IP Library › Granted Patent US 10,822,897
Granted Patent B2
US 10,822,897 · App. 15/980,992 · Granted Nov 3, 2020

Modular force multiplier for downhole tools

Inventor: Joze John Hrupp (Montgomery, TX)
Assignee: EXACTA-FRAC ENERGY SERVICES, INC.
E21B23/00E21B23/04E21B23/06
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Quick Facts
Patent No.
US 10,822,897
App. No.
15/980,992
Granted
Nov 3, 2020
Kind
B2
Abstract

A modular force multiplier converts a pull-up force applied to a work string from the surface into a multiplied opposite linear force that can be used to operate downhole tools to perform tasks requiring the application of linear force.

Claims (54)

1. A force multiplier module, comprising a small piston that reciprocates on a large piston mandrel within a small piston chamber, and a large piston on an end of the large piston mandrel reciprocates within a large piston chamber in response to contained fluid that forces the reciprocation of the small piston, which forces contained fluid in the small piston chamber through large piston ports to urge the reciprocation of the large piston.

2. A force multiplier module, comprising:

a small piston sleeve connected on one end to a sleeve connector, the small piston sleeve having at least one fluid port therethrough adjacent the sleeve connector;

a large piston sleeve connected to an opposite end of the small piston sleeve, the large piston sleeve having at least one fluid port adjacent a central passage therethrough;

a large piston mandrel that extends through the central passage in the large piston sleeve and a central passage in the sleeve connector;

a large piston on an end of the large piston mandrel;

a small piston adapted to reciprocate on the large piston mandrel between the sleeve connector and the large piston sleeve; and

an energizing cylinder sleeve that surrounds the sleeve connector and the small piston sleeve and defines an energizing fluid chamber surrounding the small piston sleeve.

3. A modular force multiplier, comprising:

a work string connection sub; and

at least one force multiplier module connected to the work string connection sub, the at least one force multiplier module comprising:

a sleeve connector connected to the work string connection sub;

a small piston sleeve connected on one end to the sleeve connector;

a large piston sleeve connected to an opposite end of the small piston sleeve;

a large piston adapted to reciprocate in a large piston chamber of the large piston sleeve, the large piston having a large piston mandrel that extends through central passages in the large piston sleeve and the sleeve, connector;

a small piston adapted to reciprocate on the large piston mandrel between the sleeve connector and the large piston sleeve; and

an energizing cylinder sleeve that surrounds the sleeve connector and the small piston sleeve and defines an energizing fluid chamber surrounding the small piston sleeve;

whereby urging the energizing cylinder sleeve to slide over the small piston sleeve forces contained fluid through ports in the small piston sleeve to urge movement of the small piston, which forces contained fluid through ports in the large piston sleeve to urge corresponding movement of the large piston.

4. The modular force multiplier as claimed in claim 3 further comprising a bumper mandrel connected to the work string connection sub, the bumper mandrel having a bumper mandrel socket end.

5. The modular force multiplier as claimed in claim 4 further comprising a bumper mandrel stop sub that reciprocates on the bumper mandrel between the work string connection sub and the bumper mandrel socket end.

6. The modular force multiplier as claimed in claim 5 further comprising a bumper mandrel sleeve connected to the bumper mandrel stop sub, the bumper mandrel sleeve defining a bumper mandrel chamber in which the bumper mandrel socket end reciprocates.

7. The modular force multiplier as claimed in claim 6 wherein a lower end of the bumper mandrel sleeve is connected to an upper sleeve connector thread of the sleeve connector.

8. The modular force multiplier as claimed in claim 3 further comprising an energizing transition sleeve connected to an upper end of the energizing cylinder sleeve.

9. The modular force multiplier as claimed in claim 8 wherein the energizing transition sleeve comprises a fluid sear that inhibits migration of contained fluid between a lower end of the energizing transition sleeve and the small piston sleeve.

10. The modular force multiplier as claimed in claim 9 wherein the sleeve connector comprises a fluid seal that inhibits migration of contained fluid between an upper end of the energizing transition sleeve and the sleeve connector.

11. The modular force multiplier as claimed in claim 10 further comprising an energizing selector sleeve connected to an upper end of the energizing transition sleeve.

