IP Library › Granted Patent US 12,473,820
Granted Patent B2
US 12,473,820 · App. 18/340,603 · Granted Nov 18, 2025

Indirect detection of bending of a collar

Inventors: Joachim Sihler (Cambridge, GB); John George Allen Charlesworth (Cambridge, GB); Adam Ian Bowler (Cambridge, GB); Michael Hayes Kenison (Richmond, TX); John Mervyn Cook (Cambridge, GB)
Assignee: Schlumberger Technology Corporation
E21B47/007E21B44/005E21B47/017E21B47/135E21B41/0085
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Quick Facts
Patent No.
US 12,473,820
App. No.
18/340,603
Granted
Nov 18, 2025
Kind
B2
Abstract

A drilling system includes an internal assembly comprising a chassis, a flow diverter, or both, and a strain gauge coupled to the chassis, the flow diverter, or both, in which the strain gauge is configured to output a signal associated with a strain deformation of the internal assembly. The drilling system also includes a drill collar coupled to the internal assembly, in which the internal assembly extends along the drill collar, and the drill collar encloses the internal assembly of the internal assembly such that a strain deformation of the drill collar causes the strain deformation of the internal assembly.

Claims (12)

1 . A drilling system, comprising:

an internal assembly comprising:

a chassis enclosing an instrumentation device of the drilling system; and

a strain gauge coupled to the chassis, the strain gauge being configured to output a signal associated with a strain deformation of the internal assembly:

a drill collar coupled to and enclosing the internal assembly such that a strain deformation of the drill collar causes the strain deformation of the internal assembly; and

a drill bit coupled to the drill collar, the chassis including a flow diverter configured to direct fluid moving through the drilling system and toward the drill bit, away from the instrumentation device.

2 . The drilling system of claim 1 , the flow diverter being a lower flow diverter positioned in a near-bit position or an upper flow diverter positioned near a power generation turbine.

3 . The drilling system of claim 1 , the strain gauge being coupled to a rod within the chassis.

4 . The drilling system of claim 1 , the strain gauge including an out-of-plane bending strain gauge measuring out-of-plane strain deformation of the electronics board, and isolated from torsion, in-plane bending, and axial strain deformation of the electronics board.

5 . The drilling system of claim 1 , the strain gauge including an axial strain gauge measuring axial strain deformation of the electronics board, and isolated from torsion, out-of-plane bending, and in-plane bending of the electronics board.

6 . The drilling system of claim 1 , the instrumentation device including an electronics board within the chassis, the electronics board being coupled to the strain gauge configured to receive the signal from the strain gauge indicative of the strain deformation of the internal assembly.

7 . The drilling system of claim 6 , the strain gauge including an in-plane bending strain gauge measuring in-plane strain deformation of the electronics board, and isolated from torsion, out-of-plane bending, and axial strain deformation of the electronics board.

Continuity (3)
Division 16942820 · Jul 30, 2020
Provisional Application 62880918 · Jul 31, 2019
Related Publication 20230332496A1 · Oct 19, 2023
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