Directional Drilling High Side Scribe Tool

The DDHST addresses alignment issues between downhole motor and MWD tool by providing a precise alignment mechanism, enhancing drilling efficiency and safety through repeatable high-side orientation verification.

US20260078669A1Pending Publication Date: 2026-03-19AN YINGJUN
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Patent Information

Authority / Receiving Office
US · United States
Patent Type
Applications(United States)
Current Assignee / Owner
Filing Date
2025-11-26
Publication Date
2026-03-19

AI Technical Summary

Technical Problem

Conventional methods for aligning the mechanical high side of a downhole motor with the electronic Toolface reference of a MWD tool in directional drilling are time-consuming, prone to human error, and result in steering errors and inefficient wellbore trajectory control.

Method used

A Directional Drilling High Side Scribe Tool (DDHST) that temporarily attaches to a downhole motor or drill collar, featuring an orientation rod for precise alignment and verification of the high-side orientation, ensuring accurate transfer to the MWD tool.

Benefits of technology

The DDHST provides repeatable and accurate alignment, reducing setup time, enhancing rig-floor safety, and improving drilling efficiency and wellbore accuracy by minimizing manual handling and rework.

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Abstract

A directional drilling tool for establishing and verifying the high-side orientation of downhole motors relative to measurement-while-drilling (MWD) systems. The tool comprises a fluorescent, lightweight, drillable plastic bracket with an arcuate body that snaps onto tubular components such as downhole motors and drill collars. A radially extending rod provides accurate visual alignment of the motor high side. The tool's flexible, non-hazardous material maintains attachment under rig-floor impacts while enhancing safety for personnel and downhole equipment. It is suitable for whipstock operations and other directional drilling procedures requiring reliable high-side reference.
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Description

CROSS-REFERENCE TO RELATED APPLICATIONS

[0001] This application claims the benefit of priority to Canadian Patent Application No. CA 3,263,807, filed on 2025 Jan. 30, the entire contents of which are incorporated herein by reference.FIELD OF THE INVENTION

[0002] The present invention relates generally to directional drilling equipment used in oil and gas well construction. More particularly, it concerns a tool configured to establish, verify, and transfer the high-side orientation between a downhole motor and a measurement-while-drilling (MWD) tool.BACKGROUND OF THE INVENTION

[0003] Directional drilling operations require accurate alignment between the mechanical high side of the downhole motor and the electronic Toolface reference of the MWD system. The correlation between these two references allows drillers to steer the well accurately during sliding operations.

[0004] Conventional methods for establishing this correlation rely heavily on manual scribing, visual judgment, and multiple verification steps. These procedures are time-consuming, prone to human error, and may lead to misalignment between the motor and the MWD tool. Inconsistent scribe accuracy can result in steering errors, inefficient wellbore trajectory control, and additional rig-floor time.

[0005] Accordingly, there exists a need for a simple, reliable, and repeatable device capable of accurately identifying and transferring the high-side orientation of the motor to the MWD tool under field conditions.SUMMARY OF THE INVENTION

[0006] The present invention provides a Directional Drilling High Side Scribe Tool (DDHST) configured to accurately align and verify the high-side orientation between a downhole motor and a measurement-while-drilling (MWD) tool.

[0007] In one embodiment, the DDHST comprises a lightweight, drillable body configured to be temporarily attached to the upper end of a downhole motor, drill collar, or other tubular component. An orientation rod or indicator extends outwardly from the body and is aligned with a previously established high-side mark. When installed, the orientation rod provides a visual reference that allows the operator to confirm that the motor's mechanical high side corresponds precisely to the MWD tool's electronic Toolface reference.

[0008] The DDHST may further include an attachment mechanism such as a snap-on clamp, threaded drill collar, or magnetic coupling to allow for quick installation and removal on the rig floor. Markings, detents, or index features can be incorporated to enhance alignment precision and prevent rotational slippage during handling.

[0009] Advantages of the Invention include:

[0010] Providing a repeatable and accurate method for verifying high-side orientation.

[0011] Reducing setup and calibration time during bottom-hole assembly (BHA) preparation.

[0012] Enhancing rig-floor safety by minimizing manual handling and rework.

[0013] Improving directional drilling efficiency and overall wellbore accuracy.BRIEF DESCRIPTION OF THE DRAWINGS

[0014] FIG. 1 is a perspective view of the Directional Drilling High Side Scribe Tool (DDHST).

[0015] Item 1 represents the clamp or bracket configured to attach to a downhole motor or drill collar.