12. The modular force multiplier as claimed in claim 11 further comprising anti-rotation grooves in an upper end of the energizing selector sleeve that receive anti-rotation studs in the work string connection sub to inhibit rotation of the energizing selector sleeve on the work string connection sub.

13. The modular force multiplier as claimed in claim 11 further comprising energizing activation bores in the energizing selector sleeve, and energizing key mechanisms in the work string connection sub having energizing keys that are forced into the energizing activation bores when adequate fluid pressure is pumped into a multipart mandrel central passage of the modular force multiplier, to selectively connect the energizing selector sleeve to the work string connection sub.

14. The modular force multiplier as claimed in claim 3 wherein the small piston comprises a small piston inner seal that provides a fluid seal between the small piston and the large piston mandrel, and a small piston outer seal that provides a fluid seal between the small piston and the small piston sleeve.

15. The modular force multiplier as claimed in claim 14 , wherein the small piston further comprises small piston fill bores and small piston fill plugs.

16. The modular force multiplier as claimed in claim 3 , wherein the large piston comprises a large piston seal that provides a fluid seal between the large piston and an inner surface of the large piston sleeve.

17. The modular force multiplier as claimed in claim 16 wherein the large piston further comprises pressure equalization bores that provide fluid communication with a multipart mandrel central passage of the modular force multiplier.

18. A modular force multiplier, comprising:

a work string connection sub;

a bumper mandrel connected to the work string connection sub, the bumper mandrel having a bumper mandrel socket end;

a bumper mandrel stop sub that reciprocates on the bumper mandrel between the work string connection sub and the bumper mandrel, socket end;

a bumper mandrel sleeve connected to a lower end of the bumper mandrel stop sub, the bumper mandrel sleeve defining a bumper mandrel chamber in which the bumper mandrel socket end reciprocates;

a sleeve connector connected to a lower end of the bumper mandrel sleeve;

a small piston sleeve connected on one end to the sleeve connector;

a large piston sleeve connected to an opposite end of the small piston sleeve;

a large piston adapted to reciprocate in a large piston chamber of the large piston sleeve, the large piston having a large piston mandrel that extends through central passages in the large piston sleeve and the sleeve connector;

a small piston adapted to reciprocate on the large piston mandrel between the sleeve connector and the large piston sleeve;

an energizing selector sleeve that reciprocates on a lower end of the work string connection sub and surrounds the bumper mandrel sleeve;

an energizing transition sleeve connected to a lower end of the energizing selector sleeve and surrounding the sleeve connector and the small piston sleeve, defining an energizing fluid chamber surrounding the small piston sleeve;

whereby urging the energizing selector sleeve to slide the energizing transition sleeve over the small piston sleeve forces contained fluid through ports in the small piston sleeve, to urge movement of the small piston, which forces contained fluid through ports in the large piston sleeve to urge corresponding movement of the large piston.

19. The modular force multiplier as claimed in claim 18 , further comprising at least one force multiplier module connected to the large piston sleeve, and the energizing transition sleeve.

20. The modular force multipliers as claimed in claim 19 wherein the force multiplier module comprises:

a second sleeve connector connected to a lower end, of the large piston sleeve;

a second small piston sleeve connected to a lower end to the second sleeve connector, the second small piston sleeve having at least one fluid port therethrough adjacent the second sleeve connector;

a second large piston sleeve connected to an opposite end of the second small piston sleeve, the second large piston sleeve having at least one fluid port adjacent a central passage;

a second large piston mandrel that extends through the central passage in the second large piston sleeve and a central passage in the second sleeve connector;

a second large piston on the second large piston mandrel;

a second small piston adapted to reciprocate on the second large piston mandrel between the second sleeve connector and the second large piston sleeve; and

an energizing cylinder sleeve that surrounds the second sleeve connector and the second small piston sleeve and defines a second energizing fluid chamber surrounding the second small piston sleeve.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2018
From: HRUPP, JOZE JOHN
To: EXACTA-FRAC ENERGY SERVICES, INC.
Reel/Frame 045817/0603 →
Continuity (1)
Related Publication 20190352987A1 · Nov 21, 2019