IP Library › Granted Patent US 9,507,045
Granted Patent B2
US 9,507,045 · App. 14/109,242 · Granted Nov 29, 2016

Basalt fiber composite for antenna in well-logging

Inventors: Frank Espinosa (Sugar Land, TX); Golchehreh Salamat (Sugar Land, TX); Alexander Marks (Houston, TX); Frederic Pauchet (Montigny-sur-Loing, FR)
Assignee: SCHLUMBERGER TECHNOLOGY CORPORATION
G01V3/26E21B47/102G01V3/12G01V3/18G01V13/00Y10T29/49018
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Quick Facts
Patent No.
US 9,507,045
App. No.
14/109,242
Granted
Nov 29, 2016
Kind
B2
Abstract

A well-logging tool for a geological formation includes a housing to be positioned in a borehole and an antenna assembly carried by the housing. The antenna assembly includes an antenna housing having a recess therein. A dielectric material layer comprises a basalt fiber composite and is within the recess. At least one antenna coil is supported by the dielectric material layer. An electrical connector is coupled to the at least one antenna coil. Resistivity processing circuitry is coupled to the electrical connector to determine an electrical resistivity of the geological formation based on the at least one antenna coil.

Claims (44)

1. A well-logging tool for a geological formation having a borehole therein, comprising:

a housing to be positioned within the borehole;

an antenna assembly carried by the housing and comprising

an antenna housing having a recess therein,

a dielectric material layer comprising a basalt fiber composite within the recess;

at least one antenna coil supported by the dielectric material layer,

an electrical connector coupled to the at least one antenna coil,

wherein said dielectric material layer is configured to prevent fluid leakage to the antenna coil and/or electrical connector when the well-logging tool is operated at a downhole temperature higher than 175° C.; and

resistivity processing circuitry coupled to the electrical connector to determine an electrical resistivity of the geological formation based upon the at least one antenna coil.

2. The well-logging tool according to claim 1 , wherein said electrical connector comprises an electrical feedthrough supported by the antenna housing.

3. The well-logging tool according to claim 2 , wherein said antenna housing has a feedthrough port formed therein receiving the electrical feedthrough.

4. The well-logging tool according to claim 1 , wherein the basalt fiber composite comprises a thermoset resin and basalt fibers mixed therewith.

5. The well-logging tool according to claim 4 , wherein said thermoset resin comprises an epoxy resin.

6. The well-logging tool according to claim 5 , wherein said thermoset resin comprises a ceramic material.

7. The well-logging tool according to claim 1 , wherein the basalt fiber composite comprises a thermoplastic material having basalt fibers mixed therewith.

8. The well-logging tool according to claim 7 , wherein the thermoplastic material comprises PEEK (Polyether ether ketone).

9. An antenna for a well-logging tool, comprising:

a housing;

an antenna assembly carried by the housing and comprising

an antenna housing having a recess therein,

a dielectric material layer comprising a basalt fiber composite within the recess,

at least one antenna coil supported by the dielectric material layer,

an electrical connector coupled to the at least one antenna coil,

wherein said dielectric material layer is configured to prevent fluid leakage to the antenna coil and/or electrical connector when the antenna is operated at a downhole temperature higher than 175° C.; and

resistivity processing circuitry coupled to the electrical connector to determine an electrical resistivity of the geological formation based upon the at least one antenna coil.

10. The antenna according to claim 9 , wherein said electrical connector comprises an electrical feedthrough supported by the antenna housing.

11. The antenna according to claim 9 , wherein said antenna housing has a feedthrough port formed therein receiving the electrical feedthrough.

12. The antenna according to claim 9 , wherein the basalt fiber composite comprises a thermoset resin and basalt fibers mixed therewith.

13. The antenna according to claim 12 , wherein said thermoset resin comprises an epoxy resin.

14. A method for making a well-logging tool for a geological formation having a borehole therein, comprising:

forming a housing to be positioned within the borehole;

positioning an antenna assembly within the housing and comprising

an antenna housing having a recess therein,

a dielectric material layer comprising a basalt fiber composite within the recess,

at least one antenna coil supported by the dielectric material layer,

an electrical connector coupled to the at least one antenna coil,

wherein said dielectric material layer is configured to prevent fluid leakage to the antenna coil and/or electrical connector when the well-logging tool is operated at a downhole temperature higher than 175° C.; and

coupling resistivity processing circuitry to the electrical connector to determine an electrical resistivity of the geological formation based upon the at least one antenna coil.

15. The method according to claim 14 , wherein the antenna housing has a feedthrough port formed therein receiving an electrical feedthrough.

16. The method according to claim 14 , wherein the basalt fiber composite comprises a thermoset resin and basalt fibers mixed therewith.

17. The method according to claim 16 , wherein the thermoset resin comprises an epoxy resin.

18. The method according to claim 17 , wherein the thermoset resin comprises a ceramic material.

19. The method according to claim 14 , wherein the basalt fiber composite comprises a thermoplastic material having basalt fibers mixed therewith.

20. The method according to claim 19 , wherein the thermoplastic material comprises PEEK (Polyether ether ketone).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2014
From: ESPINOSA, FRANK; SALAMAT, GOLCHEHREH; MARKS, ALEXANDER; PAUCHET, FREDERIC
To: SCHLUMBERGER TECHNOLOGY CORPORATION
Reel/Frame 032449/0325 →
Continuity (2)
Provisional Application 61738909 · Dec 18, 2012
Related Publication 20140176139A1 · Jun 26, 2014