[0016] Item 2 represents the orientation rod extending outwardly from the body to provide a visible high-side alignment indicator.DETAILED DESCRIPTION OF THE INVENTION

[0017] The Directional Drilling High Side Scribe Tool (DDHST) is designed for use during bottom-hole assembly (BHA) makeup in oil and gas drilling operations involving downhole motors and MWD tools. The BHA typically comprises a drill bit, downhole motor, stabilizers, drill collars, and the MWD tool.

[0018] Downhole motors include a bent housing that defines a mechanical “high side,” which determines the steering direction during sliding operations. Because the motor's high-side orientation cannot be directly observed from surface, the MWD tool provides Toolface data that represents the motor's position. A high-side scribe physically connecting the motor and MWD tool ensures that the electronic Toolface data correctly corresponds to the motor's actual orientation.Embodiment 1—Application on Downhole Motor

[0019] The DDHST is temporarily attached to the top end of the downhole motor using its clamp.

[0020] The orientation rod extends outwardly to indicate the motor's mechanical high side when the motor is on the rig floor.

[0021] The operator marks a high-side reference line on the motor's top surface aligned with the DDHST's rod.

[0022] The alignment is verified visually to ensure the high-side indication is accurate.

[0023] The DDHST is removed before lowering the motor through the rotary table and making up subsequent tubulars.Embodiment 2—Application on Drill Collars and Other Tubular Components

[0024] After the motor's high side has been scribed and verified, the DDHST is reattached to the motor with the orientation rod aligned to the scribed line.

[0025] The DDHST is lowered to the rotary table, and a reference mark is placed on the rotary table corresponding to the motor's high side.

[0026] Each drill collar or tubular is then sequentially attached. The DDHST is snapped onto the tubular, aligned with the rotary-table reference mark, and a new high-side scribe line is drawn on the tubular.

[0027] The operator verifies each transferred scribe line for consistency, ensuring uniform high-side orientation throughout the BHA.Advantages and Operation

[0028] The DDHST provides a reliable, repeatable, and efficient means of verifying and transferring high-side orientation across multiple components of the bottom-hole assembly. By correlating the physical high side of the downhole motor or tubular with the MWD Toolface measurements, the invention:

[0029] Ensures consistent and accurate wellbore steering.

[0030] Reduces misalignment and operational errors.

[0031] Saves rig time by minimizing recalibration and re-measurement steps.

[0032] Enhances overall drilling precision and rig-floor safety.Industrial Applicability

[0033] The invention is suitable for use in directional drilling operations in oil, gas, and geothermal wells. Its lightweight, drillable, and easily removable design allows for repeated application on the rig floor without interfering with BHA assembly or downhole operations.

Examples

embodiment 1

Application on Downhole Motor

[0019]The DDHST is temporarily attached to the top end of the downhole motor using its clamp.

[0020]The orientation rod extends outwardly to indicate the motor's mechanical high side when the motor is on the rig floor.

[0021]The operator marks a high-side reference line on the motor's top surface aligned with the DDHST's rod.

[0022]The alignment is verified visually to ensure the high-side indication is accurate.

[0023]The DDHST is removed before lowering the motor through the rotary table and making up subsequent tubulars.

embodiment 2

Application on Drill Collars and Other Tubular Components

[0024]After the motor's high side has been scribed and verified, the DDHST is reattached to the motor with the orientation rod aligned to the scribed line.

[0025]The DDHST is lowered to the rotary table, and a reference mark is placed on the rotary table corresponding to the motor's high side.

[0026]Each drill collar or tubular is then sequentially attached. The DDHST is snapped onto the tubular, aligned with the rotary-table reference mark, and a new high-side scribe line is drawn on the tubular.

[0027]The operator verifies each transferred scribe line for consistency, ensuring uniform high-side orientation throughout the BHA.

Advantages and Operation

[0028]The DDHST provides a reliable, repeatable, and efficient means of verifying and transferring high-side orientation across multiple components of the bottom-hole assembly. By correlating the physical high side of the downhole motor or tubular with the MWD Toolface measurements, ...

Claims

1. A directional drilling high side scribe tool (DDHST), comprising:a bracket including a body formed of a fluorescent plastic material,wherein the body defines an arcuate segment extending between one-half and five-sixths of a full circle,wherein the inner diameter of the bracket is smaller than the object to which it is snapped, andwherein the bracket is configured to clamp onto an outer surface of the object along the arc segment.

2. The directional drilling high side scribe tool of claim 1, further comprising a rod extending outwardly from the bracket along a radial direction relative to the arcuate segment.

3. The directional drilling high side scribe tool of claim 1, wherein all materials forming the bracket and the rod are flexible materials having a density less than that of water.

4. The directional drilling high side scribe tool of claim 2, wherein all materials forming the bracket and the rod are flexible materials having a density less than that of water.