Claims
- 1. A milling apparatus to mill a window through a downhole structure having a longitudinal axis, comprising:a deflector having a reaction surface; a motion mechanism adapted to move the deflector generally along the longitudinal axis; and a mill adapted to cooperate with the reaction surface and to move generally along the longitudinal axis with the deflector, wherein the motion mechanism comprises a hydraulic mechanism through which hydraulic fluid is bled to move the deflector.
- 2. The apparatus of claim 1, wherein the hydraulic mechanism includes a container containing the hydraulic fluid and having one or more outlet ports, the hydraulic fluid to be bled through the one or more outlet ports in response to a force applied against the container.
- 3. The apparatus of claim 2, wherein the hydraulic mechanism further comprises one or more support elements moveably engaged with the container, the container adapted to move along the one or more support elements in response to the force applied against the container.
- 4. A milling apparatus to mill a window through a downhole structure having a longitudinal axis, comprising:a deflector having a reaction surface; a motion mechanism adapted to move the deflector generally along the longitudinal axis; a mill adapted to cooperate with the reaction surface and to move generally along the longitudinal axis with the deflector; and a guide device with an orienting element adapted to engage a corresponding orienting profile with a known azimuthal orientation.
- 5. A method of milling a window in a downhole structure in a wellbore, comprising:setting a deflector in the wellbore, the deflector having a reaction surface, the deflector further having a mechanism to move the deflector generally along a longitudinal axis of the deflector; engaging a mill against the reaction surface; rotating the mill; and moving the mill generally along the longitudinal axis with the deflector as the mill cuts the window in the downhole structure.
- 6. The method of claim 5, further comprising:providing a landing device having an orienting element; and engaging an orienting element coupled to the deflector to the orienting element of the landing device to set an azimuthal orientation of deflector with respect to the downhole structure.
- 7. The method of claim 6, further comprising determining an azimuthal orientation of the orienting element of the landing device using a measurement tool.
- 8. The method of claim 7, wherein using the measurement tool comprises using a gyroscope survey tool.
- 9. The method of claim 6, further comprising:after milling the window, retrieving the milling assembly from the wellbore; and installing a junction assembly to form a sealed junction.
- 10. The method of claim 5, wherein the mechanism to move the deflector comprises a hydraulic mechanism, the method further comprising applying a force to actuate the hydraulic mechanism to move the deflector.
- 11. The method of claim 10, wherein the hydraulic mechanism comprises a container containing a hydraulic fluid, and wherein applying the force comprises applying a force to bleed the hydraulic fluid from the container.
- 12. The method of claim 11, further comprising moving the container along one or more support elements as the hydraulic fluid is bled from the container.
- 13. The method of claim 5, wherein the mechanism comprises a support member, the deflector moveable with respect to the support member,wherein moving the mill generally along the longitudinal axis causes movement of the deflector generally along the longitudinal direction.
- 14. A system for use in a wellbore, comprising:a milling assembly, the milling assembly having: a deflector having a reaction surface; a motion mechanism adapted to move the deflector generally along a longitudinal axis of the deflector; and a mill adapted to be engaged with the reaction surface and to move generally along the longitudinal axis with the deflector as the mill is rotating.
- 15. The system of claim 14, wherein the reaction surface is generally inclined to guide the mill against a casing in the wellbore.
- 16. The system of claim 14, wherein the milling assembly further comprises a rotatable shaft adapted to rotate the mill.
- 17. The system of claim 14, further comprising:a casing, wherein the milling assembly is adapted to mill a window through the casing; and a junction assembly having: a template having a lateral window for positioning proximal the casing window; a connector adapted to be sealably engaged with the template, the connector adapted to be directed by the template through the template lateral window.
- 18. The system of claim 14, wherein movement of the mill along the longitudinal axis causes movement of the deflector along the longitudinal axis.
- 19. The system of claim 14, wherein the motion mechanism comprises at least one support member and a component moveable on the at least one support member, andwherein the deflector is attached to the component such that the deflector is moveable with respect to the support member.
- 20. The system of claim 19, wherein the milling assembly further comprises a shaft coupled to the mill,wherein a force applied on the shaft as the mill is milling a downhole structure causes movement of the deflector with respect to the support member.
