IP Library Granted Patent US 8,590,618
Granted Patent B2
US 8,590,618 · App. 13/065,922 · Granted Nov 26, 2013

Method and apparatus for single run cutting of well casing and forming subsurface lateral passages from a well

Inventor: Henk H. Jelsma (Spring, TX)
Assignee: Radial Drilling Services, Inc.
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Quick Facts
Patent No.
US 8,590,618
App. No.
13/065,922
Granted
Nov 26, 2013
Kind
B2
Abstract

An apparatus and system for a single run process for well installations to cut or mill away a section of the casing of a well and then position an attached deflecting device to form radial boreholes or passages in a production formation that is intersected by the wellbore. This invention allows the lateral boreholes to be selectively oriented angularly upwardly or downwardly in relation to the casing space that has been formed or oriented in selectively radially spaced relation if desired.

Claims (53)

1. A method for a single run well service operation for cutting an interval in a well casing and positioning a deflector shoe relative to said interval, comprising:

running to a desired depth within a casing of a well a casing interval assembly having a casing mill and a jet tube deflector shoe, said deflector shoe having a jet tube transition passage therein and defining a jet tube outlet facing laterally;

moving and actuating said casing mill and cutting away a section of casing of desired length forming a casing interval exposing a surrounding earth formation, said actuation of said casing mill forming an upwardly facing landing ledge on the casing at said casing interval; and

landing said casing interval assembly on said landing ledge, said landing step positioning said deflector shoe with said jet tube outlet located within said casing interval and facing the earth formation.

2. The method of claim 1 , wherein a landing and positioning body is connected within said casing interval assembly and has locking lugs that are movable from a retracted position to an extended position, said method comprising:

after said step of moving and actuating said casing mill, moving said casing interval assembly upward within the casing and above said casing interval;

lowering said casing interval assembly within the casing until said locking lugs reach said casing interval and are moved from said retracted positions to said extended positions; and

continuing said lowering of said casing interval assembly until said locking lugs engage and are stopped by said upwardly facing landing ledge and said jet tube outlet is located within said casing interval.

3. The method of claim 1 , wherein said casing mill includes a fluid pressure responsive piston having actuating connection with cutter actuating arms and upon piston movement said actuating arms are moved and move said cutter members outwardly to engage and cut through the casing, said method comprising:

said step of moving and actuating said casing mill being increasing fluid pressure on said piston and causing pressure actuation of said cutter actuating arms and movement of said cutter members against the casing;

rotating said casing interval assembly and causing said cutter members to cut through the casing; and

lowering and rotating said casing interval assembly and cutting away a section of casing of sufficient length to define said casing interval and form said upwardly facing landing ledge.

4. The method of claim 1 , wherein said deflector shoe defines a jet tube transition passage having an inlet facing upwardly and an outlet facing laterally, said method comprising:

running a flexible jet fluid supply tube and jet nozzle down the well casing and through said jet tube transition passage of said deflector shoe; and

pumping fluid from a surface location through said flexible jet fluid supply tube and directing a formation blasting jet of pressurized fluid against the formation and forming a lateral passage from the casing interval into the formation.

5. The method of claim 4 , comprising:

after completion of the lateral passage, rotating said deflector shoe and orienting said outlet of said jet tube transition passage toward a selected azimuth; and

repeating said step of pumping fluid from the surface location through said flexible jet fluid supply tube and directing a formation blasting jet of pressurized fluid against the formation and forming a lateral passage from the casing interval into the formation.

6. The method of claim 1 , comprising:

extending a casing cutter member from said casing mill to casing cutting position thereof; and

rotating said casing cutter and moving said casing cutter downwardly and cutting away a section of casing defining a casing interval exposing the formation, said downward cutting of the casing leaving a sharply defined upwardly facing circular landing ledge on the casing.

7. The method of claim 6 , wherein said deflector shoe defines a jet tube transition passage having an inlet opening facing upwardly and an outlet opening facing laterally and has a landing positioning body having moveable locking lugs that move to retracted positions and landing positions, said method comprising:

after cutting the casing, retracting said casing cutter;

lifting said casing interval assembly within the casing to a position above the casing interval;

lowering said casing interval assembly until said locking lugs reach the casing interval and move from said retracted positions outwardly to said landing positions; and

continuing lowering movement of said casing interval assembly within the casing until said locking lugs land on said sharply defined upwardly facing circular landing ledge and position said outlet opening of said jet tube transition passage in facing relation with the formation.

