Steering pads with shaped front faces
A rotary steerable device includes a steering pad disposed with a drilling tool and radially moveable relative to a centerline of the drilling tool to apply a steering force to a borehole wall. The steering pad has a front face to contact the borehole wall and having a diameter or width and a tapered section that tapers inward at a taper angle toward the centerline along a taper length in the direction from a take-off position to a leading edge relative to one of a rotational direction of the drilling tool or a drilling direction.
1. A rotary steerable device, comprising a steering pad disposed with a drilling tool and radially moveable relative to a centerline of the drilling tool to apply a steering force to a borehole wall, the steering pad having a front face to contact the borehole wall, wherein the front face has a diameter or width and a tapered section that tapers inward at a taper angle toward the centerline along a taper length in the direction from a take-off position to a leading edge relative to a drilling direction, wherein the take-off position extends across the front face transverse to the drilling direction, and wherein the tapered section tapers in an axial direction.
2. The device of claim 1 , wherein the tapered section creates a rock removal contact surface resulting in a contact pressure against the borehole wall that is less than the compressive strength of an earthen formation forming the borehole wall prior to the pad reaching its maximum radial travel length.
3. The device of claim 1 , wherein the taper length is substantially equal to the diameter or width of the front face.
4. The device of claim 1 , wherein the taper length is in the range between about 10 percent and about 100 percent of the diameter or width of the front face.
5. The device of claim 1 , wherein the taper angle is between about one degree and about twenty degrees.
6. The device of claim 1 , wherein the taper length is in the range between about 10 percent and about 100 percent of the diameter or width of the front face; and
the taper angle is between about one degree and about twenty degrees.
7. The device of claim 1 , wherein the tapered section has a taper height which is the distance between the leading edge and the take-off point, wherein the taper height is equal to or about equal to an overgauge radial travel length of the pad.
8. The device of claim 1 , wherein the taper length is substantially planar.
9. The device of claim 1 , wherein the taper length is curved.
10. The device of claim 1 , wherein the leading edge of the tapered section is an axial leading edge relative to the drilling direction and the front face further comprises a circumferential tapered section extending from a circumferential take-off point on the front face to the rotational leading edge relative to the direction of rotation of the drilling tool.
11. The device of claim 10 , wherein the front face extending from the circumferential take-off position to a trailing edge opposite the rotational leading edge is cylindrically shaped.
12. The device of claim 10 , wherein at least the taper length extending in the drilling direction is substantially equal to the diameter or width of the front face.
13. The device of claim 10 , wherein the taper length extending in the drilling direction is in the range between about 10 percent and about 100 percent of the diameter or width of the front face.
14. The device of claim 10 , wherein the taper angle of the taper length extending in the drilling direction is between about one degree and about twenty degrees.
15. The device of claim 10 , wherein the taper length extending in the drilling direction is in the range between about 10 percent and about 100 percent of the diameter or width of the front face; and
the taper angle is between about one degree and about twenty degrees.
16. The device of claim 10 , wherein the tapered section extending in the drilling direction has a taper height which is the distance between the leading edge and the take-off point, wherein the taper height is equal to or about equal to an overgauge radial travel length of the pad.
17. A method, comprising preparing a steering pad for a drilling tool having a center line oriented along a drilling direction, the steering pad having an actuation axis oriented perpendicular to the centerline, and a front face having an axial leading edge in the drilling direction, wherein the front face has an axial tapered section that tapers inward at a taper angle toward the centerline along a taper length in the direction from a first take-off position to the axial leading edge, wherein the taper angle is between about one degree and about twenty degrees.
18. The method of claim 17 , further comprising forming a circumferential tapered section extending from a second take-off position on the front face inward toward the centerline to the rotational leading edge.
19. A bottom hole assembly (BHA), comprising:
a drill bit having a gauge and a centerline extending in a drilling direction; and
a tool connected with the drill bit, the tool comprising an upper steering pad and a lower steering pad axially aligned in the drilling direction, wherein the steering pads are radially moveable along a travel length from a fully retracted position to a fully extended position, the steering pads each comprise:
a front face for contacting a borehole wall to apply a steering force, wherein the front face has an axial leading edge in the drilling direction, wherein the front face has an axial tapered section that tapers inward at a taper angle toward the centerline along a taper length in the direction from a first take-off position to the axial leading edge, wherein the taper length is in the range between about 10 percent and about 100 percent of a diameter or width of the front face.
20. The BHA of claim 19 , wherein the front face further comprises a circumferential tapered section extending from a second take-off position on the front face inward toward the centerline to the rotational leading edge.