positionable in the outer housing, the detonation assembly comprising:

a detonator assembly positioned in the outer housing, the detonator assembly comprising:

a bulkhead connected to the outer housing;

a charge connector connected to the bulkhead, the charge connector having a connection end;

a detonator carried by the charge connector; and

a trigger coupled to the detonator; and

a charge assembly insertable into the outer housing, the charge assembly comprising:

a charge tube to support shaped charges therein; a charge feedthru at one end of the charge tube;

shaped charges carried by the charge tube; and

a receiver at an opposite end of the charge tube, the receiver having a receptacle shaped to matingly receive the connection end of the charge connector and to engage the trigger whereby, upon insertion of the charge assembly into the outer housing, the receiver is oriented and communicatively secured to the detonator assembly.

12. The perforating unit of claim 11 , wherein the bulkhead is threadedly connectable to the outer housing.

13. The perforating unit of claim 11 , wherein the charge assembly further comprises rings positionable about the charge tube for sliding insertion into the outer housing.

14. The perforating unit of claim 11 , further comprising a conveyance connector.

15. A method of assembling a downhole perforating tool, the method comprising:

assembling the detonation assembly of claim 10 by:

connecting the bulkhead of the detonator assembly to the outer housing; and

connecting the detonator assembly to the charge assembly by inserting the charge assembly in the outer housing while receiving the connection end of the charge connector into the receiver;

connecting the outer housing to the downhole tool; and

establishing a communication link between the detonator and a surface receiver.

16. The method of claim 15 , further comprising connecting another perforating unit to the detonation assembly by connecting an another outer housing of the another perforating unit to the bulkhead of the detonation assembly.

17. The method of claim 15 , further comprising connecting another perforating unit to the detonation assembly by connecting an another charge feedthru of another detonation assembly of the another perforating unit to the bulkhead of the detonation assembly.

18. The method of claim 15 , wherein the assembling the detonation assembly comprises assembling the detonator assembly; assembling the charge assembly; positioning the charge assembly in a tool housing; positioning the detonator assembly in the tool housing; and electrically connecting the detonator assembly with the charge assembly.

19. A detonation assembly for a perforating unit of a downhole tool positionable in a wellbore penetrating a subterranean formation, the perforating unit comprising an outer housing connectable to the downhole tool, the detonation assembly comprising:

a detonator assembly positioned in the outer housing, the detonator assembly comprising:

a bulkhead connected to the outer housing;

a charge connector connected to the bulkhead, the charge connector having a connection end;

a detonator carried by the charge connector; and

a trigger coupled to the detonator; and

a charge assembly insertable into the outer housing, the charge assembly comprising:

a charge tube to support shaped charges therein; a charge feedthru at one end of the charge tube; and

a receiver at an opposite end of the charge tube, the receiver having a receptacle shaped to matingly receive the connection end of the charge connector and to engage the trigger whereby, upon insertion of the charge assembly into the outer housing, the receiver is oriented and communicatively secured to the detonator assembly;

wherein the connection end has an asymmetrical cross-section corresponding to an asymmetrical cross-section of the receptacle.

20. A detonation assembly for a perforating unit of a downhole tool positionable in a wellbore penetrating a subterranean formation, the perforating unit comprising an outer housing connectable to the downhole tool, the detonation assembly comprising:

a detonator assembly positioned in the outer housing, the detonator assembly comprising:

a bulkhead connected to the outer housing;

a charge connector connected to the bulkhead, the charge connector having a connection end;

a detonator carried by the charge connector; and

a trigger coupled to the detonator; and

a charge assembly insertable into the outer housing, the charge assembly comprising:

a charge tube to support shaped charges therein; a charge feedthru at one end of the charge tube; and

a receiver at an opposite end of the charge tube, the receiver having a receptacle shaped to matingly receive the connection end of the charge connector and to engage the trigger whereby, upon insertion of the charge assembly into the outer housing, the receiver is oriented and communicatively secured to the detonator assembly;

wherein the connection end has openings to receive contacts of the trigger therethrough, the contacts communicatively engageable with the receiver.

21. A detonation assembly for a perforating unit of a downhole tool positionable in a wellbore penetrating a subterranean formation, the perforating unit comprising an outer housing connectable to the downhole tool, the detonation assembly comprising:

a detonator assembly positioned in the outer housing, the detonator assembly comprising:

a bulkhead connected to the outer housing;

a charge connector connected to the bulkhead, the charge connector having a connection end;

a detonator carried by the charge connector; and

a trigger coupled to the detonator; and

a charge assembly insertable into the outer housing, the charge assembly comprising:

a charge tube to support shaped charges therein; a charge feedthru at one end of the charge tube; and

a receiver at an opposite end of the charge tube, the receiver having a receptacle shaped to matingly receive the connection end of the charge connector and to engage the trigger whereby, upon insertion of the charge assembly into the outer housing, the receiver is oriented and communicatively secured to the detonator assembly;

wherein the charge feedthru comprises a locking cap, a plunger, a retainer, and an end plate.

