IP Library › Granted Patent US 12,618,310
Granted Patent B1
US 12,618,310 · App. 18/937,400 · Granted May 5, 2026

Interval control valve with modular screens downhole in a wellbore

Inventors: Rhett Bradford Avant (Houston, TX); Andrew Penno (Singapore, SG); Stephen Michael Greci (Little Elm, TX)
Assignee: Halliburton Energy Services, Inc.
E21B43/08E21B33/124E21B34/06E21B43/04
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Quick Facts
Patent No.
US 12,618,310
App. No.
18/937,400
Granted
May 5, 2026
Kind
B1
Abstract

A system can include a tubing string, a filter screen, and an interval control valve deployed downhole in a wellbore. The tubing string may not have perforations. A first annulus may be formed between an exterior of the tubing string and a subterranean formation. The filter screen can be coupled to the exterior of the tubing string and can form a second annulus between the filter screen and the exterior of the tubing string. The interval control valve can be positioned inline with the exterior of the tubing string. The interval control valve can control flow of fluid between the second annulus and the interior of the tubing string.

Claims (60)

1 . A system comprising:

a tubing string positionable downhole in a wellbore and forming a first annulus between an exterior of the tubing string and a subterranean formation of the wellbore when positioned downhole;

a first filter screen coupleable to the exterior of a first tubing joint of the tubing string and configurable to form a second annulus between the first filter screen and the exterior of the first tubing joint;

an interval control valve positionable inline with the exterior of the tubing string and configurable to control flow of fluid between the second annulus and an interior of the tubing string;

a second filter screen coupleable to the exterior of a second tubing joint of the tubing string and configurable to form a third annulus between the second filter screen and the exterior of the second tubing joint; and

a shroud positionable on the exterior of the tubing string, the shroud comprising:

a first end coupleable to the first filter screen; and

a second end coupleable to the second filter screen to form a fluidic pathway between the second annulus and the third annulus.

2 . The system of claim 1 , further comprising:

a first packer positionable in the first annulus uphole from the first filter screen and the interval control valve; and

a second packer positionable in the first annulus downhole from the first filter screen and the interval control valve, wherein the first packer and the second packer are configurable to form a fluid isolation zone for the first annulus.

3 . The system of claim 2 , wherein the interval control valve is a first interval control valve, wherein the first interval control valve is configurable to control a first flow path of fluid between the second annulus and the interior of the tubing string, and wherein the system further comprises:

a third filter screen coupleable to a same tubing joint of the tubing string as the first filter screen, wherein a fourth annulus is formed between the third filter screen and the exterior of the tubing string, wherein the third filter screen is configurable to filter fluid between the first annulus and the fourth annulus; and

a second interval control valve positionable inline with the exterior of the tubing string and configurable to control a second flow path of fluid between the fourth annulus and the interior of the tubing string,

wherein the third filter screen and the second interval control valve are positionable within the fluid isolation zone between the first packer and the second packer.

4 . The system of claim 1 , further comprising:

one or more control lines extendable from a surface of the wellbore to the interval control valve positionable downhole in the wellbore, wherein the one or more control lines are configurable to control actuation of the interval control valve.

5 . The system of claim 1 , wherein the tubing string is a solid tubing string.

6 . The system of claim 1 , further comprising:

a gravel pack positionable within the first annulus between the subterranean formation and the first filter screen.

7 . The system of claim 1 , wherein the shroud is a first shroud and the fluidic pathway is a first fluidic pathway, and wherein the system further comprises:

a second shroud positionable on an interior of the tubing string to form a second fluidic pathway between the second annulus and the third annulus.

8 . The system of claim 7 , wherein the second shroud further comprises:

a first end coupled to the first tubing joint; and

a second end coupled to the second tubing joint, wherein the fluidic pathway is formed between the first end and the second end.

9 . The system of claim 1 , wherein the shroud comprises a non-perforated material.