8. The method of claim 1 ,

after cutting the casing interval in the casing, lifting said casing interval assembly within the casing to a position above the casing interval;

lowering and landing said casing interval assembly on said landing ledge;

running a flexible jet fluid supply tube and jet nozzle down the well casing and through said jet tube transition passage of said deflector shoe;

pumping fluid from a surface location through said flexible jet fluid supply tube and directing a formation blasting jet of pressurized fluid against the formation and forming a lateral passage from the casing interval into the formation;

after forming a lateral passage into the formation, with said casing interval assembly within the casing, lifting and rotating said casing interval assembly and orienting said outlet opening of said jet tube transition passage on another azimuth; and

repeating said running of said flexible jet fluid supply tube and pumping fluid through said flexible jet fluid supply tube and forming another lateral passage within the formation.

9. Single run well servicing apparatus for cutting a casing interval in the casing of well, locating a jet tube deflector shoe relative to the casing interval, comprising:

a deflecting shoe having connection with a work string extending from a surface location and being linearly and rotatably moveable by the work string;

a tool positioning body being connected with said deflecting shoe;

a plurality of locking lugs being mounted within said tool positioning body and being movable to a retracted positions and to extended landing positions;

a section mill being connected with said tool positioning body and having a casing cutter member being hydraulically moveable from a retracted position to a cutting position;

a service fluid supply system being located at the surface location and having communication with said section mill and being selectively controlled for pressure energized movement of said casing cutter member to said cutting position responsive to the pressure of fluid being pumped.

10. The single run well servicing apparatus of claim 9 , comprising:

said deflecting shoe defining a jet tube transition passage having an upwardly facing inlet opening and having a laterally facing outlet opening and directing a flexible jet fluid supply tube extending downwardly through the well casing to bend and transition laterally and extend from said laterally facing outlet opening into the surrounding formation responsive to fluid jet blasting.

11. The single run well servicing apparatus of claim 9 , comprising:

a flexible jet fluid supply tube conducting pressurized fluid from said service fluid supply system and being movable through said jet tube transition passage and from said outlet opening to the formation; and

a jet nozzle being mounted to said flexible jet fluid supply tube for providing high pressure fluid of said flexible jet fluid supply tube to a jet for jet blasting a lateral passage into the formation; and

a reaction opening in said jet nozzle, directing fluid flow rearwardly and developing a reaction force responsive to fluid flow which propels said jet nozzle forwardly and develops a traction force urging said flexible jet fluid supply tube into a lateral passage being jet blasted into the formation.

12. The single run well servicing apparatus of claim 9 , comprising:

said locking lugs being spring urged to said extended landing positions thereof; and

said locking lugs having upwardly facing cam surfaces that engage a downwardly facing end of the casing at said casing interval and develop a reaction force upon upward movement of said casing interval assembly forcing said locking lugs from said extended position to said retracted position.

13. The single run well servicing apparatus of claim 9 , comprising:

a downwardly converging tapered jet tube guide surface of said inlet opening of said deflecting shoe; and

an overhang structure within said inlet opening minimizing hang-up of said jet fluid supply tube and jet nozzle during passage into and from said jet tube transition passage.

14. The single run well servicing apparatus of claim 9 , comprising:

bypass passages being defined within said deflecting shoe and communicating said jet tube transition passage with an annulus between the well casing and said deflecting shoe.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2016
From: RADIAL DRILLING SERVICES, INC.
To: SCHLUMBERGER TECHNOLOGY CORPORATION
Reel/Frame 039948/0451 →
SECURITY AGREEMENT Recorded Nov 23, 2011
From: RADIAL DRILLING SERVICES INC.
To: MAIN STREET CAPITAL CORPORATION
Reel/Frame 027281/0364 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2011
From: JELSMA, HENK H.
To: RADIAL DRILLING SERVICES, INC.
Reel/Frame 027201/0281 →
Continuity (2)
Provisional Application 61341814 · Apr 5, 2010
Related Publication 20110247815A1 · Oct 13, 2011