IP Library › Granted Patent US 10,502,031
Granted Patent B2
US 10,502,031 · App. 15/700,214 · Granted Dec 10, 2019

Method and apparatus for producing gas from a formation containing both gas and water

Inventor: Charles W. Winters (Bradenton, FL)
E21B43/086E21B43/38E21B43/084
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Quick Facts
Patent No.
US 10,502,031
App. No.
15/700,214
Granted
Dec 10, 2019
Kind
B2
Abstract

A downhole filter tool is placed in a wellbore for separating gas from a solution containing both gas and water in a subterranean hydrocarbon bearing formation. The filter tool includes a filter bag inserted inside a perforated inner tube that is surrounded by a casing. The filter bag comprises a layer of hydrophobic material that allows gas to be separated from the water.

Claims (49)

1. Apparatus for separating gas from a solution containing gas and water in a well, comprising:

a filter bag having an open end allowing the solution to be received under hydrostatic pressure into the interior of the filter bag, the filter bag including a filtering material configured to separate the gas from the water;

a tube sleeved over the bag, the tube having an open end into which the filter bag may be received, and plurality of perforations therein configured to allow the gas to escape from the tube; and

at least one flange, wherein the filter bag includes a substantially rigid mouth seated against the at least one flange.

2. The apparatus of claim 1 , wherein the filter bag includes:

a supporting inner layer allowing the gas to pass therethrough, and

an outer layer of the filtering material adhered to the supporting inner layer.

3. The apparatus of claim 2 , wherein the supporting inner layer is one of:

felt, and

polyester.

4. The apparatus of claim 2 , wherein the filtering material is polytetrafluoroethylene.

5. The apparatus of claim 1 wherein the bag substantially lines and conforms to interior walls of the tube.

6. Apparatus for separating gas from a solution containing gas and water in a well, comprising:

a filter bag having an open end allowing the solution to be received under hydrostatic pressure into the interior of the filter bag, the filter bag including a filtering material configured to separate the gas from the water;

a tube sleeved over the bag, the tube having an open end into which the filter bag may be received, and plurality of perforations therein configured to allow the gas to escape from the tube; and

an outer casing configured to be coupled with a gas pipe for removing a gas from the well, the outer casing surrounding and being spaced radially outward from the tube to define an outer chamber in which gas passing through the filter bag is accumulated for delivery to the gas pipe.

7. A wellbore tool, comprising:

a perforated intake tube configured to receive a solution containing gas and water within a well;

a perforated inner tube attached to the perforated intake tube for receiving the solution from the intake tube, the perforated inner tube defining an inner chamber;

a filter bag lining the inner chamber within the perforated inner tube, the filter bag including filtering material for separating the gas from the water; and

a casing surrounding the perforated inner tube and defining an outer chamber in which the gas separated by the filter bag is received,

wherein each of the perforated intake tube, the perforated inner tube, and the casing includes a flange, and the flanges are stacked and fastened together.

8. The wellbore tool of claim 7 , further comprising:

a pipe coupler attached to the casing and coupled with the outer chamber, the pipe coupler being configured to be coupled with a gas pipe for removing gas from the wellbore tool.

9. The wellbore tool of claim 7 , wherein:

the filter bag includes an open end provided with a substantially rigid mouth, and

the rigid mouth is seated against one of the flanges.

10. The wellbore tool of claim 7 , wherein:

the perforated intake tube includes a closed top end having perforations therein, and

the casing includes a closed top spaced above the closed top end of the perforated intake tube and provided with perforations therein.

11. The wellbore tool of claim 7 , wherein the filter bag includes:

a supporting inner layer allowing the gas to pass therethrough, and

an outer layer of the filtering material adhered to the supporting inner layer.

12. The wellbore tool of claim 11 , wherein the supporting inner layer is one of:

felt, and

polyester.

13. The wellbore tool of claim 7 , wherein the filtering material is polytetrafluoroethylene.

14. The wellbore tool of claim 7 , wherein the perforated inner tube and the casing are cylindrical in shape and concentric with each other.

15. A wellbore tool, comprising:

a perforated intake tube configured to receive a solution containing gas and water within a well;

a perforated inner tube attached to the perforated intake tube for receiving the solution from the intake tube, the perforated inner tube defining an inner chamber;

a filter bag lining the inner chamber within the perforated inner tube, the filter bag including filtering material for separating the gas from the water, the filter bag being configured to be held against the inner tube by hydrostatic pressure and removable from the inner tube through the perforated intake tube; and

a casing surrounding the perforated inner tube and defining an outer chamber in which the gas separated by the filter bag is received.

16. A wellbore tool, comprising:

a perforated intake tube configured to receive a solution containing gas and water within a well;

a perforated inner tube attached to the perforated intake tube for receiving the solution from the intake tube, the perforated inner tube defining an inner chamber and having an annular flange;

a filter bag lining the inner chamber within the perforated inner tube, the filter bag including filtering material for separating the gas from the water; and

a casing surrounding the perforated inner tube and defining an outer chamber in which the gas separated by the filter bag is received, the casing including an annular flange,

wherein the annular flange of the perforated inner tube and the annular flange of the casing are secured together.

Continuity (2)
Provisional Application 62393041 · Sep 11, 2016
Related Publication 20180073334A1 · Mar 15, 2018
Cited By (1)
US 12,497,883