IP Library Granted Patent US 12,723,506
Granted Patent B2
US 12,723,506 · App. 18/642,512 · Granted Sep 1, 2026

Localizing a tool in a tubular conduit

Inventor: Thomas Hillman (Missouri City, TX)
Assignee: Saudi Arabian Oil Company
E21B47/092G01N27/825
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Quick Facts
Patent No.
US 12,723,506
App. No.
18/642,512
Granted
Sep 1, 2026
Kind
B2
Abstract

A pipeline tool includes a body, a magnet disposed at the body, one or more sensors disposed at the body, and a controller disposed at the body. The one or more sensors measure at least one force of attraction generated between the magnet and a ferromagnetic material of a tubular conduit. The controller performs operations which include determining, based on the force of attraction, a position of the pipeline tool within a cross-section of the tubular conduit relative to a wall of the tubular conduit within the cross-section.

Claims (51)

1 . A pipeline tool, comprising:

a body;

a magnet disposed at the body;

one or more sensors disposed at the body and configured to measure at least one force of attraction generated between the magnet and a ferromagnetic material of a tubular conduit; and

a controller disposed at the body and configured to perform operations comprising determining, based on the force of attraction, a position of the pipeline tool within a cross-section of the tubular conduit relative to a wall of the tubular conduit within the cross-section.

2 . The pipeline tool of claim 1 , wherein the magnet and the controller are detachably mounted to the body.

3 . The pipeline tool of claim 1 , wherein the one or more sensors is configured to measure the force of attraction in a plurality of directions, and the operations comprise determining the position of the pipeline tool based on the force of attraction in the plurality of directions.

4 . The pipeline tool of claim 1 , wherein the operation of determining the position of the pipeline tool comprises:

determining, based on the force of attraction, a distance of the body from a radial surface of the tubular conduit.

5 . The pipeline tool of claim 1 , wherein the operation of determining the position of the pipeline tool comprises:

determining, based on a correlation of (i) the force of attraction, (ii) a radius of the cross-section, and (iii) a type of the magnet, a distance of the body from a radial surface of the tubular conduit.

6 . The pipeline tool of claim 5 , wherein the operation of determining the distance of the body from the radial surface of the tubular conduit comprises:

determining, based on an equation:

F

=

c

d

2

,

 the distance of the body from the radial surface of the tubular conduit, wherein F corresponds to the force of attraction, c corresponds to a coupling constant correlated with at least the type of the magnet and the radius of the cross-section, and d corresponds to the distance of the body from the radial surface of the tubular conduit.

7 . The pipeline tool of claim 1 , wherein the position of the pipeline tool corresponds to an x-y coordinate of the cross-section.

8 . The pipeline tool of claim 1 , wherein the operations comprise determining, based on the force of attraction, a corrosion at a particular location of the tubular conduit.

9 . The pipeline tool of claim 8 , wherein the operation of determining the corrosion comprises determining, based on the pipeline tool traversing within the tubular conduit, a discrepancy of the force of attraction over a time period.

10 . The pipeline tool of claim 9 , wherein the operation of determining the discrepancy of the force of attraction over the time period comprises:

plotting a graph of force relative to at least one of (i) a vertical position of the pipeline tool within the tubular conduit or (ii) a time.

11 . The pipeline tool of claim 9 , wherein the operations comprise:

communicating data with a control system located outside the tubular conduit, the control system configured to output a warning responsive to determination of the corrosion.

12 . A method comprising:

measuring, by a pipeline tool equipped with a magnet and one or more sensors, at least one force of attraction generated between the magnet and ferromagnetic material of a tubular conduit; and

determining, based on the force of attraction and by the pipeline tool, a position of the pipeline tool within a cross-section of the tubular conduit relative to a wall of the tubular conduit within the cross-section.

13 . The method of claim 12 , wherein the one or more sensors is configured to measure the force of attraction in a plurality of directions, and determining the position of the pipeline tool comprises determining the position based on the force of attraction in the plurality of directions.

14 . The method of claim 12 , wherein determining the position of the pipeline tool comprises:

determining, based on the force of attraction, a distance of the pipeline tool from a radial surface of the tubular conduit.

15 . The method of claim 12 , wherein determining the position of the pipeline tool comprises:

determining, based on a correlation of (i) the force of attraction, (ii) a radius of the cross-section, and (iii) a type of the magnet, a distance of the pipeline tool from a radial surface of the tubular conduit.

16 . The method of claim 15 , wherein determining the distance of the pipeline tool from the radial surface of the tubular conduit comprises:

determining, based on an equation

F

=

c

d

2

,

 the distance of the pipeline tool from the radial surface of the tubular conduit, wherein F corresponds to the force of attraction, c corresponds to coupling constant correlated with at least the type of the magnet and the radius of the cross-section, and d corresponds to the distance of the pipeline tool from the radial surface of the tubular conduit.

17 . The method of claim 12 , wherein the position of the pipeline tool corresponds to an x-y coordinate of the cross-section.

18 . The method of claim 12 , further comprising:

determining, based on the force of attraction and by the pipeline tool, a corrosion at a particular location of the tubular conduit.

19 . The method of claim 18 , wherein determining the corrosion comprises:

based on the pipeline tool traversing within the tubular conduit, determining a discrepancy of the force of attraction over a time period.

20 . The method of claim 19 , wherein determining the discrepancy of the force of attraction comprises:

plotting a graph of force relative to a vertical position of the pipeline tool within the tubular conduit or time.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 14, 2024
From: ARAMCO SERVICES COMPANY
To: SAUDI ARAMCO UPSTREAM TECHNOLOGY COMPANY
Reel/Frame 067406/0929 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 14, 2024
From: SAUDI ARAMCO UPSTREAM TECHNOLOGY COMPANY
To: SAUDI ARABIAN OIL COMPANY
Reel/Frame 067407/0365 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 23, 2024
From: HILLMAN, THOMAS
To: ARAMCO SERVICES COMPANY
Reel/Frame 067197/0297 →
Continuity (1)
Related Publication 20250382871A1 · Dec 18, 2025
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