IP Library Granted Patent US 9,708,903
Granted Patent B2
US 9,708,903 · App. 14/649,507 · Granted Jul 18, 2017

Back up directional and inclination sensors and method of operating same

Inventors: David A. Switzer (Calgary, CA); Aaron W. Logan (Calgary, CA); Jili Liu (Calgary, CA); Mojtaba Kazemi Miraki (Calgary, CA)
Assignee: EVOLUTION ENGINEERING INC.
E21B47/024E21B47/011E21B47/12G01P15/00G01P15/18
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Quick Facts
Patent No.
US 9,708,903
App. No.
14/649,507
Granted
Jul 18, 2017
Kind
B2
Abstract

The embodiments described herein generally relate to a method and apparatus for providing a back up system of Directional and Inclination (D&I) information to be gathered and transmitted in addition to primary D&I sensors currently employed in industry. A downhole probe assembly including primary sensors, back up sensors and a controller is disclosed. The primary sensors comprise primary accelerometers and primary magnetometers configured to gather information relating to each of orthogonal axes X, Y and Z. The back up sensors comprise back up accelerometers configured to gather information relating to each of orthogonal axes X, Y and Z, the back up accelerometers being solid state accelerometers. The controller is in electrical communication with the primary sensors and the back up sensors. The controller is configured to receive and process information from the primary sensors and the back up sensors so that information from the back up accelerometers can be used when one or more of the primary accelerometers fail, which may allow drilling operations to continue despite such failure.

Claims (23)

1. A downhole probe assembly comprising:

(a) primary sensors comprising primary accelerometers and primary magnetometers configured to gather information relating to each of orthogonal axes X, Y and Z;

(b) back up sensors comprising back up solid state accelerometers configured to gather information relating to each of orthogonal axes X, Y and Z;

(c) a controller in electrical communication with the primary sensors and the back up sensors, the controller configured to receive and process information from the primary sensors and the back up sensors so that information from the back up accelerometers can be used when one or more of the primary accelerometers fails; and

(d) a downhole probe assembly module comprising a longitudinally extending housing enclosing a body and an end cap structure positioned at one end of the housing, wherein the body forms part of the end cap structure and extends into a portion of the housing and the back up sensors are attached to the body, and wherein the end cap structure is a male end cap structure or a female end cap structure configured to respectively mate with a female end cap structure or a male end cap structure of a longitudinally adjacent module of the downhole probe assembly, and mating of the male and female end cap structures physically and electrically interconnects the downhole probe assembly module and the longitudinally adjacent module,

wherein the primary accelerometers are a different type of accelerometer than the back up solid state accelerometers.

2. The downhole probe assembly of claim 1 , wherein the back up sensors further comprise back up magnetometers configured to gather information relating to each of orthogonal axes X, Y and Z, wherein the controller is in electronic communication with the back up magnetometers and is configured to receive and process information from the back up magnetometers so that information from the back up magnetometers can be used when one or more of the primary magnetometers fails.

3. The downhole probe assembly of claim 1 , wherein the controller is configured to send a signal to surface to alert an operator that one or more of the primary sensors has failed and that information is being provided by the back up sensors.

4. The downhole probe assembly of claim 1 , wherein the back up sensors are attached to the body in each of the orthogonal axes X, Y and Z.

5. The downhole probe assembly of claim 1 , wherein one or more of the back up sensors is attached to the body at an offset position to the orthogonal axes X, Y and Z.

6. The downhole probe assembly of claim 1 , wherein the back up sensors are fixed to printed circuit boards and the printed circuit boards are attached to the body.

7. A downhole probe assembly comprising:

(a) primary sensors comprising primary accelerometers and primary magnetometers configured to gather information relating to each of orthogonal axes X, Y and Z;

(b) back up sensors comprising back up solid state accelerometers configured to gather information relating to each of orthogonal axes X, Y and Z; and

(c) a controller in electrical communication with the primary sensors and the back up sensors, the controller configured to receive and process information from the primary sensors and the back up sensors so that information from the back up accelerometers can be used when one or more of the primary accelerometers fails; and

(d) a back up sensor module configured for interconnection with a longitudinally adjacent module of the downhole probe assembly, the back up sensor module comprising a longitudinally extending housing enclosing a body and an end cap structure positioned at one end of the longitudinally extending housing, wherein the back up sensors are attached to the body and the end cap structure is a male end cap structure or a female end cap structure configured to respectively mate with a female end cap structure or a male end cap structure of the longitudinally adjacent module of the downhole probe assembly, and mating of the male and female end cap structures physically and electrically interconnects the back up sensor module with the longitudinally adjacent module,

wherein the primary accelerometers are a different type of accelerometer than the back up solid state accelerometers.

8. The downhole probe assembly of claim 7 , wherein the back up sensors are attached to the body in each of the orthogonal axes X, Y and Z.

9. The downhole probe assembly of claim 7 , wherein one or more of the back up sensors is attached to the body at an offset position to the orthogonal axes X, Y and Z.

10. The downhole probe assembly of claim 7 , wherein the body forms part of the end cap structure and extends into a portion of the housing.

11. The downhole probe assembly of claim 7 , wherein the back up sensors are fixed to printed circuit boards and the printed circuit boards are attached to the body.

12. The downhole probe assembly of claim 7 , wherein the back up sensors further comprise back up magnetometers configured to gather information relating to each of orthogonal axes X, Y and Z, wherein the controller is in electronic communication with the back up magnetometers and is configured to receive and process information from the back up magnetometers so that information from the back up magnetometers can be used when one or more of the primary magnetometers fails.

13. The downhole probe assembly of claim 7 , wherein the controller is configured to send a signal to surface to alert an operator that one or more of the primary sensors has failed and that information is being provided by the back up sensors.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 21, 2015
From: SWITZER, DAVID A.; LOGAN, AARON W.; LIU, JILI; MIRAKI, MOJTABA KAZEMI
To: EVOLUTION ENGINEERING INC.
Reel/Frame 036393/0337 →
Continuity (3)
Provisional Application 61734784 · Dec 7, 2012
Provisional Application 61817527 · Apr 30, 2013
Related Publication 20150345283A1 · Dec 3, 2015