IP Library Granted Patent US 10,227,866
Granted Patent B2
US 10,227,866 · App. 14/386,435 · Granted Mar 12, 2019

Method and system for alignment of a wellbore completion

Inventors: Øivind Godager (Sandefjord, NO); Fan-nian Kong (Oslo, NO); Bruce H. Storm, Jr. (Houston, TX)
Assignee: HALLIBURTON AS
E21B47/0905E21B19/00E21B43/10
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Quick Facts
Patent No.
US 10,227,866
App. No.
14/386,435
Granted
Mar 12, 2019
Kind
B2
Abstract

Wireless downhole sensor technology is being deployed in oil and gas wells. System components are inductively coupled, which enables remote placement of apparatus on the outside of wellbore conduit without the need for any wired connection. These systems make use of a pair of conductive elements that need to be aligned in the well. Embodiments of the present invention provide techniques to correctly space out the wellbore completion string so that the down-hole conductive elements will be properly aligned and within proximity to establish wireless connectivity, as the wellbore completion string is set and the tubing hanger is landed inside the wellhead housing of the well.

Claims (48)

1. A method for deploying a wellbore completion string in a wellbore, the method comprising:

positioning the wellbore completion string in the wellbore, wherein the wellbore completion string has a length and comprises an inductive element coaxially that is positioned on an outside surface of the wellbore completion string and that is in communication with a surface device;

detecting a change in inductance of the inductive element as the inductive element comes into proximity with a first element;

determining a position of the first element in the wellbore;

calculating a remaining length for deploying the wellbore completion string in the wellbore to a second element, wherein the remaining length is based on a distance between the first element and the second element in the wellbore;

adjusting the length of the wellbore completion string based on the remaining length for deploying the wellbore completion string in the wellbore to the second element; and

landing, relative to the wellbore, the wellbore completion string while the wellbore completion string is at the adjusted length;

wherein landing the wellbore completion string comprises landing an upper portion of the wellbore completion string in a wellhead housing,

wherein adjusting the length of the wellbore completion string comprises adding a plurality of tubular segments to the upper portion of the wellbore completion string; and

wherein detecting the change in inductance, determining the position of the first element in the wellbore, calculating the remaining length, adjusting the length of the wellbore completion string based on the remaining length, and landing the completion string occurs during a one-way continuous movement without any reversing action of the wellbore completion string.

2. The method of claim 1 , wherein determining the position of the first element in the wellbore comprises:

determining a position at which the inductive element detects the change in inductance to be the position of the first element.

3. The method of claim 2 , further comprising:

aligning the inductive element located on the wellbore completion string with the second element in the wellbore.

4. The method of claim 3 , wherein the inductive element located on the wellbore completion string generates a magnetic field that is inductively coupled to the second element in the wellbore as the inductive element aligns with the second element.

5. The method of claim 1 , wherein aligning the inductive element located on the wellbore completion string and landing the upper portion of the wellbore completion string is based on the adjusted length of the wellbore completion string.

6. The method of claim 5 , wherein adjusting the length of the wellbore completion string comprises increasing the length of the wellbore completion string in order to align the inductive element located on the wellbore completion string and land the upper portion of the wellbore completion string.

7. The method of claim 1 , wherein adjusting the length of the wellbore completion string comprises increasing the length of the wellbore completion string by an amount equal to the distance between the first and second elements in the wellbore.

8. The method of claim 1 , wherein the first element in the wellbore comprises a difference in thickness between two casing segments disposed in the wellbore, a difference in radii between the two casing segments, a difference in magnetic permeability between the two casing segments, an inductive element, or a permanent magnet.

9. The method of claim 1 , wherein a position of the second element in the wellbore is known relative to the determined position of the first element in the wellbore.

10. The method of claim 1 , wherein the detecting of the first element in the wellbore further comprises detecting a change in magnetic permeability.

