IP Library › Granted Patent US 10,683,703
Granted Patent B2
US 10,683,703 · App. 15/656,976 · Granted Jun 16, 2020

High power laser perforating and laser fracturing tools and methods of use

Inventors: Brian O. Faircloth (Evergreen, CO); Mark S. Zediker (Castle Rock, CO); Daryl L. Grubb (Houston, TX); Sam N. Schroit (Littleton, CO); Ronald A. De Witt (Katy, TX); Sharath K. Kolachalam (Highlands Ranch, CO); Paul D. Deutch (Houston, TX); Eugene J. Linyaev (Magnolia, TX)
Assignee: Foro Energy, Inc.
E21B7/15E21B43/26E21B43/162E21B49/00
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Quick Facts
Patent No.
US 10,683,703
App. No.
15/656,976
Granted
Jun 16, 2020
Kind
B2
Abstract

There are provided high power laser perforating tools and methods of delivering laser energy patterns that enhance the flow of energy sources, such as hydrocarbons, from a formation into a production tubing or collection system. These tools and methods precisely deliver predetermined laser beam energy patterns, to provide for custom geometries in a formation. The patterns and geometries are tailored and customized to the particular geological and structural features of a formation and reservoir.

Claims (29)

1. A method of enhancing fluid communication between a borehole and a formation in the earth, the method comprising:

a. positioning a high power laser tool in a predetermined location within a borehole in a formation;

b. the laser tool in optical communication with a source of a high power laser beam, wherein the laser beam has a power from 10 to 40 kW;

c. delivering the high power laser beam in a predetermined laser beam delivery pattern to the formation; wherein, the laser beam delivery pattern comprises a plurality of laser beam perforation patterns;

d. wherein the location and shape of the laser beam perforation patterns is based at least in part on geological properties of the formation; and,

e. whereby the laser beam delivery pattern creates a custom geometry in the formation enhancing fluid communication between the borehole and the formation.

2. The method of claim 1 , wherein the laser tool comprises an optics package having a compound optics system; the compound optics systems comprising a main body, an adjustment body and a fixed ring.

3. The method of claim 1 , wherein the compound optics system can be adjusted to a focal length of 1,000 mm.

4. The method of claim 1 , wherein the custom geometry in the formation comprises longitudinal slots.

5. The method of claim 1 , wherein the custom geometry in the formation comprises pie shapes.

6. The method of claim 1 , wherein the custom geometry in the formation comprises a plurality of pie shapes spaced along the length of the borehole.

7. The method of claim 1 , wherein the custom geometry in the formation comprises a longitudinal slot in a pie shape.

8. The method of claim 1 , wherein the custom geometry in the formation comprises a disk shape.

9. The method of claim 1 , wherein the custom geometry in the formation comprises laser induced fracturing.

10. A well, wherein the well is made by the method comprising:

a. obtaining data about the geological properties of the formation containing the hydrocarbon reservoir;

b. obtaining a hydraulic fracturing plan for the formation;

c. inserting a high power laser tool into a borehole, and advancing the laser tool to a predetermined location within the borehole;

d. placing the laser tool in optical and control communication with a high power laser delivery system;

e. based, at least in part, on the formation data and the hydraulic fracturing plan, determining a laser energy delivery pattern; wherein, the laser energy delivery pattern comprises a plurality of laser perforations for predetermined locations in the formation;

f. the laser delivery system and laser tool delivering the laser energy delivery pattern to the predetermined location within the borehole; and,

g. hydraulic fracturing the formation based, at least in part, upon the hydraulic fracturing plan;

h. whereby, the laser energy creates the custom geometry in the formation enhancing the hydraulic fracturing of the formation and thereby, enhancing the fluid communication between the borehole and the hydrocarbon reservoir in the formation.

11. A well, wherein the well is made by the method comprising:

a. positioning a high power laser tool in a predetermined location within the borehole in the formation;

b. the laser tool in optical communication with a source of a high power laser beam, wherein the laser beam has a power from 10 to 40 kW;

c. delivering the high power laser beam in a predetermined laser beam delivery pattern to the formation; wherein, the laser beam delivery pattern comprises a plurality of laser beam perforation patterns;

d. wherein the location and shape of the laser beam perforation patterns is based at least in part on geological properties of the formation; and,

e. whereby the laser beam delivery pattern creates the custom geometry in the formation enhancing fluid communication between the borehole and the formation.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2019
From: LINYAEV, EUGENE J; ZEDIKER, MARK S; GRUBB, DARYL L; KOLACHALAM, SHARATH K; DEUTCH, PAUL D; FAIRCLOTH, BRIAN O
To: FORO ENERGY, INC.
Reel/Frame 050494/0472 →
EMPLOYEE AGREEMENT Recorded Sep 26, 2019
From: SCHROIT, SAM
To: FORO ENERGY, INC.
Reel/Frame 050494/0520 →
Continuity (8)
Continuation 13782869 · Mar 1, 2013
Continuation In Part 13222931 · Aug 31, 2011
Continuation In Part 12543986 · Aug 19, 2009
Provisional Application 61605429 · Mar 1, 2012
Provisional Application 61727096 · Nov 15, 2012
Provisional Application 61378910 · Aug 31, 2010
Provisional Application 61090384 · Aug 20, 2008
Related Publication 20170321486A1 · Nov 9, 2017
Cited By (5)
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