IP Library Granted Patent US 10,030,488
Granted Patent B2
US 10,030,488 · App. 15/029,172 · Granted Jul 24, 2018

Hydrocarbon production facility, production method and upgrade method

Inventors: Pierre Lemetayer (Pau, FR); Jean-Louis Beauquin (Saint-Faust, FR); Mark Banman (Calgary, CA)
Assignee: Total SA
E21B43/122E21B43/126E21B43/128E21B43/129
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Quick Facts
Patent No.
US 10,030,488
App. No.
15/029,172
Granted
Jul 24, 2018
Kind
B2
Abstract

A hydrocarbon production facility includes: a hydrocarbon well; a hydrocarbon production line including: in the well, a production tube, and on the surface, an evacuation tube from the production tube; on the surface, a source of pressurized gas; an injection line of pressurized gas in the hydrocarbon production line, linked to the source of pressurized gas; a pump for circulation of hydrocarbon from the well hydrocarbon circulation; a pneumatic motor for supplying power to the pump, fitted on the injection line of the pressurized gas and adapted to be rotated by expansion of the pressurized gas. A corresponding production method and an upgrade method of a facility are also disclosed.

Claims (48)

1. A hydrocarbon production facility, comprising:

a well of hydrocarbons;

a hydrocarbon production line comprising:

(a) in the well, a production tube, and

(b) on the surface, an evacuation tube from the production tube;

on the surface, a source of pressurized gas;

a pump for circulation of hydrocarbon from the well to the hydrocarbon production line;

an injection line of pressurized gas in the hydrocarbon production line, the injection line being connected to the source of pressurized gas and opening into a surface outside the well in the evacuation tube of the hydrocarbon production line, downstream of the pump for circulation;

a pneumatic motor located at the surface for supplying power to the pump for circulation, disposed on the injection line of the pressurized gas and adapted to be rotated by expansion of the pressurized gas; and

a mechanical transmission shaft connecting the pneumatic motor to the pump.

2. The hydrocarbon production facility according to claim 1 , where the pneumatic motor is an electric generator.

3. The hydrocarbon production facility according to claim 1 , wherein the pump in the well is one of: an electric submersible pump or a progressive cavity pump.

4. The hydrocarbon production facility according to claim 1 , wherein the pump is disposed in a well bottom hole.

5. The hydrocarbon production facility according to claim 1 , wherein the facility is configured to be activated by injection of pressurized gas into the production line.

6. The hydrocarbon production facility according to claims 1 , wherein the facility is configured to be remote from any power generation site location or inhabited place.

7. A method of operating a hydrocarbon production well activated by gas injection, using a hydrocarbon production facility and comprising the well, the hydrocarbon facility comprising:

a well of hydrocarbons;

a hydrocarbon production line comprising:

in the well, a production tube, and

on the surface, an evacuation tube from the production tube;

on the surface, a source of pressurized gas;

a pump for circulation of hydrocarbon from the well to the hydrocarbon production line;

an injection line of pressurized gas in the hydrocarbon production line, the injection line being connected to the source of pressurized gas and opening into a surface outside the well in the evacuation tube of the hydrocarbon production line, downstream of the pump for circulation;

a pneumatic motor located at the surface for supplying power to the pump for circulation, disposed on the injection line of the pressurized gas and adapted to be rotated by expansion of the pressurized gas;

a mechanical transmission shaft connecting the pneumatic motor to the pump;

the method comprising:

a) providing the pressurized gas from the pressurized gas source on the surface of the facility;

b) recovering energy by the expansion of the pressurized gas using the facility pneumatic motor;

c) actuating the pump for circulation of hydrocarbon from the well using the energy recovered in step b); and

d) injecting an expanded pressurized gas in the hydrocarbon production line of the facility.

8. A method according to claim 7 , wherein the pressurized gas is at a pressure higher than or equal to 70 bars prior to the expansion.

9. A method according to claim 7 , wherein the pressurized gas is expanded by the pneumatic motor to a pressure less than or equal to 30 bars.

10. The method according to claim 7 , where the pneumatic motor is an electric generator.

11. The method according to claim 7 , wherein the pump in the well is one of: an electric submersible pump or a progressive cavity pump.

12. The method according to claim 7 , wherein the pump is disposed in a well bottom hole.

13. A method of operating a hydrocarbon production well activated by gas injection, using a hydrocarbon production facility comprising:

a well of hydrocarbons;

a hydrocarbon production line comprising:

in the well, a production tube, and

on the surface, an evacuation tube from the production tube;

on the surface, a source of pressurized gas;

a pump for circulation of hydrocarbon from the well to the hydrocarbon production line;

an injection line of pressurized gas in the hydrocarbon production line, the injection line being connected to the source of pressurized gas, and opening into a surface outside the well in the evacuation tube of the hydrocarbon production line, downstream of the pump for circulation;

a pneumatic motor located at the surface for supplying power to the pump for circulation, disposed on the injection line of the pressurized gas and adapted to be rotated by expansion of the pressurized gas;

a mechanical transmission shaft connecting the pneumatic motor to the pump;

the method comprising the upgrade of the facility by:

positioning the pump for circulation of hydrocarbon from the well; and

positioning, on the injection line of the pressurized gas, the pneumatic motor for supplying power to the pump, adapted to be rotated by expansion of the pressurized gas.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE NAME OF THE ASSIGNEE PREVIOUSLY RECORDED AT REEL: 67096 FRAME: 87. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 26, 2024
From: TOTALENERGIES SE (PREVIOUSLY TOTAL SA THEN TOTAL SE)
To: TOTALENERGIES ONETECH
Reel/Frame 068051/0530 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2024
From: TOTALENERGIES SE (PREVIOUSLY TOTAL SA THEN TOTAL SE)
To: TOTALENERGIES ONETECH (PREVIOUSLY TOTALENERGIES ONE TECH)
Reel/Frame 067096/0087 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 21, 2016
From: LEMETAYER, PIERRE; BEAUQUIN, JEAN-LOUIS; BANMAN, MARK
To: TOTAL SA
Reel/Frame 038972/0352 →
Priority Claims (1)
FR 13 59993 · Oct 14, 2013 · national
Continuity (1)
Related Publication 20160258262A1 · Sep 8, 2016