11. A method for deploying a wellbore completion string in a wellbore, the method comprising:

detecting a change in inductance of a magnetic dipole as the magnetic dipole comes into proximity with a first element, the magnetic dipole being an inductive coil axially wound over a section of the wellbore completion;

determining a position of the first element in the wellbore;

calculating a remaining length for deploying the wellbore completion string in the wellbore to a second element including an external magnetic dipole, wherein the remaining length is based on a distance between the first element and the second element in the wellbore;

adjusting a length of the wellbore completion string based on the remaining length for deploying the wellbore completion string in the wellbore to the second element; and

landing, relative to the wellbore, the wellbore completion string thereby aligning the magnetic dipole with the external magnetic dipole;

wherein landing the wellbore completion string comprises landing an upper portion of the wellbore completion string in a wellhead housing,

wherein adjusting the length of the wellbore completion string comprises adding a plurality of tubular segments to the upper portion of the wellbore completion string; and

wherein detecting the change in inductance, determining the position of the first element in the wellbore calculating the remaining length, adjusting the length of the wellbore completion string based on the remaining length, and landing the completion string occurs during a one-way continuous movement without any reversing action of the wellbore completion string.

12. The method of claim 11 , wherein determining the position of the first element in the wellbore comprises:

determining a position at which the magnetic dipole detects the change in inductance to be the position of the first element.

13. The method of claim 12 , further comprising:

aligning the magnetic dipole located on the wellbore completion string with the second element in the wellbore.

14. The method of claim 13 , wherein the magnetic dipole located on the wellbore completion string generates a magnetic field that is inductively coupled to the second element in the wellbore as the magnetic dipole aligns with the second element.

15. A method for deploying a wellbore completion string in a wellbore, the method comprising:

detecting a change in inductance of a magnetic dipole as the magnetic dipole comes into proximity with a first element, the magnetic dipole coaxially positioned on an outside surface of the wellbore completion string and in communication with a surface device via a cable providing electric power from the surface device to the magnetic dipole:

determining a position of the first element in the wellbore:

calculating a remaining length for deploying the wellbore completion string in the wellbore to a second element, wherein the remaining length is based on a distance between the first element and the second element in the wellbore;

adjusting a length of the wellbore completion string based on the remaining length for deploying the wellbore completion string in the wellbore to the second element; and

landing, relative to the wellbore, the wellbore completion string;

wherein landing the wellbore completion string comprises landing an upper portion of the wellbore completion string in a wellhead housing,

wherein adjusting the length of the wellbore completion string comprises adding a plurality of tubular segments to the upper portion of the wellbore completion string; and

wherein detecting the change in inductance, determining the position of the first element in the wellbore, calculating the remaining length, adjusting the length of the wellbore completion string based on the remaining length, and landing, the completion string occurs during a one-way continuous movement without any reversing action of the wellbore completion string.

16. The method of claim 15 , wherein determining the position of the first element in the wellbore comprises:

determining a position at which the magnetic dipole detects the change in inductance to be the position of the first element.

17. The method of claim 16 , wherein landing, the wellbore completion string aligns the magnetic dipole located on the wellbore completion string with the second element in the wellbore.

18. The method of claim 17 , wherein the magnetic dipole located on the wellbore completion string generates a magnetic field that is inductively coupled to the second element in the wellbore as the magnetic dipole aligns with the second element.

Assignments (3)
MERGER Recorded Jun 27, 2018
From: SENSOR DEVELOPMENTS AS
To: HALLIBURTON AS
Reel/Frame 046214/0728 →
MERGER Recorded Jun 7, 2018
From: SENSOR DEVELOPMENTS AS
To: HALLIBURTON AS
Reel/Frame 046012/0637 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2014
From: GODAGER, OIVIND; KONG, FAN-NIAN; STORM, BRUCE H., JR.
To: SENSOR DEVELOPMENTS AS
Reel/Frame 033795/0867 →
Priority Claims (1)
NO 20120331 · Mar 20, 2012 · national
Continuity (2)
Provisional Application 61613268 · Mar 20, 2012
Related Publication 20150047839A1 · Feb 19, 2015
Cited By (1)
US 12,385,342