Claims
- 1. A fixed-cutter drill bit, having
cutting components sized, positioned, and/or oriented to provide even torque distribution both when the bit is penetrating approximately homogeneous rock and also when the bit is penetrating across a transition into harder rock.
- 2. The bit of claim 1, wherein said cutting components are sized, positioned, and oriented to provide even torque distribution both when the bit is penetrating across a transition into harder rock and also when the bit is penetrating across a transition into softer rock.
- 3. The bit of claim 1, wherein said cutting components include both nose cutters and shoulder cutters, said nose cutters being closer to an axis of rotation of the bit than are said shoulder cutters, and wherein torque distribution of said nose cutters is equalized under the condition when the bit is penetrating into harder rock, and wherein torque distribution of said shoulder cutters is equalized under the condition when the bit is penetrating into softer rock.
- 4. A drill bit comprising:
a body, and a plurality of cutting devices positioned to remove rock, and thereby advance a borehole, as torque and downforce are applied to said body; wherein said cutting devices are sized, positioned and oriented to provide even torque distribution on said body BOTH when said borehole is penetrating homogeneous rock having a first failure strength AND ALSO when said borehole encounters a transition into rock having a second failure strength which is different from said first failure strength.
- 5. The bit of claim 4, wherein said cutting devices are diamond-containing compacts.
- 6. The bit of claim 4, wherein said second strength is larger than said first strength.
- 7. A rotary drilling system, comprising:
a bit having cutters which bear approximately equalized loads both under homogeneous drilling conditions and also under transitional drilling conditions; a drill string which is connected to conduct drilling fluid to said bit from a surface location; and a rotary drive which rotates at least part of said drill string together with said bit.
- 8. The system of claim 7, wherein said bit is a fixed-cutter bit.
- 9. A method for designing an earth-penetrating drill bit, comprising the actions of:
computing first torque components, for various respective portions of the bit, when the bit is penetrating approximately homogeneous rock; computing second torque components, for said respective portions of the bit, when the bit is penetrating across a transition into harder rock; and adjusting the size and/or placement and/or orientation of said portions of the bit, to balance both said first torque components and also said second torque components around an axis of rotation of said bit.
- 10. The method of claim 9, wherein said bit is a fixed-cutter bit.
- 11. The method of claim 9, further comprising the step of:
computing third torque components, for said respective portions of the bit, when the bit is penetrating across a transition into softer rock; and wherein said adjusting step balances not only said first and second torque components, but also said third components.
CROSS-REFERENCE TO OTHER APPLICATION
[0001] This application claims priority from No. 60/278,865, filed Mar. 26, 2001, which is hereby incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60278865 |
Mar 2001 |
US |