22. The detonation assembly of claim 21 , wherein the detonator assembly further comprises a detonator feedthru supported in the bulkhead, the detonator feedthru engageable with the plunger of the charge connector and coupled to the detonator by the trigger.

23. A detonation assembly for a perforating unit of a downhole tool positionable in a wellbore penetrating a subterranean formation, the perforating unit comprising an outer housing connectable to the downhole tool, the detonation assembly comprising:

a detonator assembly positioned in the outer housing, the detonator assembly comprising:

a bulkhead connected to the outer housing;

a charge connector connected to the bulkhead, the charge connector having a connection end;

a detonator carried by the charge connector; and

a trigger coupled to the detonator; and

a charge assembly insertable into the outer housing, the charge assembly comprising:

a charge tube to support shaped charges therein; a charge feedthru at one end of the charge tube; and

a receiver at an opposite end of the charge tube, the receiver having a receptacle shaped to matingly receive the connection end of the charge connector and to engage the trigger whereby, upon insertion of the charge assembly into the outer housing, the receiver is oriented and communicatively secured to the detonator assembly;

wherein the detonator assembly further comprises a detonator housing connectable between the bulkhead and the charge connector.

24. A detonation assembly for a perforating unit of a downhole tool positionable in a wellbore penetrating a subterranean formation, the perforating unit comprising an outer housing connectable to the downhole tool, the detonation assembly comprising:

a detonator assembly positioned in the outer housing, the detonator assembly comprising:

a bulkhead connected to the outer housing;

a charge connector connected to the bulkhead, the charge connector having a connection end;

a detonator carried by the charge connector; and

a trigger coupled to the detonator; and

a charge assembly insertable into the outer housing, the charge assembly comprising:

a charge tube to support shaped charges therein; a charge feedthru at one end of the charge tube; and

a receiver at an opposite end of the charge tube, the receiver having a receptacle shaped to matingly receive the connection end of the charge connector and to engage the trigger whereby, upon insertion of the charge assembly into the outer housing, the receiver is oriented and communicatively secured to the detonator assembly;

wherein the trigger comprises a switch, a plurality of plugs, and a contact.

25. A detonation assembly for a perforating unit of a downhole tool positionable in a wellbore penetrating a subterranean formation, the perforating unit comprising an outer housing connectable to the downhole tool, the detonation assembly comprising:

a detonator assembly positioned in the outer housing, the detonator assembly comprising:

a bulkhead connected to the outer housing;

a charge connector connected to the bulkhead, the charge connector having a connection end;

a detonator carried by the charge connector; and

a trigger coupled to the detonator; and

a charge assembly insertable into the outer housing, the charge assembly comprising:

a charge tube to support shaped charges therein; a charge feedthru at one end of the charge tube; and

a receiver at an opposite end of the charge tube, the receiver having a receptacle shaped to matingly receive the connection end of the charge connector and to engage the trigger whereby, upon insertion of the charge assembly into the outer housing, the receiver is oriented and communicatively secured to the detonator assembly;

wherein the charge feedthru is connectable to the bulkhead; and

wherein a charge cable is coupled to the charge feedthru.

26. A perforating unit of a downhole tool positionable in a wellbore penetrating a subterranean formation, the perforating unit comprising:

an outer housing; and

a detonation assembly positionable in the outer housing, the detonation assembly comprising:

a detonator assembly positioned in the outer housing, the detonator assembly comprising:

a bulkhead connected to the outer housing;

a charge connector connected to the bulkhead, the charge connector having a connection end;

a detonator carried by the charge connector; and

a trigger coupled to the detonator; and

a charge assembly insertable into the outer housing, the charge assembly comprising:

a charge tube to support shaped charges therein; a charge feedthru at one end of the charge tube; and

a receiver at an opposite end of the charge tube, the receiver having a receptacle shaped to matingly receive the connection end of the charge connector and to engage the trigger whereby, upon insertion of the charge assembly into the outer housing, the receiver is oriented and communicatively secured to the detonator assembly;

wherein the charge assembly further comprises rings positionable about the charge tube for sliding insertion into the outer housing.

Assignments (2)
SECURITY INTEREST Recorded Sep 30, 2021
From: GR ENERGY SERVICES MANAGEMENT, LP (DELAWARE LIMITED PARTNERSHIP)
To: BANK OF AMERICA, N.A. (A NATIONAL BANKING INSTITUTION) (IN ITS CAPACITY AS AGENT FOR LENDERS)
Reel/Frame 057656/0652 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2019
From: ANTHONY, JAMES WILLIAM; BRYANT, CAMERON MICHAEL; AKHMADIKIN, VADIM
To: GR ENERGY SERVICES MANAGEMENT, LP
Reel/Frame 050938/0501 →
Continuity (3)
Continuation In Part 16537347 · Aug 9, 2019
Provisional Application 62717320 · Aug 10, 2018
Related Publication 20200072029A1 · Mar 5, 2020
Cited By (11)
US 1,073,745 US 1,082,866 US 12,241,341 US 12,454,879 US 12,467,328 US 12,497,848 US 12,503,924 US 12,546,194 US 12,580,667 US 12,584,363 US 12,680,425