IP Library Granted Patent US 12,366,146
Granted Patent B2
US 12,366,146 · App. 17/831,658 · Granted Jul 22, 2025

Tubing anchor gas vent and associated methods and systems

Inventors: Cavin B. Frost (Odessa, TX); Gustavo A. Gonzalez-Cabrera (Midland, TX); Daniel L. Culbertson (Odessa, TX)
Assignee: Odessa Separator, Inc.
E21B43/12E21B43/38
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Quick Facts
Patent No.
US 12,366,146
App. No.
17/831,658
Granted
Jul 22, 2025
Kind
B2
Abstract

A gas vent can include an inner production tube and at least two outer housings. One outer housing is configured to be connected above a tubing anchor, and another outer housing is configured to be connected below the tubing anchor. The inner production tube is configured to extend longitudinally through the tubing anchor. A gas vent system can include an inner production tube which extends longitudinally through a tubing anchor, and an annulus formed between the inner production tube and the tubing anchor. A gas flows through an interior of the tubing anchor via the annulus.

Claims (32)

1. A gas vent system for use with a subterranean well, the gas vent system comprising:

an upper gas vent portion connected above a tubing anchor, in which the upper gas vent portion comprises a first outer housing;

a lower gas vent portion connected below the tubing anchor, in which the lower gas vent portion comprises a second outer housing;

an inner production tube which extends longitudinally through the tubing anchor and the first and second outer housings, in which a lower end of the inner production tube comprises a dip tube, and in which a lower end of the dip tube is positioned below a fluid inlet of a third outer housing, whereby a gas is separated from a liquid prior to the liquid entering the dip tube; and

an annulus formed between the inner production tube and the tubing anchor,

in which the annulus extends between the first outer housing and the inner production tube in the upper gas vent portion,

in which flow through an upper end of the annulus is blocked in the upper gas vent portion,

in which the annulus extends between the second outer housing and the inner production tube in the lower gas vent portion,

in which flow through a lower end of the annulus is blocked in the lower gas vent portion, and

in which the gas flows upwardly through an interior of the tubing anchor via the annulus.

2. The gas vent system of claim 1 , in which a liquid flows upwardly through the inner production tube via an inner flow passage.

3. The gas vent system of claim 1 , in which the first outer housing comprises ports formed therein which permit fluid communication between the annulus and an exterior of the upper gas vent portion.

4. The gas vent system of claim 1 , in which the second outer housing comprises ports formed therein which permit fluid communication between the annulus and an exterior of the lower gas vent portion.

5. The gas vent system of claim 4 , in which the ports are positioned vertically higher than a lower end of the dip tube.

6. A gas vent for use with a subterranean well, the gas vent comprising:

an inner production tube;

a first outer housing configured to be connected above a tubing anchor; and

a second outer housing configured to be connected below the tubing anchor,

in which the inner production tube is configured to extend longitudinally through the tubing anchor and the first and second housings,

in which a lower end of the inner production tube comprises a dip tube,

in which a lower end of the dip tube is positioned below a fluid inlet of a third outer housing, whereby a gas is separated from a liquid prior to the liquid entering the dip tube,

in which an annulus is formed between the inner production tube and the tubing anchor,

in which the annulus extends between the inner production tube and the first and second outer housings,

in which an upper end of the annulus is sealed off in the first outer housing,

in which a lower end of the annulus is sealed off in the second outer housing, and

in which the gas is vented from an exterior of the second outer housing, through the tubing anchor via the annulus, to an exterior of the first outer housing.

7. The gas vent of claim 6 , in which the first outer housing comprises a tubular body and ports that permit fluid communication between an exterior of the first outer housing and the annulus formed between the inner production tubing and the body.

8. The gas vent of claim 6 , in which the inner production tube is sealingly connected with an upper connector of the first outer housing.

9. The gas vent of claim 6 , in which the second outer housing comprises a tubular body and ports that permit fluid communication between an exterior of the second outer housing and the annulus formed between the inner production tubing and the body.

10. The gas vent of claim 6 , in which the inner production tube is sealingly connected with a lower connector of the second outer housing.

11. The gas vent of claim 6 , in which the first outer housing comprises a lower connector that is configured for threaded connection with an upper end of the tubing anchor.

12. The gas vent of claim 6 , in which the second outer housing comprises an upper connector that is configured for threaded connection with a lower end of the tubing anchor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2022
From: FROST, CAVIN BERT; GONZALEZ-CABRERA, GUSTAVO A.; CULBERTSON, DANIEL L.
To: ODESSA SEPARATOR, INC.
Reel/Frame 060494/0927 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2022
From: FROST, CAVIN BERT; GONZALEZ-CABRERA, GUSTAVO A.; CULBERTSON, DANIEL L.
To: ODESSA SEPARATOR, INC.
Reel/Frame 060095/0509 →
Continuity (2)
Provisional Application 63210581 · Jun 15, 2021
Related Publication 20220397019A1 · Dec 15, 2022
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