10 . A method comprising:

deploying a tubing string downhole in a wellbore, the tubing string forming a first annulus between an exterior of the tubing string and a subterranean formation;

filtering, by a first filter screen coupled to the exterior of the tubing string, fluid between the first annulus and a second annulus formed between the first filter screen and the exterior of a first tubing joint of the tubing string;

filtering, by a second filter screen coupled to the exterior of a second tubing joint of the tubing string, fluid between the first annulus and a third annulus formed between the second filter screen and the exterior of the second tubing joint;

forming, by a shroud positioned on the exterior of the tubing string, a fluidic pathway between the second annulus and the third annulus, the shroud being coupled at a first end to the first filter screen and being coupled at a second end to the second filter screen; and

controlling, by an interval control valve positioned inline with the exterior of the tubing string, a flow path of the fluid between the second annulus and an interior of the tubing string.

11 . The method of claim 10 , further comprising:

deploying a first packer in the first annulus uphole from the first filter screen and the interval control valve;

deploying a second packer in the first annulus downhole from the first filter screen and the interval control valve; and

forming, by the first packer and the second packer, a fluid isolation zone for the first annulus and the second annulus.

12 . The method of claim 11 , wherein the flow path is a first flow path and the interval control valve is a first interval control valve, and wherein the method further comprises:

filtering, by a third filter screen coupled to a same tubing joint of the tubing string as the first filter screen, fluid between the first annulus and a fourth annulus formed between the third filter screen and the exterior of the tubing string; and

controlling, by a second interval control valve positioned inline with the exterior of the tubing string, a second flow path of the fluid between the fourth annulus and the interior of the tubing string,

wherein the third filter screen and the second interval control valve are within the fluid isolation zone between the first packer and the second packer.

13 . The method of claim 10 , further comprising:

controlling, by one or more control lines extending from a surface of the wellbore to the interval control valve, actuation of the interval control valve to control flow of fluid into the tubing string.

14 . The method of claim 10 , wherein the shroud further comprises filter openings or slots.

15 . The method of claim 10 , further comprising:

positioning a gravel pack downhole within the first annulus between the subterranean formation and the first filter screen.

16 . An interval control valve system comprising:

a first filter screen coupleable to an exterior of a first tubing joint of a tubing string that is positionable downhole in a wellbore, the tubing string configurable to form a first annulus between the exterior of the tubing string and a subterranean formation when positioned downhole, the first filter screen configurable to form a second annulus between the first filter screen and the exterior of the tubing string;

an interval control valve positionable inline with the exterior of the tubing string and configurable to control flow of fluid between the second annulus and an interior of the tubing string;

a second filter screen coupleable to the exterior of a second tubing joint of the tubing string and configurable to form a third annulus between the second filter screen and the exterior of the second tubing joint; and

a shroud positionable on the exterior of the tubing string, the shroud comprising:

a first end coupleable to the first filter screen; and

a second end coupleable to the second filter screen to form a fluidic pathway between the second annulus and the third annulus.

17 . The interval control valve system of claim 16 , wherein a first packer and a second packer are configurable to form a fluid isolation zone for the first annulus and the second annulus, wherein the first packer is positionable in the first annulus uphole from the first filter screen and the interval control valve, and wherein the second packer is positionable in the first annulus downhole from the first filter screen and the interval control valve.

18 . The interval control valve system of claim 17 , wherein the interval control valve is a first interval control valve, wherein the first interval control valve is configurable to control a first flow path of fluid between the second annulus and the interior of the tubing string, and wherein the interval control valve system further comprises:

a third filter screen coupleable to a same tubing joint of the tubing string as the first filter screen, wherein a fourth annulus is formed between the third filter screen and the exterior of the tubing string, wherein the third filter screen is configurable to filter fluid between the first annulus and the fourth annulus; and

a second interval control valve positioned inline with the exterior of the tubing string and configurable to control a second flow path of fluid between the fourth annulus and the interior of the tubing string,

wherein the third filter screen and the second interval control valve are positionable within the fluid isolation zone between the first packer and the second packer.

19 . The interval control valve system of claim 16 , further comprising:

one or more control lines extendable from a surface of the wellbore to the interval control valve positionable downhole in the wellbore, wherein the one or more control lines are configurable to control actuation of the interval control valve.

20 . The interval control valve system of claim 16 , wherein the shroud further comprises filter openings or slots.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 5, 2024
From: AVANT, RHETT BRADFORD; PENNO, ANDREW; GRECI, STEPHEN MICHAEL
To: HALLIBURTON ENERGY SERVICES, INC.
Reel/Frame 069141/0807 →
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