Claims
- 1. A resistivity tool for investigating a wall of a borehole drilled with a non-conductive mud, comprising:
a tool body adapted to be incorporated in a logging-while-drilling tool assembly; a resistivity sensor disposed on the tool body, wherein the resistivity sensor comprises a sensor pad supporting a current injector electrode, a current return electrode, and an array of measurement electrodes; and a circuitry for controlling current injection from the current injector electrode and for measuring voltage difference between electrodes in the array of measurement electrodes,
wherein the array of measurement electrodes is disposed between the current injector electrode and the current return electrode, wherein the sensor pad is constructed of an insulating material and includes a conductive member.
- 2. The tool of claim 1, wherein the conductive member in the sensor pad is configured to have a potential substantially identical to a potential of the wall of the borehole.
- 3. The tool of claim 1, wherein the conductive member in the sensor pad is grounded to a potential of the wall of the borehole.
- 4. The tool of claim 1, wherein the resistivity sensor is disposed in a recess on the tool body such that the resistivity sensor does not touch the wall of the borehole when the tool body is pressed against the wall of the borehole.
- 5. The tool of claim 4, wherein a length of the recess is at least twice a length of the sensor pad along a longitudinal axis of the tool body.
- 6. The tool of claim 1, wherein the tool body comprises two standoff bands such that the resistivity sensor does not touch the wall of the borehole when the tool body is pressed against the wall of the borehole.
- 7. The tool of claim 6, wherein at least one of the two standoff bands is constructed of a conductive material to provide a conductive link for grounding the conductive member in the sensor pad to a formation potential.
- 8. The tool of claim 1, wherein the resistivity sensor is disposed on a depolyable pad on a tool body.
- 9. The tool of claim 1, wherein the resistivity sensor is disposed on a part of the tool body that does not rotate with a drill string during a drilling operation.
- 10. The tool of claim 1, wherein the resistivity sensor is disposed on a part of the tool body that rotates with a drill string during a drilling operation.
- 11. the tool of claim 1, wherein the array of measurement electrodes are configured to provide formation voltage measurements in two substantially orthogonal directions.
- 12. A resistivity tool for investigating a wall of a borehole drilled with a non-conductive mud, comprising:
a tool body adapted to be incorporated in a logging-while-drilling tool assembly; a resistivity sensor disposed on the tool body, wherein the resistivity sensor comprises a conductive sensor pad supporting a current injector electrode, a current return electrode, and an array of measurement electrodes, wherein the current injector electrode, the current return electrode, and the array of measurement electrodes are insulated from the conductive sensor pad; and a circuitry for controlling current injection from the current injector electrode and for measuring voltage difference between electrodes in the array of measurement electrodes,
wherein the array of measurement electrodes is disposed between the current injector electrode and the current return electrode.
- 13. The tool of claim 12, wherein the conductive sensor pad is configured to have a potential substantially identical to a potential of the wall of the borehole.
- 14. The tool of claim 12, wherein the conductive sensor pad is grounded to a potential of the wall of the borehole.
- 15. The tool of claim 12, wherein the resistivity sensor is disposed in a recess on the tool body such that the resistivity sensor does not touch the wall of the borehole when the tool body is pressed against the wall of the borehole.
- 16. The tool of claim 15, wherein a length of the recess is at least twice a length of the sensor pad along a longitudinal axis of the tool body.
- 17. The tool of claim 12, wherein the tool body comprises two standoff bands such that the resistivity sensor does not touch the wall of the borehole when the tool body is pressed against the wall of the borehole.
- 18. The tool of claim 17, wherein at least one of the two standoff bands is constructed of a conductive material to provide a conductive link for grounding the conductive member in the sensor pad to a formation potential.
- 19. The tool of claim 12, wherein the resistivity sensor is disposed on a deployable pad on a tool body.
- 20. The tool of claim 12, wherein the resistivity sensor is disposed on a part of the tool body that does not rotate with a drill string during a drilling operation.
- 21. The tool of claim 12, wherein the resistivity sensor is disposed on a part of the tool body that rotates with a drill string during a drilling operation.
- 22. The tool of claim 12, wherein the array of measurement electrodes are configured to provide formation voltage measurements in two substantially orthogonal directions.
- 23. The tool of claim 12, wherein the conductive sensor pad is insulated from the tool body.
Priority Claims (1)
Number |
Date |
Country |
Kind |
FR20000004527 |
Apr 2000 |
FR |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a Continuation-In-Part of U.S. patent application Ser. No. 10/240,639, “Logging Sonde For Electrically Exploring Geological Formations Through Which A Borehole Passes,” filed on Mar. 4, 2003 by Cheung et al., which claims priority from PCT Application PCT/EP01/03718 filed on Mar. 29, 2001 and claims priority from French Application No. FR20000004527 filed on Apr. 7, 2000.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10240639 |
Mar 2003 |
US |
Child |
10844173 |
May 2004 |
US |