AU2014201719B2

Well tools operable via thermal expansion resulting from reactive materials

Abstract

Methods of actuating a well tool can include releasing chemical energy from at least one portion of a reactive material, thermally expanding a substance in response to the 5 released chemical energy, and applying pressure to a piston as a result of thermally expanding the substance, thereby actuating the well tool, with these steps being repeated for each of multiple actuations of the well tool. A well tool actuator can include a substance contained in a chamber, one 10 or more portions of a reactive material from which chemical energy is released, and a piston to which pressure is applied due to thermal expansion of the substance in response to each release of chemical energy. A well tool actuator which can be actuated multiple times may include 15 multiple portions of a gas generating reactive material, and a piston to which pressure is applied due to generation of the gas. - - 12 30-- - A - 40 -- -- 14

AU2014201719B2, drawing sheet 1
Sheet 1 of 2

Term

Projected expiry 21 March 2034.

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

20 claims: 3 independent, 17 dependent

  1. 1
    Claims:1. A fluid sampler including: a chamber defined by a piston slidingly engaged in a well tool, wherein the 5 chamber is configured to receive a fluid;a valve disposed in communication with the chamber and configured to selectively allow the fluid to be received into the chamber through the valve and to be discharged from the chamber through the valve;a reactive material disposed in communication with the piston and 10 configured to release chemical energy when activated to thermally expand the fluid to pressurize the chamber.
  2. 7
    A method including the steps of:positioning a fluid sampler within a well, wherein the fluid sampler includes: 20/08/15,dh-21595 - claims - cdm.docx,25 -262014201719 20 Aug 2015 a chamber defined by a piston slidingly engaged in a well tool;a valve disposed in communication with the chamber and configured to selectively allow fluid communication between an exterior of the fluid sampler and the chamber;and 5 a reactive material disposed in communication with the piston and configured to pressurize the chamber upon activation;obtaining a sample of fluid in the chamber;releasing chemical energy from the reactive material to generate a pressure;and 10 transmitting the pressure to the sample through the piston.
  3. 14
    A method including the steps of:positioning a fluid sampler within a well, wherein the fluid sampler includes: a chamber defined by a piston slidingly engaged in a well tool;5 a valve disposed in communication with the chamber and configured to selectively allow fluid communication between an exterior of the fluid sampler and the chamber;and a plurality of portions of a reactive material disposed in communication with the piston and configured to pressurize the chamber upon activation;10 obtaining a sample of fluid in the chamber;releasing chemical energy from at least one of the portions of the reactive material to generate a first pressure;transmitting the first pressure to the sample through the piston;releasing chemical energy from at least one additional portion of the
  4. 15
    15 reactive material to generate a second pressure;and transmitting the second pressure to the sample through the piston. 15. The method of claim 14 wherein releasing chemical energy from at least one of the portions of the reactive material includes generating a gas from the 20 reactive material.
  5. 20
    20/08/15,dh-21595 - claims - cdm.docx,27 -28 20. The method of claim 14 wherein the reactive material includes aluminum and at least one substance selected from the group consisting of:iron oxide and copper oxide. 2014201719 20 Aug 2015 20/08/15,dh-21595 - claims - cdm.docx,28 2014201719 21 Mar 2014 ί/5 FIG.1 2014201719 21 Mar 2014 FIG.2 3/5 2014201719 21 Mar 2014 FIG.3 FIG.4 FIGS + 4/5 2014201719 21 Mar 2014 + FIG.6 FIG.7 FIG.8 + 2014201719 21 Mar 2014 FIG. 10 FIG.9