IP Library Granted Patent US 7,594,552
Granted Patent B2
US 7,594,552 · App. 11/873,346 · Granted Sep 29, 2009

Expandable reamer apparatus for enlarging boreholes while drilling

Assignee: Baker Hughes Incorporated
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Quick Facts
Patent No.
US 7,594,552
App. No.
11/873,346
Granted
Sep 29, 2009
Kind
B2
Abstract

An expandable reamer apparatus and methods for reaming a borehole, wherein a laterally movable blade carried by a tubular body may be selectively positioned at an inward position and an expanded position. The laterally movable blade, held inwardly by blade-biasing elements, may be forced outwardly by drilling fluid selectively allowed to communicate therewith by way of an actuation sleeve disposed within the tubular body. Alternatively, a separation element may transmit force or pressure from the drilling fluid to the movable blade. Further, a chamber in communication with the movable blade may be pressurized by way of a downhole turbine or pump. A ridged seal wiper, compensator, movable bearing pad, fixed bearing pad preceding the movable blade, or adjustable spacer element to alter expanded blade position may be included within the expandable reamer. In addition, a drilling fluid pressure response indicating an operational characteristic of the expandable reamer may be generated.

Claims (45)

1. An expandable reamer for drilling a subterranean formation, comprising:

a tubular body having a longitudinal axis;

a drilling fluid flow path extending through the expandable reamer for conducting drilling fluid therethrough;

a plurality of generally radially and longitudinally extending blades carried by the tubular body, each blade carrying at least one cutting structure thereon, wherein at least one blade of the plurality of blades is laterally movable and includes structure associated therewith responsive to one of a biasing force and a pressure;

at least one blade-biasing element configured for providing the biasing force oriented substantially transversely to the longitudinal axis and in contact with the associated structure for holding at least one laterally movable blade at an innermost lateral position with a force, the innermost lateral position corresponding to no more than an initial diameter of the expandable reamer; and

an actuation structure positioned within the tubular body and configured to selectively allow actuation of the at least one laterally movable blade of the plurality of blades directly by the associated structure to effect lateral movement thereof.

2. The expandable reamer of claim 1 , further comprising structure for preventing lateral movement of the at least one laterally movable blade beyond an outermost lateral position corresponding to an expanded diameter of the expandable reamer.

3. The expandable reamer of claim 1 , wherein the force is effected by a biasing element.

4. The expandable reamer of claim 1 , wherein the pressure is applied by drilling fluid passing through the tubular body.

5. The expandable reamer of claim 1 , wherein the at least one cutting structure comprises a plurality of cutting structures.

6. The expandable reamer of claim 1 , wherein the actuation structure is configured to increase a size of the drilling fluid flow path longitudinally through the expandable reamer by way of selectively allowing drilling fluid communication with at least one alternative drilling fluid flow path while allowing drilling fluid to communicate with the at least one laterally movable blade.

7. The expandable reamer of claim 1 , wherein a cross-sectional shape of the at least one laterally movable blade in a geometric plane substantially perpendicular to the lateral movement thereof comprises at least one of an oval, an elliptical, and an arcuate shape.

8. The expandable reamer of claim 1 , further comprising:

a reduced cross-sectional area orifice for developing longitudinal force upon the actuation structure responsive to drilling fluid flowing therethrough;

wherein a first position of the actuation structure prevents drilling fluid from communicating with the at least one laterally movable blade and a second position of the actuation structure allows drilling fluid to communicate with the at least one laterally movable blade.

9. The expandable reamer of claim 1 , wherein the actuation structure is configured to accept or interact with a restriction element for selectively activating the actuation structure by substantially preventing flow of drilling fluid therethrough to cause the actuation structure to allow the communication of drilling fluid with the at least one laterally movable blade.

10. The expandable reamer of claim 9 , wherein the actuation structure is configured to increase a size of the drilling fluid flow path through the expandable reamer by way of allowing drilling fluid communication with at least one alternative drilling fluid flow path subsequent to a restriction element substantially preventing the flow of drilling fluid through the actuation structure.

11. The expandable reamer of claim 10 , wherein the restriction element comprises a ball sized and configured to engage the actuation structure at a seating surface complementarily sized and configured to substantially prevent the flow of drilling fluid therethrough and cause displacement of the actuation structure within the expandable reamer to a position that allows communication between drilling fluid and the at least one laterally movable blade.

12. The expandable reamer of claim 1 , wherein the at least one laterally movable blade comprises a plurality of laterally movable blades.

13. The expandable reamer of claim 12 , wherein the plurality of laterally movable blades comprises a first plurality of laterally movable blades configured within the tubular body to extend to a first outermost lateral position and a second plurality of laterally movable blades configured within the tubular body to extend to a second outermost lateral position.

14. The expandable reamer of claim 1 , wherein an outermost lateral position of the at least one laterally movable blade is adjustable.

