IP Library Granted Patent US 11,480,027
Granted Patent B2
US 11,480,027 · App. 16/855,749 · Granted Oct 25, 2022

Intelligently controlled fluid systems

Inventors: Ronnie B. Beason (Lexington, OK); Nicholas J. Cannon (Washington, OK)
Assignee: DOWNING WELLHEAD EQUIPMENT, LLC
E21B34/02E21B33/068E21B43/2607E21B47/00F16N11/00F16N29/02E21B43/26F16N2210/00
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Quick Facts
Patent No.
US 11,480,027
App. No.
16/855,749
Granted
Oct 25, 2022
Kind
B2
Abstract

Methods and apparatus according to which a first valve is opened, or kept open, the first valve being part of a wellhead including a flow component above the first valve. The method may further include detecting a state of the first valve and, in response to detecting the state of the first valve, metering an amount of grease to the first valve. In addition, or instead, the method may further include opening, or keeping open, a second valve, the second valve being operably coupled to the wellhead and positioned above the flow component, and, after opening, or keeping open, each of the first and second valves, detecting whether the second valve is open or closed, in response to detecting that the second valve is open, preventing the first valve from being closed, and in response to detecting that the second valve is closed, allowing the first valve to be closed.

Claims (86)

1. A method, comprising:

opening, or keeping open, a first valve, the first valve being part of a wellhead, the wellhead including a flow component above the first valve;

detecting a state of the first valve, the state being open, partially-open, or closed; and

in response to detecting the state of the first valve, metering an amount of grease to the first valve;

wherein opening, or keeping open, the first valve comprises opening the first valve; and

wherein opening the first valve comprises:

determining if a difference between inlet and outlet pressures of the first valve is below a threshold;

if said difference is not below the threshold, opening an equalization valve to decrease the difference until said difference is below the threshold; and

if said difference is below the threshold, opening the first valve.

2. The method of claim 1 , wherein metering the amount of grease to the first valve comprises:

delivering grease from a delivery module to a metering module; and

metering the amount of grease from the metering module to the first valve.

3. A method, comprising:

opening, or keeping open, a first valve, the first valve being part of a wellhead, the wellhead including a flow component above the first valve;

before opening, or keeping open, the first valve, attaching a lubricator in which the downhole tool extends to a latch operably coupled to the wellhead and positioned above the first valve;

opening, or keeping open, a second valve, the second valve being operably coupled to the wellhead and positioned above the flow component;

after opening, or keeping open, each of the first and second valves:

detecting whether the second valve is open or closed;

in response to detecting that the second valve is open, preventing the first valve from being closed; and

in response to detecting that the second valve is closed, allowing the first valve to be closed;

and

after opening, or keeping open, each of the first and second valves, deploying a downhole tool on a conveyance string through each of the first and second valves and into a wellbore operably associated with the wellhead;

wherein deploying the downhole tool comprises, after attaching the lubricator to the latch, deploying the downhole tool on the conveyance string from the lubricator, through the first and second valves, and into the wellbore;

and

wherein the step of preventing the first valve from being closed in response to detecting that the second valve is open prevents the first valve from damaging the conveyance string when the downhole tool is deployed on the conveyance string through each of the first and second valves and into the wellbore.

4. The method of claim 3 , further comprising:

after opening, or keeping open, each of the first and second valves:

closing the second valve; and

opening a third valve, the third valve being operably coupled to the flow component of the wellhead.

5. The method of claim 4 , further comprising, after both closing the second valve and opening the third valve, pumping fracturing fluid into the wellbore through each of the third valve, the flow component, and the first valve, the flow component comprising a frac tree.

6. The method of claim 3 , wherein the downhole tool comprises a plug and perforating guns.

7. The method of claim 3 , further comprising:

after deploying the downhole tool on the conveyance string through each of the first and second valves and into the wellbore, retrieving the conveyance string and at least a portion of the downhole tool from the wellbore and through each of the first and second valves;

wherein the step of allowing the first valve to be closed in response to detecting that the second valve is closed allows the first valve to be closed after the at least a portion of the downhole tool is retrieved from the wellbore and through each of the first and second valves.

8. The method of claim 3 , further comprising:

after deploying the downhole tool on the conveyance string through each of the first and second valves and into the wellbore, retrieving the conveyance string and at least a portion of the downhole tool from the wellbore and through each of the first and second valves; and

after retrieving the conveyance string and the at least a portion of the downhole tool from the wellbore and through each of the first and second valves:

closing the second valve; and

detaching the lubricator from the latch.

9. The method of claim 8 , further comprising, after detaching the lubricator from the latch, launching, from an object launcher operably associated with the wellhead and located above the first valve, an object through each of the first and second valves and into the wellbore.

