IP Library Granted Patent US 11,578,593
Granted Patent B2
US 11,578,593 · App. 17/239,545 · Granted Feb 14, 2023

System and method for transmitting information in a borehole

Inventor: Todd W. Benson (Dallas, TX)
Assignee: Helmerich & Payne Technologies, LLC
E21B47/16E21B4/10E21B7/24E21B28/00E21B34/00E21B34/06E21B47/09E21B47/12E21B49/003E21B34/066
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Quick Facts
Patent No.
US 11,578,593
App. No.
17/239,545
Granted
Feb 14, 2023
Kind
B2
Abstract

Systems and methods for producing controlled vibrations within a borehole. In one example, the system includes a movement mechanism and a controller. The movement mechanism is configured to enable translational movement of a first surface relative to a second surface to allow the first surface to impact the second surface to produce a plurality of beats. The frequency and amplitude of the beats may be selectively controlled by suppressing or dampening the beats. The controller is configured to selectively control an amplitude or frequency of the beats to encode information therein, where the amplitude of a beat may be selectively controlled by dampening or suppressing the impact of the first surface and the second surface.

Claims (17)

1. A valve assembly, comprising:

a housing comprising a chamber;

a first plate having a first surface, the first plate positioned within the housing;

a second plate having a second surface, wherein the second plate is positioned within the housing;

an assembly coupled to the first plate or the second plate such that the assembly and the first plate or second plate move together;

a spring assembly configured to enable movement of the first plate or the second plate to allow the first surface and the second surface to impact one another; and

a fluid reservoir positioned in the chamber in the housing, the fluid reservoir comprising fluid configured to selectively control an amplitude of vibration beats to encode information therein.

2. The valve assembly of claim 1 , further comprising:

a coil wire for generating a magnetic field responsive to a received signal, the magnetic field altering a consistency of the fluid.

3. The valve assembly of claim 1 wherein the spring assembly is formed with a plurality of ribs separated by gaps.

4. The valve assembly of claim 3 wherein when the spring assembly is compressed, the gaps narrow and the ribs are forced closer to one another.

5. The valve assembly of claim 1 , wherein the spring assembly comprises a cavity that at least partially surrounds a sleeve that fits over a valve body.

6. The valve assembly of claim 5 , wherein the valve body comprises a first channel in which a valve ring is positioned and a second channel into which an energizer coil is positioned.

7. The valve assembly of claim 6 , wherein the a spring is positioned in the first channel between the valve ring and an opening leading to a fluid conduit.

8. The valve assembly of claim 7 , wherein a portion of the sleeve includes flow ports for fluid communication between the fluid conduit and the second channel.

9. The valve assembly of claim 8 , wherein when the energizer coil is not powered on to create a magnetic field, the fluid inside the spring assembly is not excited and flows freely into the fluid reservoir via the fluid conduit allowing an interior surface of the spring assembly to strike an anvil surface of the spring assembly with little resistance except for a spring resistance provided by a structure of the spring assembly.

10. The valve assembly of claim 8 , wherein when the energizer coil is powered on to create a magnetic field, the fluid inside the spring assembly is excited and restricts a fluid flow into the fluid reservoir via the fluid conduit allowing an interior surface of the spring assembly to strike an anvil surface of the spring assembly with resistance including a spring resistance provided by a structure of the spring assembly.

Continuity (10)
Continuation 16440381 · Jun 13, 2019
Continuation 16105127 · Aug 20, 2018
Continuation 15874634 · Jan 18, 2018
Continuation 14921160 · Oct 23, 2015
Continuation In Part 14145044 · Dec 31, 2013
Continuation 14010259 · Aug 26, 2013
Continuation 13752112 · Jan 28, 2013
Provisional Application 61693848 · Aug 28, 2012
Provisional Application 61644701 · May 9, 2012
Related Publication 20210238996A1 · Aug 5, 2021