IP Library › Granted Patent US 9,765,595
Granted Patent B2
US 9,765,595 · App. 14/350,918 · Granted Sep 19, 2017

Wellbore actuators, treatment strings and methods

Inventors: Daniel Jon Themig (Calgary, CA); Robert Joe Coon (Missouri City, TX)
Assignee: Packers Plus Energy Services Inc.
E21B34/14E21B33/12E21B34/063E21B43/12E21B43/14E21B2034/007
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Quick Facts
Patent No.
US 9,765,595
App. No.
14/350,918
Granted
Sep 19, 2017
Kind
B2
Abstract

A wellbore tubing string assembly comprises: a string including an inner bore having an inner diameter and a plurality of tools installed along the string including a first tool and a second tool axially offset from the first tool along the string; the first tool includes: a first sleeve in the inner bore having an inner surface, the inner surface defining a first restriction diameter smaller than the inner diameter; a first sensor mechanism in communication with the first sleeve and responsive to an application of force against the first sleeve; the second tool includes; a second sleeve in the inner bore having an inner wall surface, the inner wall surface defining a second restriction diameter smaller than the inner diameter; a second sensor mechanism in communication with the second sleeve and responsive to an application of force against the second sleeve; and a sealing device having a diameter greater than the second restriction diameter and being deformable to be pushable through the second restriction diameter to apply a force against the second sleeve.

Claims (13)

1. A wellbore tubing string assembly comprising:

a string including an inner bore having an inner diameter and a first tool and a second tool installed along the string with the second tool axially offset from the first tool along the string;

the first tool including: a first sleeve slideably disposed in the inner bore, the first sleeve having an inner surface, the inner surface defining a first deformable restriction diameter smaller than the inner diameter, the first deformable restriction diameter configured to receive and be actuated by passage of an elastically deformable sealing device travelling through the first deformable restriction diameter in a downhole direction and the first sleeve being reconfigurable through an inactive condition and into an active condition; an indexing mechanism coupled to the first sleeve; and a first sensor mechanism in communication with the first sleeve and responsive to an application of force applied against the first sleeve by the elastically deformable sealing device, wherein upon detection of the application of force, the first sensor permits the first sleeve to move into the inactive condition; and

the second tool including; a second sleeve slideably disposed in the inner bore, the second sleeve having an inner wall surface, the inner wall surface defining a second restriction diameter smaller than the inner diameter; and a second sensor mechanism in communication with the second sleeve and responsive to a force applied against the second sleeve; and

a third sliding sleeve uphole of the first sleeve, the third sliding sleeve having an inner diameter larger than the first deformable restriction diameter and the elastically deformable sealing device passes readily through the third sleeve to arrive at the first restriction diameter;

wherein the indexing mechanism and the first sensor, are configured to respond to passage of the elastically deformable sealing device travelling in the downhole direction and deforming and squeezing through the first deformable restriction diameter to create the application of force against the first sleeve to thereby move the first sleeve through the inactive condition, and

wherein the second sleeve is configured for receipt and actuation by the elastically deformable sealing device after passage through the first sleeve; and

wherein the indexing mechanism and the first sensor are further configured to respond to arrival of a second elastically deformable sealing device, after passage of the elastically deformable sealing device, to create another application of force against the first sleeve to thereby move the first sleeve from the inactive condition to the active condition.

2. The wellbore tubing string assembly of claim 1 wherein the elastically deformable sealing device is a ball.

3. The wellbore tubing string assembly of claim 1 wherein the elastically deformable sealing device has an interference fit with the first restriction diameter of at least 0.005″.

4. The wellbore tubing string assembly of claim 1 wherein the second tool is actuated by the elastically deformable sealing device, wherein the elastically deformable sealing device elastically reforms to its original shape and size after passage through the first sleeve and the second tool is configured to receive the elastically deformable sealing device and is actuated by the elastically deformable sealing device deforming, squeezing through and thereby applying a force against the second restriction diameter.

5. The wellbore tubing string assembly of claim 1 wherein the first sleeve covers a port in the tubing string wall and wherein in the active condition, the first sleeve has moved to expose the port to the inner diameter.

6. The wellbore tubing string assembly of claim 5 wherein the port has positioned therein a flow limiting insert.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 15, 2014
From: THEMIG, DANIEL JON; COON, ROBERT JOE
To: PACKERS PLUS ENERGY SERVICES INC.
Reel/Frame 032677/0028 →
Continuity (2)
Provisional Application 61545818 · Oct 11, 2011
Related Publication 20140246209A1 · Sep 4, 2014