10. An apparatus, comprising:

a non-transitory computer readable medium; and

a plurality of instructions stored on the non-transitory computer readable medium and executable by one or more processors, wherein, when the instructions are executed by the one or more processors, the following steps are executed:

opening, or keeping open, a first valve, the first valve being part of a wellhead, the wellhead including a flow component above the first valve;

before opening, or keeping open, the first valve, attaching a lubricator in which the downhole tool extends to a latch operably coupled to the wellhead and positioned above the first valve;

opening, or keeping open, a second valve, the second valve being operably coupled to the wellhead and positioned above the flow component;

after opening, or keeping open, each of the first and second valves:

detecting whether the second valve is open or closed;

in response to detecting that the second valve is open, preventing the first valve from being closed; and

in response to detecting that the second valve is closed, allowing the first valve to be closed;

and

after opening, or keeping open, each of the first and second valves, deploying a downhole tool on a conveyance string through each of the first and second valves and into a wellbore operably associated with the wellhead;

wherein deploying the downhole tool comprises, after attaching the lubricator to the latch, deploying the downhole tool on the conveyance string from the lubricator, through the first and second valves, and into the wellbore;

and

wherein the step of preventing the first valve from being closed in response to detecting that the second valve is open prevents the first valve from damaging the conveyance string when the downhole tool is deployed on the conveyance string through each of the first and second valves and into the wellbore.

11. The apparatus of claim 10 , wherein, when the instructions are executed by the one or more processors, the following steps are also executed:

after opening, or keeping open, each of the first and second valves:

closing the second valve; and

opening a third valve, the third valve being operably coupled to the flow component of the wellhead.

12. The apparatus of claim 11 , wherein, when the instructions are executed by the one or more processors, the following step is also executed:

after both closing the second valve and opening the third valve, pumping fracturing fluid into the wellbore through each of the third valve, the flow component, and the first valve, the flow component comprising a frac tree.

13. The apparatus of claim 10 , wherein, when the instructions are executed by the one or more processors, the following steps are also executed:

after deploying the downhole tool on the conveyance string through each of the first and second valves and into the wellbore, retrieving the conveyance string and at least a portion of the downhole tool from the wellbore and through each of the first and second valves; and

after retrieving the conveyance string and the at least a portion of the downhole tool from the wellbore and through each of the first and second valves:

closing the second valve; and

detaching the lubricator from the latch.

14. The apparatus of claim 13 , wherein, when the instructions are executed by the one or more processors, the following step is also executed:

after detaching the lubricator from the latch, launching, from an object launcher operably associated with the wellhead and located above the second valve, an object through each of the first and second valves and into the wellbore.

15. The apparatus of claim 10 , wherein the downhole tool comprises a plug and perforating guns.

16. The apparatus of claim 10 , wherein, when the instructions are executed by the one or more processors, the following steps are also executed:

after deploying the downhole tool on the conveyance string through each of the first and second valves and into the wellbore, retrieving the conveyance string and at least a portion of the downhole tool from the wellbore and through each of the first and second valves;

wherein the step of allowing the first valve to be closed in response to detecting that the second valve is closed allows the first valve to be closed after the at least a portion of the downhole tool is retrieved from the wellbore and through each of the first and second valves.

17. An apparatus, comprising:

a non-transitory computer readable medium; and

a plurality of instructions stored on the non-transitory computer readable medium and executable by one or more processors, wherein, when the instructions are executed by the one or more processors, the following steps are executed:

opening, or keeping open, a first valve, the first valve being part of a wellhead, the wellhead including a flow component above the first valve;

detecting a state of the first valve, the state being open, partially-open, or closed; and

in response to detecting the state of the first valve, metering an amount of grease to the first valve;

wherein opening, or keeping open, the first valve comprises opening the first valve; and

wherein opening the first valve comprises:

determining if a difference between inlet and outlet pressures of the first valve is below a threshold;

if said difference is not below the threshold, opening an equalization valve to decrease the difference until said difference is below the threshold; and

if said difference is below the threshold, opening the first valve.

18. The apparatus of claim 17 , wherein metering the amount of grease to the first valve comprises:

delivering grease from a delivery module to a metering module; and

metering the amount of grease from the metering module to the first valve.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2022
From: BEASON, RONNIE B.; CANNON, NICHOLAS J.
To: DOWNING WELLHEAD EQUIPMENT, LLC
Reel/Frame 059297/0377 →
Continuity (16)
Continuation In Part 16803156 · Feb 27, 2020
Continuation In Part 16436623 · Jun 10, 2019
Continuation In Part 16248633 · Jan 15, 2019
Continuation In Part 16855749
Continuation In Part 16248648 · Jan 15, 2019
Continuation In Part 16100741 · Aug 10, 2018
Provisional Application 62836761 · Apr 22, 2019
Provisional Application 62755170 · Nov 2, 2018
Provisional Application 62638688 · Mar 5, 2018
Provisional Application 62638681 · Mar 5, 2018
Provisional Application 62637220 · Mar 1, 2018
Provisional Application 62637215 · Mar 1, 2018
Provisional Application 62617438 · Jan 15, 2018
Provisional Application 62617443 · Jan 15, 2018
Provisional Application 62598914 · Dec 14, 2017
Related Publication 20200248529A1 · Aug 6, 2020
Cited By (1)
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