15. The expandable reamer of claim 1 , further comprising a bearing pad disposed proximate to one longitudinal end of the at least one laterally movable blade.

16. The expandable reamer of claim 1 , further comprising at least one laterally movable bearing pad.

17. The expandable reamer of claim 1 , further comprising a seal assembly disposed within the expandable reamer between two surfaces, one surface movable relative to the other, comprising a seal adjacent at least one backup seal member having a nonplanar wiping surface.

18. An expandable reamer for drilling a subterranean formation, comprising:

a body having a longitudinal axis;

a drilling fluid flow path extending through the expandable reamer for conducting drilling fluid therethrough;

an actuation structure positioned within the body and configured to selectively conduct drilling fluid to the drilling fluid flow path;

a plurality of generally radially and longitudinally extending blades carried by the body, each blade carrying at least one cutting structure thereon, wherein at least one blade of the plurality of blades is laterally movable directly by a blade structure of the at least one blade in response to a force or pressure provided by the drilling fluid; and

at least one blade-biasing element configured for providing a biasing force oriented substantially transversely to the longitudinal axis for contacting with associated structure for holding at least one laterally movable blade at an innermost lateral position.

19. The expandable reamer of claim 18 , further comprising at least one blade-biasing element coupled to the blade structure for directly holding the at least one blade at an innermost lateral position with a force, the innermost lateral position corresponding to an initial diameter of the expandable reamer and where the force or pressure provided by the drilling fluid for directly positioning the at least one blade laterally exceeds the opposing force of the blade-biasing element, and further including structure for preventing lateral movement of the at least one blade beyond an outermost lateral position corresponding to an expanded diameter of the expandable reamer.

20. An expandable reamer for drilling a subterranean formation, comprising:

a tubular body having a longitudinal axis;

a drilling fluid flow path extending through the expandable reamer for conducting drilling fluid therethrough;

a plurality of generally radially and longitudinally extending blades carried by the tubular body, each blade carrying at least one cutting structure thereon, wherein at least one blade of the plurality is laterally movable directly by the associated structure responsive to a force or a pressure;

at least one blade-biasing element configured for providing a biasing force oriented substantially transversely to the longitudinal axis and in contact with the associated structure for opposing the force or pressure of drilling fluid passing through the tubular body for at least one of directing or holding at least one blade at an innermost lateral position with a force, the innermost lateral position corresponding to no more than an initial diameter of the expandable reamer; and

an actuation sleeve positioned along an inner diameter of the tubular body and configured to selectively allow communication of drilling fluid passing through the tubular body with the associated structure to effect direct outward lateral movement of the at least one blade being responsive to a force or pressure of drilling fluid passing through the tubular body.

21. The expandable reamer of claim 20 , further comprising a structure for preventing lateral movement of the at least one blade beyond an outermost lateral position corresponding to an expanded diameter of the expandable reamer.

22. An expandable reamer for drilling a subterranean formation, comprising:

a tubular body having a longitudinal axis;

a drilling fluid flow path extending through the expandable reamer for conducting drilling fluid therethrough;

a plurality of generally radially and longitudinally extending blades carried by the tubular body, each blade carrying at least one cutting structure thereon, wherein at least one blade of the plurality of blades is laterally movable;

an activating means for directly moving the at least one laterally movable blade, the activating means comprises at least one piston for receiving the force or pressure from drilling fluid;

at least one blade-biasing element configured for providing a biasing force, the biasing force oriented substantially transversely to the longitudinal axis in opposing relationship to the force or pressure of drilling fluid; and

an actuation sleeve positioned along an inner diameter of the tubular body and configured to selectively allow communication of drilling fluid passing through the tubular body with the activating means to effect direct lateral movement of the at least one blade being responsive to a force or pressure of drilling fluid passing through the tubular body.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNOR'S NAME PREVIOUSLY RECORDED AT REEL: 042822 FRAME: 0321. ASSIGNOR(S) HEREBY CONFIRMS THE ARTICLES OF ORGANIZATION - CONVERSION. Recorded Jun 28, 2017
From: BAKER HUGHES OILFIELD OPERATIONS, INC.
To: BAKER HUGHES OILFIELD OPERATIONS LLC
Reel/Frame 043027/0363 →
ARTICLES OF ORGANIZATION - CONVERSION Recorded Jun 15, 2017
From: BAKER HUGHES OILFIELD OPERATION, INC.
To: BAKER HUGHES OILFIELD OPERATIONS LLC
Reel/Frame 042822/0321 →
NUNC PRO TUNC ASSIGNMENT Recorded Jul 8, 2016
From: BAKER HUGHES INCORPORATED
To: BAKER HUGHES OILFIELD OPERATIONS, INC.
Reel/Frame 039105/0783 →
Continuity (4)
Continuation 1141361500 · Apr 27, 2006
Continuation 1062495200 · Jul 22, 2003
Provisional Application 6039953100 · Jul 30, 2002
Related Publication 20080110678A1 · May 15, 2008