Claims
- 1. A method of forming a lateral wellbore, comprising:
running an apparatus into the wellbore to a predetermined location, the apparatus including a tubular string, a drill bit, a diverting device, and a device to form an aperture in wellbore casing; creating the aperture in the casing; disconnecting the device to form the aperture from the drill bit and tubular string; directing the drill bit through the aperture; and commencing the drilling of the lateral wellbore.
- 2. The method of claim 1, wherein the diverting device is a whipstock.
- 3. The method of claim 1, wherein the diverting device is a rotary steerable drilling device.
- 4. The method of claim 3, wherein the diverting device is bent sub.
- 5. The method of claim 1, wherein the apparatus further includes an anchoring device and wherein the method further includes setting said anchoring device within the cased wellbore.
- 6. The method of claim 1, wherein said apparatus further comprises a lug having a body and an upper end, said upper end of said lug being temporarily connected to said drill bit, and wherein said body of said lug is connected to said diverter, and
wherein said lug is fabricated from a material capable of being comminuted by said drill bit.
- 7. The method of claim 6, wherein said connection between said drill bit and said diverter is a shearable connection that fails upon application of a predetermined force between said diverter and said drill bit.
- 8. A method for forming a lateral borehole from a parent wellbore, the parent wellbore being lined with casing, the system comprising the steps of:
running an apparatus into the parent wellbore, the apparatus comprising a tubular, a drill bit in fluid communication with said tubular at a lower end thereof, a diverter releasably connected to said drill bit, and a milling device; lowering said apparatus such that said milling device is located at a predetermined depth and orientation in the parent wellbore; activating said milling device to form a window through the casing of the parent wellbore at the predetermined depth and orientation; repositioning said apparatus such that said diverter is adjacent to said window in the parent wellbore and is oriented to divert said drill bit towards said window in the casing; releasing said drill bit from said diverter; urging said drill bit downwardly against said diverter; and rotating said drill bit through said window in order to form said lateral borehole.
- 9. The method of claim 8, wherein said milling device defines a container having an exothermic heat source material for melting casing in order to form said window therein, and an initiator for initiating combustion of said heat source material, and
wherein said activating step of said system defines the step of initiating combustion of said exothermic heat source material, causing said heat source material to be expelled from said container and to be applied against the casing, thereby removing melted casing material and forming said window.
- 10. The method of claim 9, wherein said container defines:
an outer wall; a first interior space within said outer wall for containing said exothermic heat source material before combustion; at least one aperture formed in said outer wall, said at least one aperture forming a path of communication between said exothermic heat source material within said first interior space, and the casing; an opening positioned below said at least one aperture for receiving spent exothermic heat source material and casing material after said heat source has been applied against the casing; and a second interior space below said first interior space for accepting spent exothermic heat source material and melted casing material from said opening as said window is formed.
- 11. The method of claim 10, wherein said exothermic heat source material is thermite, and wherein said at least one aperture is fabricated from a ceramic material.
- 12. The method of claim 8, wherein said milling device defines a broach for mechanically cutting casing.
- 13. The method of claim 12, wherein said broach comprises:
a fluid source; a fluid actuated motor; a fluid source line for transporting fluid from said fluid source to said fluid actuated motor; a compressor for placing said fluid source under pressure and for delivering fluid from said fluid source to said fluid actuated motor through said fluid source line; a housing; a piston residing within said housing, said piston having a back end and a front end; a biasing member for biasing said piston to reside within said housing; a fluid intake line for providing fluid from said motor to said housing at said back end of said piston, said pressure from said fluid intake line being capable of overcoming said biasing member so as to extrude said piston from said housing; a fluid outtake line for returning said fluid from said housing to said fluid source; and a series of teeth at said front end of said piston for milling the casing, thereby creating said window when said teeth reciprocate against the casing.
- 14. The method of claim 13, wherein said motor comprises:
a drive shaft which rotates when said fluid actuated motor is activated; a cam having a wave form face, said cam being rotated by said drive shaft; a vertical plunger having a top end and a bottom end, said bottom end being connected to said housing of said broach, and said top end being acted upon by said wave form face of said cam when said drive shaft is rotated so as to cause said plunger to reciprocate translationally, and thereby causing said broach to reciprocate axially.
- 15. The method of claim 14, wherein said cam is connected to said drive shaft, and said wave form on said face of said cam is generally sinusoidal.
- 16. The method of claim 15, wherein said step of activating said milling device defines activating said fluid actuated motor.
- 17. The method of claim 13, further comprising a regulator connecting said fluid outtake line to said fluid source for controlling pressure in said fluid intake line.
- 18. The method of claim 17, wherein said regulator is a sized orifice.
- 19. The method of claim 10, wherein the pressure needed to overcome said biasing member of said reciprocating broach is greater than the pressure needed to activate the fluid actuated motor, and
wherein the pressure needed to activate the fluid actuated motor is at approximately critical flow of said fluid source line.
- 20. The method of claim 12, wherein said broach comprises:
a fluid source; a fluid actuated motor a motor shaft suspended from said motor, said motor shaft having a top end connected to said motor, and a bottom end connected to a first gear set, said first gear set being rotated by said motor; a fluid source line for transporting fluid from said fluid source to said fluid actuated motor; a compressor for placing said fluid source under pressure and for delivering fluid from said fluid source to said fluid actuated motor through said fluid source line; a broach shaft disposed perpendicular to said motor shaft, said broach shaft having a first end and a second end, said first end being connected to a second gear set which is in mechanical communication with said first gear set such that rotation of said first gear set by said motor turns said second gear set which, in turn, rotates said broach shaft; a broach having a series of teeth for mechanically cutting the casing upon rotation of said broach shaft, thereby creating said window when said teeth rotate against the casing; and a fluid outtake line for returning said fluid from said motor to said fluid source.
- 21. The method of claim 17, wherein said step of activating said milling device defines activating said fluid actuated motor.
- 22 The method of claim 21, further comprising a regulator connecting said fluid outtake line to said fluid source for controlling pressure in said fluid intake line.
- 23. The method of claim 8, wherein said milling device defines an explosive charge for explosively creating said opening in the casing.
- 24. The method of claim 23, wherein said explosive charge is administered by a perforating gun, said perforating gun being positioned at varying depths within the casing such that a plurality of explosive charges administered at said varying depths creates said opening in the casing.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of co-pending U.S. patent application Ser. No. 09/658,858, filed Sep. 11, 2000, which is incorporated by referenced herein in its entirety.
Continuation in Parts (1)
|
Number |
Date |
Country |
| Parent |
09658858 |
Sep 2000 |
US |
| Child |
10079139 |
Feb 2002 |
US |