IP Library Granted Patent US 9,822,587
Granted Patent B2
US 9,822,587 · App. 14/961,544 · Granted Nov 21, 2017

Method and apparatus for controlling downhole rotational rate of a drilling tool

Inventors: Jonathan Ryan Prill (Edmonton, CA); Nicholas Ryan Marchand (Edmonton, CA); Ralph William Graeme Johns (Edmonton, CA)
Assignee: Dreco Energy Services ULC
E21B4/02E21B3/00E21B7/06E21B21/08E21B21/10E21B44/005
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Quick Facts
Patent No.
US 9,822,587
App. No.
14/961,544
Granted
Nov 21, 2017
Kind
B2
Abstract

A downhole rotational rate control apparatus, adapted for coupling to the lower end of a drill string, includes a progressive cavity pump or motor, a mud flow control valve, and an electronics section. Drilling mud flowing downward through the drill string is partially diverted to flow through the pump or motor, with the mud flow rate and, in turn, the pump or motor speed being controlled by the mud flow control valve. The control valve is actuated by a control motor in response to inputs from a sensor assembly in the electronics section. By varying the rotational rate of the pump or motor relative to the rotational rate of the drill string, the tool face orientation or non-zero rotational speed of the controlled device in either direction can be varied in a controlled manner.

Claims (27)

1. A drilling apparatus for a wellbore comprising:

a housing;

a progressive cavity pump or motor disposed in the housing and rotationally connectable to a controlled device, the progressive cavity pump or motor comprising a stator supported by the housing and a rotor that rotates within the stator;

a flow control valve assembly to meter a flow of drilling fluid through the progressive cavity pump or motor;

a control motor to directly control the flow control valve assembly; and

an electronics section that rotates relative to the housing by the rotor, the electronics section controls the control motor to vary the metered flow through the progressive cavity pump or motor and thereby orientate the controlled device in the wellbore.

2. The drilling apparatus of claim 1 wherein the progressive cavity motor is coupled to the flow control valve assembly by a drive shaft.

3. The drilling apparatus of claim 1 wherein the rotor is counter-rotatable within the stator to counter-rotate the electronics section relative to the housing.

4. The drilling apparatus of claim 1 wherein the electronics section comprises a sensor to sense wellbore data.

5. The drilling apparatus of claim 4 wherein the electronics section, based on the sensed wellbore data, controls the relative rotational speeds of the housing and the electronics section to orientate the controlled device in the wellbore.

6. A drilling apparatus for a wellbore comprising:

a housing;

a progressive cavity pump or motor disposed in the housing and rotationally connectable to a controlled device, the progressive cavity pump or motor comprising a stator supported by the housing and a rotor that counter-rotates within the stator;

a flow control valve assembly to meter a flow of drilling fluid through the progressive cavity pump or motor;

a control motor to directly control the flow control valve assembly; and

an electronics section that counter-rotates relative to the housing by the rotor, the electronics section controls the control motor while in the wellbore to vary the metered flow through the progressive cavity pump or motor.

7. The drilling apparatus of claim 6 wherein the electronics section comprises a sensor to sense wellbore data.

8. The drilling apparatus of claim 7 wherein the electronics section, based on the sensed wellbore data, controls the control motor to vary the metered flow through the progressive cavity pump or motor and thereby control the relative rotational speeds of the housing and the counter-rotating electronics section.

9. The drilling apparatus of claim 7 wherein the electronics section, based on the sensed wellbore data, controls the control motor to vary the metered flow through the progressive cavity pump or motor and thereby keep the sensor geo-stationary or rotating at a controlled non-zero rotational rate relative to the housing.

10. The drilling apparatus of claim 7 wherein the electronics section, based on a rotational rate of the sensor, is adapted to control the control motor to change the flow through the flow control valve assembly and the progressive cavity pump or motor to orient the controlled device in a desired direction.

11. A drilling apparatus for a wellbore comprising:

a housing;

a progressive cavity pump or motor disposed in the housing and rotationally connectable to a controlled device, the progressive cavity pump or motor comprising a stator supported by the housing and a rotor that is counter-rotatable within the stator;

a flow control valve assembly to meter a flow of drilling fluid through the progressive cavity pump or motor;

a control motor to control the flow control valve assembly; and

an electronics section counter-rotatable relative to the housing by the rotor, the electronics section adapted to control the control motor while in the wellbore to vary the metered flow through the progressive cavity pump or motor;

wherein the rotor is coupled to the controlled device by a drive shaft to counter-rotate the controlled device relative to the housing.

Assignments (3)
MERGER Recorded Jan 24, 2024
From: DRECO ENERGY SERVICES ULC
To: NOV CANADA ULC
Reel/Frame 066551/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2016
From: PRILL, JONATHAN RYAN; MARCHAND, NICHOLAS RYAN; JOHNS, RALPH WILLIAM GRAEME
To: DRECO ENERGY SERVICES LTD.
Reel/Frame 037442/0867 →
CHANGE OF NAME Recorded Jan 8, 2016
From: DRECO ENERGY SERVICES LTD.
To: DRECO ENERGY SERVICES ULC
Reel/Frame 037471/0031 →
Priority Claims (1)
CA 2629535 · Apr 18, 2008 · national
Continuity (2)
Continuation 12988274
Related Publication 20160084004A1 · Mar 24, 2016