IP Library Patent Application 17281133
Patent Application
App. No. 17/281,133

NOZZLE FOR GAS CHOKING

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Quick Facts
Patent No.
US None
App. No.
17/281,133
Abstract

A nozzle for controlling the flow of a gas component of a fluid produced from a hydrocarbon-bearing reservoir, the fluid comprising oil and gas, comprises a fluid passage extending between an inlet and an outlet, wherein the fluid passage comprises a constriction for choking the flow of the gas component of the fluid.

Claims (48)

1 . A nozzle for controlling flow of a gas component of a fluid comprising a mixture of oil and gas, into a pipe, the pipe having at least one port along its length, the nozzle being adapted to be located on the exterior of the pipe and adjacent one of the at least one port, the nozzle comprising:

a body having an inlet, an outlet, and a fluid conveying passage extending between the inlet and outlet;

wherein, the passage comprises:

a first region having a converging-diverging region forming a throat, the throat being proximal to the inlet and defining a constriction in the passage; and,

a second region downstream of the first region having a gradually increasing cross-sectional area extending towards the outlet.

2 . The nozzle of claim 1 , wherein the constriction comprises a region of minimum cross-sectional area in the passage.

3 . The nozzle of claim 1 , wherein the constriction is sized to accelerate the gas component to sonic velocity.

4 . The nozzle of claim 1 , wherein the constriction comprises a curved passage extending between the inlet and the second region.

5 . The nozzle of claim 1 , wherein the constriction has a length forming a region of constant cross-sectional area.

6 . The nozzle of claim 1 , wherein the second region is defined by a wall having an angle of divergence less than or equal to about 15 degrees.

7 . The nozzle of claim 1 , wherein the passage further comprises a region of generally constant cross-sectional area between the second region and the outlet.

8 . The nozzle of claim 1 , wherein the diameters of the first and second openings are the same.

9 . The nozzle of claim 1 , wherein the length of the first region is less than or equal to about 10% of the length of the passage.

10 . The nozzle of claim 1 , wherein the radius of the constriction is about 33% the radius of the first or second opening.

11 . An apparatus for controlling flow, from a subterranean reservoir, of a gas component, of a fluid comprising a mixture of oil and gas, the apparatus comprising a pipe having at least one port along its length, and at least one nozzle according to claim 1 .

12 . An apparatus for controlling flow, from a subterranean reservoir, of a gas component, of a fluid comprising a mixture of oil and gas, the apparatus comprising:

a pipe segment having at least one port along its length;

at least one nozzle located on the exterior of the pipe and adjacent one of the at least one port; and,

and a means for locating the nozzle on the pipe adjacent the port;

wherein the nozzle comprises:

a body having an inlet, an outlet, and a fluid conveying passage extending between the inlet and outlet;

wherein, the passage comprises:

a first region having a converging-diverging region forming a throat, the throat being proximal to the inlet and defining a constriction in the passage; and,

a second region downstream of the first region having a gradually increasing cross-sectional area extending towards the outlet.

13 . The apparatus of claim 12 , wherein the means for locating the nozzle comprises a clamp.

14 . The apparatus of claim 12 , wherein the apparatus further comprises a sand screen and wherein the nozzle is positioned to receive fluids passing through the sand screen prior to entering the port.

15 . The apparatus of claim 12 , wherein the constriction comprises a region of minimum cross-sectional area in the passage.

16 . The apparatus of claim 12 , wherein the constriction is sized to accelerate the gas component to sonic velocity.

17 . The apparatus of claim 12 , wherein the constriction of the nozzle comprises a curved passage extending between the inlet and the second region.

18 . The apparatus of claim 12 , wherein the constriction of the nozzle has a length forming a region of constant cross-sectional area.

19 . The apparatus of claim 12 , wherein the second region of the nozzle is defined by a wall having an angle of divergence less than or equal to about 15 degrees.

20 . The apparatus of claim 12 , wherein the passage of the nozzle further comprises a region of generally constant cross-sectional area between the second region and the outlet.

21 . The apparatus of claim 12 , wherein the diameters of the first and second openings of the nozzle are the same.

22 . The apparatus of claim 12 , wherein the length of the first region of the nozzle is less than or equal to about 10% of the length of the passage.

23 . The apparatus of claim 12 , wherein the radius of the constriction of the nozzle is about 33% the radius of the first or second opening.

24 . A method of producing fluids from a subterranean reservoir, the method comprising:

a) flowing the fluids through a first, converging-diverging region of a nozzle; and

b) flowing the fluids through a second, diverging region of the nozzle, wherein the second region has a gradually increasing cross-sectional area.

25 . The method of claim 24 , wherein the fluids are flowed through a nozzle, wherein the nozzle comprises:

a body having an inlet, an outlet, and a fluid conveying passage extending between the inlet and outlet;

wherein, the passage comprises:

a first region having a converging-diverging region forming a throat, the throat being proximal to the inlet and defining a constriction in the passage; and,

a second region downstream of the first region having a gradually increasing cross-sectional area extending towards the outlet.

26 . The method of claim 24 , wherein the fluids are flowed through an apparatus comprising at least one nozzle, wherein the nozzle comprises:

a body having an inlet, an outlet, and a fluid conveying passage extending between the inlet and outlet;

wherein, the passage comprises:

a first region having a converging-diverging region forming a throat, the throat being proximal to the inlet and defining a constriction in the passage; and,

a second region downstream of the first region having a gradually increasing cross-sectional area extending towards the outlet.

Assignments (6)
RELEASE OF SECOND LIEN SECURITY INTEREST IN PATENTS RECORDED AT REEL 066565/FRAME 0968 Recorded Nov 12, 2024
From: GLAS USA LLC
To: FORUM ENERGY TECHNOLOGIES, INC.; FORUM US, INC.; GLOBAL TUBING, LLC; VARIPERM ENERGY SERVICES INC.
Reel/Frame 069338/0131 →
ASSIGNMENT AND ASSUMPTION OF SECOND LIEN TERM LOAN INTELLECTUAL PROPERTY SECURITY AGREEMENTS Recorded Sep 27, 2024
From: VARIPERM ENERGY SERVICES PARTNERSHIP, AS RESIGNING COLLATERAL AGENT AND ASSIGNOR
To: GLAS USA LLC, AS SUCESSOR AGENT AND ASSIGNEE
Reel/Frame 069067/0317 →
SECURITY INTEREST Recorded Jan 8, 2024
From: VARIPERM ENERGY SERVICES, INC.
To: WELLS FARGO, NA
Reel/Frame 066049/0344 →
SECURITY INTEREST Recorded Jan 5, 2024
From: FORUM ENERGY TECHNOLOGIES, INC.; FORUM US, INC.; GLOBAL TUBING, LLC; VARIPERM ENERGY SERVICES INC.
To: VARIPERM ENERGY SERVICES PARTNERSHIP
Reel/Frame 066565/0968 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2022
From: RGL RESERVOIR MANAGEMENT INC.
To: VARIPERM ENERGY SERVICES INC.
Reel/Frame 059680/0108 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2021
From: ZHU, DA
To: RGL RESERVOIR MANAGEMENT INC.
Reel/Frame 056740/0735 →