IP Library Granted Patent US 10,598,809
Granted Patent B2
US 10,598,809 · App. 15/622,197 · Granted Mar 24, 2020

Downhole electromagnetic sensing techniques

Inventors: Jung Kee Chung (Calgary, CA); Sameer Bhoite (Conroe, TX); Dean Homan (Sugar Land, TX); Edward Michael Tollefsen (Houston, TX); Jaroslav Dobos (Calgary, CA)
Assignee: SCHLUMBERGER TECHNOLOGY CORPORATION
G01V3/20G01V3/02G01V3/38
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Quick Facts
Patent No.
US 10,598,809
App. No.
15/622,197
Granted
Mar 24, 2020
Kind
B2
Abstract

An electromagnetic (EM) telemetry system includes an EM transmitter configured to transmit EM signals downhole and multiple sensors each configured to communicate with the EM transmitter and with another of the multiple sensors. Each sensor is placed a distance from another sensor along a length of a wellbore in the EM telemetry system. The EM telemetry system also includes a processor configured to select two or more sensors of the multiple sensors based on a signal to noise ratio (SNR) of an EM signal received from the two or more selected sensors, a depth of the EM transmitter, or both.

Claims (14)

1. An electromagnetic (EM) telemetry system comprising:

an EM transmitter configured to transmit EM telemetry signals downhole in a first wellbore;

multiple sensors located downhole in a second wellbore, each configured to communicate with the EM transmitter and with another of the multiple sensors, wherein each sensor of the multiple sensors is placed a distance from another sensor along a length of the second wellbore in the EM telemetry system; and

a processor configured to select two or more sensors of the multiple sensors based on a depth of the EM transmitter.

2. The EM telemetry system of claim 1 , wherein the multiple sensors are each in contact with an electrically-conductive member in the second wellbore.

3. The EM telemetry system of claim 2 , wherein the electrically-conductive member comprises a casing.

4. The EM telemetry system of claim 2 , wherein one or more of the multiple sensors comprise spring-loaded contact points configured to contact the electrically-conductive member.

5. The EM telemetry system of claim 1 , wherein the multiple sensors are each in contact with a formation in the second wellbore.

6. The EM telemetry system of claim 5 , wherein one or more of the multiple sensors comprise spring-loaded contact points configured to contact the formation.

7. The EM telemetry system of claim 1 , wherein one or more of the multiple sensors comprise wire clamp components, pressure sealing components, and insulated gap joints.

8. The EM telemetry system of claim 1 , wherein one or more of the multiple sensors comprise a cantilever arm and a return spring configured to make contact with a wall in the second wellbore.

9. The EM telemetry system of claim 1 , wherein the multiple sensors comprise electrodes, receivers, toroids, or combinations thereof.

10. The EM telemetry system of claim 1 , wherein the EM telemetry system further comprises a downhole decoder configured to decode the EM telemetry signal.

11. The EM telemetry system of claim 10 , wherein EM telemetry system further comprises a wireless transmitter to wirelessly transmit a decoded signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2019
From: CHUNG, JUNG KEE; BHOITE, SAMEER; HOMAN, DEAN; TOLLEFSEN, EDWARD MICHAEL; DOBOS, JAROSLAV
To: SCHLUMBERGER TECHNOLOGY CORPORATION
Reel/Frame 050467/0196 →
Continuity (2)
Provisional Application 62357094 · Jun 30, 2016
Related Publication 20180003849A1 · Jan 4, 2018
Cited By (1)
US 12,590,535