GB2475813A

Communicating Fluids with a Heated-Fluid Generation System

Abstract

A supply tube system (140) for use in a wellbore (160) may have multiple tubes, a number of which can be readily coupled to a downhole steam generator or other heated-fluid generator device (200). The system (140) may include a connector (500) that simplifies the process of coupling the supply tube system (140) to the steam generator (200) and provides for fluid communication between each supply conduit (115), (615), and (715) and the associated input port of the steam generator.

GB2475813A, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Projected expiry passed 16 August 2026, 0.1 years ago.

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

19 claims: 5 independent, 14 dependent

  1. 1
    Embodiment 19 A system for generating heated fluid in a wellbore, comprising:a heated-fluid generator device disposed in a wellbore and adapted to output a heated fluid;and a first and second tubes residing in the wellbore and coupled to the heated-fluid generator, the first tube at least partially defining a first conduit and the second tube at least partially defining a second conduit, both the first and second conduits being in fluid communication with the heated-fluid generator device, wherein at least one of the first and second tubes comprises a coiled tubing. Embodiment 20 The system of embodiment 19, wherein the first tube resides within the second tube so as to define a inner fluid conduit disposed within an intermediate fluid conduit. Embodiment 21 The system of embodiment 20, further comprising a wellbore casing disposed in the wellbore, the wellbore casing surrounding at least a portion of the second tube to define a fluid conduit between the casing tube and the second tube. Embodiment 22 The system of embodiment 19, wherein at least one of the first and second tubes is substantially continuous between the heated-fluid generator and a ground surface. Embodiment 23 The system of embodiment 19, further comprising: a hanger device adapted to grip a wall of the wellbore and adapted to receive and support the heated-fluid generator device in the wellbore;and a connector adapted to couple at least one of the first and second tubes to the heated-fluid generator device and adapted to substantially seal against the hanger device. Embodiment 24 The system of embodiment 19, wherein the heated-fluid generator device comprises a steam generator. CLAIMS: 1. A method, comprising: lowering a heated-fluid generator device into a wellbore while the heated-fluid generator device is coupled to a first tube, wherein lowering the heated-fluid generator device into a wellbore further comprises receiving the heated-fluid generator device at a liner hanger;and coupling a second tube to the heated-fluid generator, at least one of the first tube or the second tube comprising a coiled tubing uncoiled from a spool and inserted into the wellbore.
  2. 10
    A method, comprising:lowering a heated-fluid generator device into a wellbore while the heated-fluid generator device is coupled to a first tube, the first tube being uncoiled from a spool as the heated-fluid generator device is lowered into the wellbore, wherein lowering the heated-fluid generator device into a wellbore further comprises receiving the heatedfluid generator device at a liner hanger;and coupling a second tube to the heated-fluid generator, one of the first tube or second tube nested within the other to define at least a portion of at least two fluid conduits.
  3. 14
    A system for generating heated fluid in a wellbore, comprising:a heated-fluid generator device disposed in a wellbore and adapted to output a heated fluid;a first and second tubes residing in the wellbore and coupled to the heated-fluid generator, the first tube at least partially defining a first conduit and the second tube at least partially defining a second conduit, both the first and second conduits being in fluid communication with the heated-fluid generator device, wherein at least one of the first or second tubes comprises a coiled tubing that is uncoiled from a spool when arranged in the wellbore;a hanger device adapted to grip a wall of the wellbore and adapted to receive and support the heated-fluid generator device in the wellbore;and a connector adapted to couple at least one of the first and second tubes to the heated-fluid generator device and adapted to substantially seal against the hanger device.
  4. 18
    A method substantially as described herein with reference to Figure 4.
  5. 19
    A system substantially as described herein with reference to Figures 1 to 3. Amendment to the claims have been filed as follows CLAIMS:1. A method, comprising: lowering a heated-fluid generator device into a wellbore while the heated-fluid 5 generator device is coupled to a first tube, wherein lowering the heated-fluid generator device into a wellbore further comprises receiving the heated-fluid generator device at a hanger device adapted to grip a wall of the wellbore and adapted to receive and support the heated-fluid generator device in the wellbore;and coupling a second tube to the heated-fluid generator device using a connector 10 adapted to couple the second tube to the heated-fluid generator device and adapted to substantially seal against the hanger device, at least one of the first tube or the second tube comprising a coiled tubing uncoiled from a spool and inserted into the wellbore;the method further comprising delivering water, an oxygen-containing fluid, and a fuel at the heated-fluid generator device so as to apply a heated fluid comprising steam 15 to a hydrocarbon formation disposed proximal to the wellbore. 2. The method of claim 1, wherein the first tube supports at least a portion of a weight of the heated-fluid generator device while lowering the heated-fluid generator device into the wellbore. 3. The method of claim 1, wherein one of the first tube or second tube is disposed 20 inside of the other tube to define a first fluid conduit inside of a second fluid conduit. 4. The method of claim 1, further comprising coupling the first tube to the heatedfluid generator device using the connector, wherein one of the connector or the second tube comprises a stab portion and the other comprises a receptacle adapted to , sealingly receive the stab portion and couple second tube with the connector after the 25 heated-fluid generator device is lowered into the wellbore. 5. The method of claim 4, wherein the connector comprises a first port in communication with the first fluid conduit and the heated-fluid generator device and comprises a second port in communication with the second conduit and the heated·. fluid generator device. 6. The method of claim 1, wherein the first tube and the second tube are received within a casing and the casing, the first tube, and the second tube at least partially define at least three substantially nested conduits. 7. The method of claim 1, wherein the first tube and the second tube are received 5 within a casing and the casing, the first tube, and the second tube at least partially define at least three substantially nested conduits and further comprising receiving a fuel through the first conduit to the heated-fluid generator device, receiving an oxygencontaining fluid through the second conduit to the heated-fluid generator device, and receiving water through a third conduit. 10 8. The method of claim 1, wherein at least one of the first tube and the second tube is continuous between the heated-fluid generator and a ground surface. 9. A method, comprising: lowering a heated-fluid generator device into a wellbore while the heated-fluid generator device is coupled to a first tube, the first tube being uncoiled from a spool as 15 the heated-fluid generator device is lowered into the wellbore, wherein lowering the heated-fluid generator device into a wellbore further comprises receiving the heatedfluid generator device at a hanger device adapted to grip a wall of the wellbore and adapted to receive and support the heated-fluid generator device in the wellbore;and coupling a second tube to the heated-fluid generator device using a connector 20 adapted to couple at least one of the first and second tubes to the heated-fluid generator device and adapted to substantially seal against the hanger device, one of the first tube or second tube nested within the other to define at least a portion of at least two fluid conduits;·;the method further comprising delivering water, an oxygen-containing fluid, and a fuel at the heated-fluid generator device so as to apply a heated fluid comprising steam to a hydrocarbon formation disposed proximal to the wellbore. 10. The method of claim 9, wherein the first tube supports at least a portion of a weight of the heated-fluid generator device while lowering the heated-fluid generator * device into the wellbore.