IP Library Granted Patent US 12709974
Granted Patent B2
US 12709974 · App. 18/891,850 · Granted Aug 18, 2026

Systems and methods for torque unwind

Inventor: Fergus Hopwood (Houston, TX)
Assignee: Helmerich & Payne, Inc.
E21B44/04E21B7/046
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12709974
App. No.
18/891,850
Granted
Aug 18, 2026
Kind
B2
Abstract

While regulating the top drive during drilling operations, if an unwind is commanded within the control system the following steps may be taken: the top drive may be stopped in speed mode. Once stopped, the control system may be placed into torque mode with a zero-torque reference. The sign of the torque feedback may then be used to determine the direction to configure the speed limit control. A positive torque feedback may indicate that to release torque the top drive may rotate in a reverse direction thus the speed limit may be applied in a reverse rotation direction. A negative torque feedback may indicate that to release torque the top drive may rotate in a forward direction thus the speed limit may be applied to the forward rotation direction. Once the torque and speed fall below threshold values, the control system may raise a flag indicating that the unwind has completed.

Claims (42)

1 . A method of releasing torque from a drill string, the method comprising:

providing a top drive coupled to a drill string and to a variable frequency drive (VFD), wherein the VFD is adapted to operate in at least two modes of operation, wherein a first mode regulates speed of the top drive based on a speed limit, wherein a second mode regulates torque of the top drive;

responsive to an indication that torque in the drill string is to be released, stopping operation of the top drive by a control system;

determining, by the control system, a direction for rotating the top drive to release the torque in the drill string;

determining, by the control system, the speed limit for rotating the top drive to release the torque in the drill string;

transitioning, by the control system, the VFD from the first mode to the second mode;

determining, by the control system, a torque value for the top drive; and

rotating the top drive in the direction without exceeding the speed limit determined by the control system until a torque value or speed value falls below a threshold therefor.

2 . The method according to claim 1 , further comprising determining, by the control system, a sign of a torque feedback value.

3 . The method according to claim 2 , wherein determining the direction for rotating the top drive is responsive to the sign of the torque feedback value.

4 . The method according to claim 3 , wherein the indication that torque in the drill string is to be released comprises a user input.

5 . The method according to claim 3 , wherein the indication that torque in the drill string is to be released comprises a determination, by the control system, associated with an anticipated drilling event.

6 . The method according to claim 5 , wherein the anticipated drilling event comprises any one or more of: a slide drilling operation, a connection of a drill pipe or stand to the drill string, responsive to a mud motor or rotary drilling stall, and torquing a drill pipe or stand against a rotary table or back-up wrench.

7 . The method according to claim 1 , wherein determining a speed limit for rotating the top drive to release the torque comprises receiving a user input associated with a speed limit for rotating the top drive.

8 . The method according to claim 1 , wherein a torque setpoint provided to the VFD is zero and a speed limit setpoint is provided to the VFD.

9 . The method according to claim 8 , wherein the torque setpoint is zero without regard to direction of rotation.

10 . The method according to claim 1 , wherein a user or the control system selects the speed limit.

11 . The method according to claim 1 , wherein the control system is coupled to a user interface that displays a status mode responsive to whether torque in the drill string is to be released or is in a process of being released.

12 . A control system for controlling a release of torque from a drill string, the control system comprising:

a processor connected to one or more control systems of a drilling rig enabled to drill a borehole; and

a memory connected to the processor, wherein the memory comprises instructions for performing operations comprising:

receiving an indication that torque in a drill string coupled to a top drive is to be released, the top drive coupled to a variable frequency drive (VFD) adapted to operate in at least two modes of operation, wherein a first mode regulates speed of the top drive based on a speed limit and a second mode regulates torque of the top drive;

responsive to the indication, stopping operation of the top drive;

determining, by the one or more control systems, a direction for rotating the top drive to release the torque in the drill string;

determining, by the one or more control systems, the speed limit for rotating the top drive to release the torque in the drill string;

transition the VFD from the first mode to the second mode;

determine a torque value for the top drive; and

rotating the top drive in the direction and at the speed limit determined by the one or more control systems until a torque value or speed value falls below a threshold value.

13 . The control system of claim 12 , wherein the indication that torque in the drill string is to be released comprises a determination, by the control system, associated with an anticipated drilling event.

14 . The control system of claim 13 , wherein the anticipated drilling event comprises any one or more of: a slide drilling operation, a connection of a drill pipe or stand to the drill string, responsive to a mud motor or rotary drilling stall, and torquing a drill pipe or stand against a rotary table or back-up wrench.

15 . The control system of claim 12 , wherein determining a speed limit for rotating the top drive comprises receiving a user input or a control system value associated with a speed limit for rotating the top drive.

16 . The control system of claim 12 , wherein the VFD has a torque control mode and, responsive to the indication that torque in the drill string is to be released, the VFD is placed into torque control mode, wherein a torque setpoint provided to the VFD is zero and a speed limit setpoint is provided to the VFD.

17 . The control system of claim 16 , wherein the torque setpoint is zero without regard to direction of rotation.

18 . A method of releasing torque from a drill string, the method comprising:

receiving an indication to initiate release of torque in a drill string coupled to a top drive, the top drive coupled to a variable frequency drive (VFD) adapted to operate in at least two modes of operation, wherein a first mode regulates speed of the top drive based on a velocity limit and a second mode regulates torque of the top drive;

in response to receiving the indication, transitioning the VFD to the second mode;

setting, via the VFD, a zero torque setpoint;

determining a direction for rotating the top drive based at least in part on sign of a torque feedback value, wherein the direction is reverse if the sign is positive, and the direction is forward if the sign is negative;

setting, via the VFD, the velocity limit of the top drive to a negative value if the direction is reverse or to a positive value if the direction is forward;

rotating the top drive in the determined direction, the VFD regulating the speed based on the velocity limit;

determining, when the top drive is rotating in reverse, the torque is released if the torque feedback value of the top drive falls below a torque threshold value and if an absolute value of a velocity feedback value of the top drive is less than a speed threshold value; and

determining, when the top drive is rotating in forward, the torque is released if the torque feedback value rises above a negative of the torque threshold value and if the absolute value of the velocity feedback value is less than the speed threshold value.