IP Library Granted Patent US 12,486,746
Granted Patent B2
US 12,486,746 · App. 18/818,967 · Granted Dec 2, 2025

Screen-out flow device and process

Inventor: Matthew Joseph Brooks (Calgary, CA)
E21B43/26E21B34/142E21B43/12E21B2200/06
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Quick Facts
Patent No.
US 12,486,746
App. No.
18/818,967
Granted
Dec 2, 2025
Kind
B2
Abstract

A process for generating fluid flow out of a first fracture zone of a well including a liner or casing is described. The process is engaged to remove a screen-out condition and/or to protect downhole tools deployed in the well and includes the steps of providing the casing with a fluid flow pathway extending from a first fracture zone to an adjacent fracture zone downhole from the first fracture zone. The fluid flow pathway becomes operable when a pre-determined parameter is reached as a result of the screen-out condition. A device for providing the fluid flow pathway is also described.

Claims (28)

1 . A process for generating fluid flow out of a first fracture zone of a well including a liner or casing to remove a screen-out condition and/or to protect one or more downhole tools deployed in the well, the process comprising:

providing the casing with a permanent or temporary fluid flow pathway extending from a first fracture zone to an adjacent fracture zone downhole from the first fracture zone, wherein the fluid flow pathway becomes operable when a pre-determined parameter is indicated in the well,

wherein the permanent or temporary fluid flow pathway is provided by providing the liner or casing with a flow device defined by a channel, the channel configured to permit fluid to flow from outside of the casing to an interior cavity of the casing, wherein the channel provides the permanent or temporary fluid flow pathway from the first fracture zone to the adjacent fracture zone downhole from the first fracture zone,

wherein the flow device is integrated into the liner or casing to form part of the liner or casing, and

wherein the flow device is configured for use with a fracturing system using a ball-valve activated sleeve or a dart-valve activated sleeve.

2 . The process of claim 1 , wherein the channel comprises a blocking member configured to disengage from the channel when the pre-determined parameter is reached within the channel.

3 . The process of claim 2 , wherein the pre-determined parameter is selected as a pressure indicating a screen-out condition and/or a pressure that will cause damage to the one or more downhole tools.

4 . The process of claim 3 , wherein the channel further comprises a shield member which is pushed out of the channel when the blocking member is disengaged from the channel.

5 . The process of claim 4 , wherein the shield member is formed of millable or dissolvable material.

6 . The process of claim 1 , wherein the flow device is connected to an outer sidewall of the liner or casing.

7 . The process of claim 1 , wherein the first fracture zone is a plugged and perforated zone isolated by a set of fracturing plugs and the fluid flow pathway is provided by remotely disengaging a lower fracturing plug of the set of fracturing plugs and allowing the lower fracturing plug to move in the downhole direction to extend a length of the first fracture zone until it encompasses an area of the adjacent fracture zone.

8 . A flow device for generating fluid flow out of a first fracture zone of a well including a liner or casing to remove a screen-out condition and/or to protect one or more downhole tools deployed in the well, the device comprising:

a main body defined by a channel, the channel configured to permit fluid to flow from outside of the liner or casing to an interior cavity of the liner or casing, wherein the channel provides a fluid flow pathway from the first fracture zone to the adjacent fracture zone downhole from the first fracture zone; and

a sub-casing configured to permit the sub-casing to form a part of the liner or casing, wherein the flow device is configured for use with a fracturing system using a ball-valve activated sleeve or a dart-valve activated sleeve.

9 . The flow device of claim 8 , wherein the channel comprises a blocking member configured to disengage from the channel when a pre-determined parameter is reached within the channel.

10 . The flow device of claim 9 , wherein the pre-determined parameter is selected as a pressure indicating a screen-out condition and/or a pressure that will cause damage to the one or more downhole tools.

11 . The flow device of claim 10 , wherein the channel further comprises a shield member which is pushed out of the channel when the blocking member is disengaged from the channel.

12 . The flow device of claim 11 , wherein the shield member is formed of millable or dissolvable material.

13 . The flow device of claim 9 , wherein the main body is further defined by a fracturing channel providing a flow path to form a fracture or to treat a prior-formed fracture.

14 . A flow device for generating fluid flow out of a first fracture zone of a well including a liner or casing to remove a screen-out condition and/or to protect one or more downhole tools deployed in the well, the device comprising:

a main body defined by a channel, the channel configured to permit fluid to flow from outside of the liner or casing to an interior cavity of the liner or casing, wherein the channel provides a fluid flow pathway from the first fracture zone to the adjacent fracture zone downhole from the first fracture zone; and

a sub-casing configured to permit the sub-casing to form a part of the liner or casing, wherein the flow device is configured for use with a coiled tubing activated sleeve.

15 . The flow device of claim 14 , wherein the main body comprises an internal sliding sleeve configured to open and close the fracturing channel.

16 . The flow device of claim 14 , wherein the channel comprises a blocking member configured to disengage from the channel when a pre-determined parameter is reached within the channel.

17 . The flow device of claim 16 , wherein the pre-determined parameter is selected as a pressure indicating a screen-out condition and/or a pressure that will cause damage to the one or more downhole tools.

18 . The flow device of claim 17 , wherein the channel further comprises a shield member which is pushed out of the channel when the blocking member is disengaged from the channel.

19 . The flow device of claim 18 , wherein the shield member is formed of millable or dissolvable material.

20 . The flow device of claim 14 , wherein the main body is further defined by a fracturing channel providing a flow path to form a fracture or to treat a prior-formed fracture.

Continuity (2)
Provisional Application 63536779 · Sep 6, 2023
Related Publication 20250075603A1 · Mar 6, 2025
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