- 21. The system of claim 14, wherein the milling assembly further comprises a shaft coupled to the mill,wherein a force applied on the shaft as the mill is milling a downhole structure causes movement of the deflector with respect to the support member.
- 22. A system for use in a wellbore, comprising:a milling assembly, the milling assembly having: a deflector having a reaction surface; a motion mechanism adapted to move the deflector generally along a longitudinal axis of the deflector; and a mill adapted to be engaged with the reaction surface and to move generally along the longitudinal axis with the deflector, wherein the motion mechanism comprises a hydraulic mechanism through which hydraulic fluid is bled to move the deflector.
- 23. The system of claim 22, wherein the hydraulic mechanism includes a container containing the hydraulic fluid and having one or more outlet ports, the hydraulic fluid to be bled through the one or more outlet ports in response to a force applied against the container.
- 24. The system of claim 23, wherein the hydraulic mechanism further comprises one or more support elements moveably engaged with the container, the container adapted to move along the one or more support elements in response to the force applied against the container.
- 25. A system for use in a wellbore, comprising:a milling assembly, the milling assembly having: a deflector having a reaction surface; a motion mechanism adapted to move the deflector generally along a longitudinal axis of the deflector; and a mill adapted to be engaged with the reaction surface and to move generally along the longitudinal axis with the deflector; and a landing device having an orienting profile with a known azimuthal orientation in the wellbore.
- 26. The system of claim 25, wherein the milling assembly further comprises a guide device with an orienting element adapted to engage the orienting profile of the landing device.
- 27. A milling apparatus to mill a window through a downhole structure having a longitudinal axis, comprising:a deflector having a reaction surface; a motion mechanism adapted to move the deflector generally along the longitudinal axis; and a mill adapted to cooperate with the reaction surface and to move generally along the longitudinal axis with the deflector, wherein the mill is adapted to move with the deflector along the longitudinal axis as the mill is milling the downhole structure.
- 28. The milling apparatus of claim 27, wherein movement of the mill along the longitudinal axis causes movement of the deflector along the longitudinal axis.
- 29. The apparatus of claim 27, further comprising a support bearing adapted to support the mill, the support bearing being in engagement with the reaction surface.
- 30. The apparatus of claim 27, wherein the mill has a first size, the apparatus further comprising a second mill having a second, different size.
- 31. A The apparatus of claim 27, wherein the mill has a first cutting structure, the apparatus further comprising a second mill having a second, different cutting structure.
- 32. The apparatus of claim 27, wherein the mill is maintained in a fixed azimuthal orientation with respect to the downhole structure.
- 33. The apparatus of claim 27, further comprising a rotatable shaft adapted to rotate the mill.
- 34. The apparatus of claim 27, wherein the reaction surface is generally inclined to guide the mill against the downhole structure.
- 35. The milling apparatus of claim 27, wherein the motion mechanism comprises at least one support member and a component moveable on the at least one support member, andwherein the deflector is attached to the component such that the deflector is moveable with respect to the support member.
- 36. The milling apparatus of claim 35, further comprising a shaft coupled to the mill,wherein a force applied on the shaft as the mill is milling the downhole structure causes movement of the deflector with respect to the support member.
- 37. The milling apparatus of claim 27, further comprising a shaft coupled to the mill,wherein a force applied on the shaft as the mill is milling the downhole structure causes movement of the deflector with respect to the support member.
- 38. A system for use in a wellbore, comprising:a milling assembly, the milling assembly having: a deflector having a reaction surface; a motion mechanism adapted to move the deflector generally along a longitudinal axis of the deflector; and a mill adapted to be engaged with the reaction surface and to move generally along the longitudinal axis with the deflector, wherein the mill is adapted to move with the deflector along the longitudinal axis as the mill is milling a downhole structure.
CROSS REFERENCE TO RELATED APPLICATIONS
This claims the benefit under 35 U.S.C. § 119(e) of U.S. Provisional Application Serial No. 60/300,678, entitled “Milling and Completion System and Method for Multi-Lateral Wells,” filed Jun. 25, 2001.
US Referenced Citations (17)
Provisional Applications (1)
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Number |
Date |
Country |
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60/300678 |
Jun 2001 |
US |