IP Library Granted Patent US 9,566,542
Granted Patent B2
US 9,566,542 · App. 14/313,548 · Granted Feb 14, 2017

Method and a device for liquid treatment when compressing a well flow

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Quick Facts
Patent No.
US 9,566,542
App. No.
14/313,548
Granted
Feb 14, 2017
Kind
B2
Abstract

A device for separating liquid from gas in a well flow when compressing the well flow comprises a liquid separator ( 1 ′) having an inlet ( 13 ) for the well flow, an outlet ( 5 ) for gas and an outlet ( 4 ) for liquid. According to the invention separated liquid from the liquid separator ( 1 ′) is fine-divided in connection with the liquid outlet ( 4 ), and the fine-divided liquid is supplied into the gas outlet ( 5 ) at a mixing point ( 8 ) downstream the liquid separator ( 1 ′) and upstream a compressor ( 11 ).

Claims (28)

1. A method of separating liquid from gas in a well flow when compressing the well flow in a device comprising a liquid separator having a well flow inlet pipe for the well flow, a gas outlet pipe to output a gas and a liquid outlet pipe to output a separated liquid, and a compressor for receiving the gas from the gas outlet pipe and compressing the gas, the method comprising:

i) supplying all of the separated liquid from the liquid separator through the liquid outlet into the gas from the gas outlet pipe at a mixing point downstream of the liquid separator and upstream of the compressor;

ii) mixing all of the separated liquid received from the liquid outlet pipe into the gas from the gas outlet pipe at the mixing point;

iii) retaining separated liquid in the liquid separator for a retention period in case of liquid accumulation comprising surges or slugs in the well flow into the liquid separator, to avoid a liquid content of the gas into the compressor above a specified threshold;

iv) atomizing the separated liquid upstream of or at an inlet to the compressor; and

v) feeding all of the separated liquid and the gas into the compressor.

2. The method according to claim 1 , further comprising pumping and dispersing the separated liquid from the liquid separator into droplets by means of an ejector arranged in the liquid outlet pipe.

3. The method according to claim 2 , further comprising operating the ejector with compressed gas from any stage of the compressor, and supplying the compressed gas from the compressor to the ejector through a propellant gas pipe connected to any stage of the compressor or to an outlet of the compressor.

4. The method according to claim 3 , further comprising supplying the pressurized gas to the ejector in a set quantity and at a set pressure to cause a set distribution of droplet size.

5. The method according to claim 3 , further comprising arranging a control valve in the propellant gas pipe.

6. The method according to claim 5 , further comprising operating the ejector using pressurized cooling gas from a compressor motor, and supplying the pressurized cooling gas from the compressor motor to the ejector through a cooling gas pipe.

7. The method according to the claim 6 , further comprising providing a control valve in the cooling gas pipe.

8. The method according to claim 2 , wherein the dispersing of the separated liquid from the liquid separator through the liquid outlet pipe comprises using a pipe restriction at the mixing point.

9. The method according to the claim 8 , wherein the pipe restriction has a convergent part joined to the gas outlet pipe and a downstream divergent part joining the inlet of the compressor, and wherein the liquid outlet pipe terminates into the pipe restriction at a location between the convergent part and the divergent part.

10. The method according to claim 8 , further comprising providing a control valve in the gas outlet pipe upstream of the mixing point.

11. The method according to claim 8 , further comprising providing a control valve in the liquid outlet pipe.

12. The method according to claim 1 , wherein an atomizer nozzle is arranged in at least one of the liquid outlet pipe, the gas outlet pipe and the inlet to the compressor.

13. The method according to claim 5 , further comprising adjusting the control valve based on a reading of a signal from at least one level sensor or level meter for the separated liquid inside the liquid separator.

14. The method according to claim 1 , wherein the liquid separator includes a lower funnel formed portion.

15. The method according to claim 1 , wherein the liquid separator includes at least one cyclone.

16. The method according to claim 1 , further comprising arranging an atomizing nozzle in the liquid outlet line.

17. The method according to claim 1 , further comprising providing the well flow to the liquid separator via a single well flow inlet pipe that is arranged to terminate inside the liquid separator.

18. The method according to the claim 17 , wherein the well flow inlet pipe terminates in a longitudinal slit facing downwardly.

19. The method according to claim 17 , wherein the well flow inlet pipe that terminates inside the liquid separator causes pulse elimination from, cross-sectional distribution of, or some droplet separation from, inflowing liquid.

20. The method according to the claim 17 , wherein the well flow inlet pipe includes a pall ring box, guide vanes, gas rotation equipment, and at least one cyclone.

21. The method claim 1 , further comprising fine-cleaning or droplet separation within the liquid separator upstream of the gas outlet pipe.

22. The method according to the claim 21 , wherein the fine-cleaning or droplet separation uses one or more of:

a deflection separator, louvers, wire mats, fiber mats, or multi-cyclones.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2025
From: AKER SOLUTIONS AS
To: ONESUBSEA AS
Reel/Frame 073171/0859 →
MERGER AND CHANGE OF NAME Recorded Mar 2, 2017
From: AKER SUBSEA AS; AKER SOLUTIONS AS
To: AKER SOLUTIONS AS
Reel/Frame 041859/0328 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2015
From: STINESSEN, KJELL OLAV; OLSEN, GEIR INGE
To: AKER SUBESA AS
Reel/Frame 035218/0029 →