EP3551832A1

Thru-tubing retrievable intelligent completion system

Abstract

This record has no abstract on file.

Term

11.2 yearsto projected expiry

Projected expiry 5 December 2037, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

22 claims: 13 independent, 9 dependent

  1. 1
    Claims of equivalent WO 2018106642 A1 CLAIMS What is claimed is:1. A thru-tubing completion system comprising: a sub-surface completion unit (SCU) configured to pass through production tubing disposed in a wellbore of a well and to be disposed in a target zone of an open- holed portion of the wellbore and perform completion operations in the target zone, the SCU comprising: a SCU wireless transceiver;one or more SCU anchoring seals configured to be positioned in an un- deployed position and a deployed position, the un-deployed position of the one or more SCU anchoring seals enabling the SCU to pass through the production tubing disposed in the wellbore of the well, and the deployed position of the one or more SCU anchoring seals providing a seal against a wall of the target zone of the open-holed portion of the wellbore to provide zonal isolation between regions in the wellbore;and one or more SCU centralizers configured to be positioned in an un- deployed position and a deployed position, the un-deployed position of the one or more SCU centralizers enabling the SCU to pass through the production tubing disposed in the wellbore of the well, and the deployed position of the one or more SCU centralizers positioning the SCU in the target zone of the open- holed portion of the wellbore;and a down-hole wireless transceiver configured to be disposed at a down-hole end of the production tubing in the wellbore of the well, to be communicatively coupled to a surface control system of the well, to communicate wirelessly with the SCU wireless transceiver, and to provide for communication between the SCU wireless transceiver and the surface control system of the well.
  2. 4
    The system of any preceding claim, wherein at least one of the one or more anchoring seals is retrievable, and wherein the at least one of the one or more anchoring seals that is retrievable is configured to be removed from the target zone with a body of the SCU when the body of the SCU is removed from the target zone.
  3. 5
    The system of any preceding claim, wherein at least one of the one or more anchoring seals is detachable, and wherein the at least one of the one or more anchoring seals that is detachable is configured to detach from a body of the SCU and remain in the target zone when the body of the SCU is removed from the target zone.
  4. 7
    The system of any preceding claim, wherein at least one of the one or more anchoring seals is non-retrievable, and wherein the at least one of the one or more anchoring seals that is non-retrievable is configured to be inflated with a hardening substance and to detach from a body of the SCU and remain in the target zone when the body of the SCU is removed from the target zone.
  5. 9
    The system of any preceding claim, wherein the deployed position of the one or more SCU anchoring seals is configured to isolate a region of the target zone comprising a breakthrough of fluid to inhibit the fluid of the breakthrough from flowing into the wellbore.
  6. 10
    The system of any preceding claim, wherein the SCU comprises a plurality of SCU modules (SCUMs) assembled to one another.
  7. 13
    The system of any preceding claim, wherein the SCU wireless transceiver is configured to, in response to establishing commutation with the surface control system of the well, communicate directly with the surface control system of the well.
  8. 14
    The system of any preceding claim, further comprising a positioning device configured to provide a motive force to advance the SCU through the production tubing and the wellbore.
  9. 15
    The system of any preceding claim, further comprising:the production tubing disposed in the wellbore;and the surface control system of the well.
  10. 16
    A thru-tubing completion system comprising:a surface control system;production tubing disposed in a wellbore of a well;a sub-surface completion unit (SCU) configured to pass through the production tubing and to be disposed in a target zone of an open-holed portion of the wellbore and perform completion operations in the target zone, the SCU comprising: a SCU wireless transceiver;one or more SCU anchoring seals configured to be positioned in an un- deployed position and a deployed position, the un-deployed position of the one or more SCU anchoring seals enabling the SCU to pass through the production tubing disposed in the wellbore of the well, and the deployed position of the one or more SCU anchoring seals providing a seal against a wall of the target zone of the open-holed portion of the wellbore to provide zonal isolation between regions in the wellbore;and one or more SCU centralizers configured to be positioned in an un- deployed position and a deployed position, the un-deployed position of the one or more SCU centralizers enabling the SCU to pass through the production tubing disposed in the wellbore of the well, and the deployed position of the one or more SCU centralizers positioning the SCU in the target zone of the open- holed portion of the wellbore;a down-hole wireless transceiver configured to be disposed at a down-hole end of the production tubing in the wellbore of the well, to be communicatively coupled to the surface control system of the well, to communicate wirelessly with the SCU wireless transceiver, and to provide for communication between the SCU wireless transceiver and the surface control system of the well;and a positioning device configured to provide a motive force to advance the SCU through the production tubing and the wellbore.
  11. 17
    A method of completing a target zone of a wellbore of a well, the method comprising:passing a sub-surface completion unit (SCU) through production tubing disposed in a wellbore of a well;passing the SCU though the wellbore of the well to a target zone of an open-holed portion of the wellbore;deploying one or more SCU centralizers of the SCU to position the SCU in the target zone of the open-hole portion of the wellbore;anddeploying one or more SCU anchoring seals of the SCU to seal against a wall of the target zone of the open-hole portion of the wellbore to provide zonal isolation between regions in the wellbore.
  12. 20
    The method of any one of claims 17-19, wherein the SCU comprises a plurality of SCU modules (SCUMs) assembled to one another, the method further comprising:passing the plurality of SCUMs through the production tubing unassembled to one another;and assembling the plurality of SCUMs to one another in the open-holed portion of the wellbore to form the SCU down-hole after the SCUMs are passed through the production tubing.
  13. 21
    The method of any one of claims 17-20, wherein the SCU comprises a SCU wireless transceiver configured to communicate with a surface control system of the well by way of wireless communication with a down-hole wireless transceiver, the method further comprising:providing a down-hole wireless transceiver at a down-hole end of the production tubing in the wellbore of the well, the down-hole wireless transceiver communicatively coupled to a surface control system of the well, and configured communicate wirelessly with the SCU wireless transceiver, and to provide for communication between the SCU wireless transceiver and the surface control system of the well.