Nova Patents
EP3533967B1

Method for servicing a wellbore

Abstract

This record has no abstract on file.

EP3533967B1, drawing sheet 1
Sheet 1 of 9

Term

Projected expiry 10 February 2032.

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

10 claims: 1 independent, 9 dependent

  1. 1
    A method of servicing a wellbore (114), comprising:positioning a tubular string within the wellbore (114), the tubular string comprising a first sleeve system (200) with a first sliding sleeve (260) at least partially carried within a first ported case (208) and a first segmented seat (270) being radially divided into a plurality of segments and movable relative to the first ported case (208) between a first position in which the first seat (270) restricts movement of the first sliding sleeve (260) relative to the first ported case (208) and a second position in which the first seat (270) does not restrict movement of the first sliding sleeve (260) relative to the first ported case (208), and a first sheath (272) forming a continuous layer that covers one or more surfaces of the first segmented seat (270), wherein the first sleeve system (200) is positioned within the wellbore (114) proximate to a first zone (150) of the wellbore (114), the first sleeve system (200) being initially configured in an installation mode where fluid flow between a flow bore of the first sleeve system (200) and a port of the first sleeve system (200) is restricted;a second sleeve system (200), wherein the second sleeve system (200) is positioned within the wellbore (114) proximate to a second zone (150) of the wellbore (114), the second sleeve system (200) being initially configured in an installation mode where fluid flow between a flow bore of the second sleeve system (200) and a port of the second sleeve system (200) is restricted;isolating the first zone (150) of the wellbore (114) from the second zone (150) of the wellbore (114);and passing a first obturator (276) through at least a portion of the first sleeve system (200), thereby unlocking a first restrictor of the first sleeve system (200) and thereby transitioning the first sleeve system (200) to a delayed mode;allowing the first sleeve system (200) to transition from the delayed mode to a fully open mode;and communicating a fluid to the first zone (150) of the wellbore (114) via one or more ports of the first sleeve system (200).
  2. 6
    A method according to any one of claims 1 to 5, wherein isolating the first zone (150) of the wellbore (114) from the second zone (150) of the wellbore (114) comprises:placing a cementitious slurry within an annular space surrounding a portion of the tubular string between the first sleeve system (200) and the second sleeve system(200);and allowing the cementitious slurry to set.
  3. 7
    A method according to any one of claims 1 to 6, wherein isolating the first zone (150) of the wellbore (114) from the second zone (150) of the wellbore (114) comprises:placing a swellable packer about the tubular string between the first sleeve system (200) and the second sleeve system (200);contacting a fluid with the swellable packer;and allowing the swellable packer to swell to contact a wall of the wellbore (114).
  4. 8
    A method according to any one of claims 1 to 7, the tubular string further comprising a third sleeve system (200), wherein the third sleeve system (200) is positioned within the wellbore proximate to a second zone (150) of the wellbore (114), the third sleeve system (200) being initially configured in an installation mode where fluid flow between a flow bore of the third sleeve system (200) and a port of the third sleeve system (200) is restricted;and a fourth sleeve system(200), wherein the fourth sleeve system (200) is positioned within the wellbore proximate to the second zone (150) of the wellbore (114), the fourth sleeve system (200) being initially configured in an installation mode where fluid flow between a flow bore of the fourth sleeve system (200) and a port of the fourth sleeve system (200) is restricted;wherein the first obturator (276) passes through at least a portion of the first sleeve system (200) and at least a portion of the second sleeve system (200), thereby unlocking a first restrictor of the first sleeve system (200) and a second restrictor of the second sleeve system (200) and thereby transitioning the first sleeve system (200) and the second sleeve system (200) to a delayed mode;wherein the first sleeve system (200) and the second sleeve system (200) are allowed to transition from the delayed mode to a fully open mode;wherein a fluid is communicated to the first zone (150) of the wellbore (114) via one or more ports of the first sleeve system (200) and one or more ports of the second sleeve system (200) while not communicating a fluid to the second zone (150);and the method further comprises passing a second obturator (276) through at least a portion of the third sleeve system (200) and at least a portion of the fourth sleeve system (200), thereby unlocking a third restrictor of the third sleeve system (200) and a fourth restrictor of the fourth sleeve system (200) and thereby transitioning the third sleeve system (200) and the fourth sleeve system (200) to a delayed mode;allowing the third sleeve system (200) and the fourth sleeve system (200) to transition from the delayed mode to a fully open mode;and communicating a fluid to the second zone (150) of the wellbore (114) via one or more ports of the third sleeve system (200) and one or more ports of the fourth sleeve system (200).