IP Library Granted Patent US 11,136,833
Granted Patent B2
US 11,136,833 · App. 16/185,824 · Granted Oct 5, 2021

Float equipment for a wellbore

Inventor: Ken Erik Steine (Hafrsfjord, NO)
Assignee: Ace Oil Tools
E21B17/046E21B10/26E21B17/1064E21B17/14
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Quick Facts
Patent No.
US 11,136,833
App. No.
16/185,824
Granted
Oct 5, 2021
Kind
B2
Abstract

A float equipment attachment assembly includes a float equipment for mounting to a tubing string. The float equipment includes a tubular body and a plurality of gripping arms extending longitudinally away from the tubular body arranged to deflect radially inwards. An attachment sleeve has an inner diameter tapered to form a conical abutment portion. The attachment sleeve and float equipment are arranged axially around the tubing string and are pressed together. The gripping arms are deflected radially inward by the conical abutment portion to grip the tubing string to mount the float equipment to the tubing string.

Claims (30)

1. A float equipment attachment assembly comprising:

a float equipment for mounting to a tubing string, the float equipment comprising a tubular body and a plurality of gripping arms extending longitudinally away from the tubular body arranged to deflect radially inwards; and,

an attachment sleeve, wherein an inner diameter of the attachment sleeve is tapered to form a conical abutment portion,

wherein, when the attachment sleeve and float equipment are arranged axially around the tubing string and are pressed together, the gripping arms are deflected radially inward by the conical abutment portion to grip the tubing string to mount the float equipment to the tubing string; and

the float equipment further comprises a seal groove in an inner wall of the float equipment and configured to retain a seal within the seal groove to seal between the float equipment and the tubing string when the float equipment is mounted on the tubing string.

2. The float equipment attachment assembly according to claim 1 , in which the seal groove is annular and extends circumferentially around the inner wall of the tubular body.

3. The float equipment attachment assembly according to claim 1 , in which the float equipment further comprises an annular seal arranged on an inner wall of the tubular body.

4. The float equipment attachment assembly according to claim 1 , in which the float equipment further comprises a casing abutment portion protruding inwardly from an inner wall of the tubular body so as to abut an end of the tubing string when the float equipment is slid over the tubing string.

5. The float equipment attachment assembly according to claim 4 , in which the casing abutment portion is annular and extends circumferentially around the inner wall of the tubular body.

6. The float equipment attachment assembly according to claim 1 , wherein each gripping arm comprises a plurality of gripping teeth arranged on an inner wall of the gripping arms.

7. The float equipment attachment assembly according to claim 6 , in which the teeth extend circumferentially around the inner wall of the gripping arms.

8. The float equipment attachment assembly according to claim 7 , in which each male gripping arm comprises at least one longitudinal slit in the circumferential gripping teeth.

9. The float equipment attachment assembly according to claim 8 , in which each gripping arm comprises five longitudinal slits.

10. The float equipment attachment assembly according to claim 1 , further comprising a plurality of circumferential ridges on an outer wall of the male gripping arms which are arranged to cooperate with corresponding circumferential ridges on the inner wall of the sleeve to form a ratchet.

11. The float equipment attachment assembly according claim 1 , in which the gripping arms are tapered so that the outer diameter of the gripping arm increases from a tip of the gripping arms toward the tubular body.

12. The float equipment attachment assembly according to claim 1 , in which the float equipment further comprises a tool groove extending circumferentially around an outer wall of the float equipment to receive a part of a setting tool.

13. The float equipment attachment assembly according to claim 1 in which the float equipment is a reamer shoe.

14. The float equipment attachment assembly according to claim 13 , in which the reamer shoe comprises an eccentric nose cone mounted on the tubular body.

15. The float equipment attachment assembly of claim 13 , wherein the reamer shoe is configured to mount to an end of the tubing string, and the annular groove is located in the inner wall of the float equipment at a position towards a leading end of the reamer shoe, wherein the reamer shoe is configured to eject fluid from a nose of the reamer shoe.

16. The float equipment attachment assembly according to claim 1 , in which the float equipment further comprises one or more channels extending through a wall of the float equipment to allow fluid communication between the tubing string and a well bore.

17. The float equipment attachment assembly according to claim 1 , in which the float equipment further comprises an internal threaded portion for receiving a check valve.

18. The float equipment attachment assembly according to claim 1 , in which the tubular body comprises one or more reamer members or one or more spiral centraliser arms, or both.

19. The float equipment attachment assembly according to claim 1 , further comprising a support ring adapted to reduce the effective inner diameter of the tubular body to conform to a conical threaded portion of the tubular string.

20. The float equipment attachment assembly according to claim 1 , in which the tubular body comprises a threaded connection for receiving a nose cone.

21. A method of mounting a float equipment to a tubing string comprising:

sliding an attachment sleeve onto the tubing string;

sliding the float equipment onto an end of the tubing string;

aligning a longitudinal axis of a substantial tubular end part of the attachment sleeve with a longitudinal axis of a substantial tubular end part of the float equipment;

applying a force that moves an end part of the sleeve and an end part of the float equipment relatively toward each other along the longitudinal axis so that contact between the sleeve and the float equipment causes each of a plurality of gripping arms on an end part of the float equipment to deflect radially inward; and

sealing a flow path of fluid from the tubing string external the float equipment between the tubing string and the float equipment with a seal retained within a seal groove in an inner wall of the float equipment that engages an outer wall of the tubing string.

Assignments (2)
CHANGE OF NAME Recorded Mar 18, 2025
From: ACE OIL TOOLS AS
To: ACE WELL TECHNOLOGY AS
Reel/Frame 070539/0821 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2019
From: STEINE, KEN ERIK
To: ACE OIL TOOLS
Reel/Frame 048521/0621 →
Continuity (1)
Related Publication 20190145187A1 · May 16, 2019