MY201741A

Combined well plug/chemical heater assemblies for use in down-hole operations and associated heater cartridges

Abstract

The present invention provides a cartridge (1) for a chemical heater used in down- hole operations. The cartridge (1) comprises a quantity of a chemical reaction heat source (2) wrapped in a temporary coating (3) that is capable of maintaining the shape of the cartridge (1) prior to use but which is consumed during the burn of the heater. The present invention also provides a eutectic/bismuth based alloy well plugging/sealing tool (5). The tool (5) having a tubular heater body (6) with an internal cavity (8) capable of receiving a chemical heat source and a quantity of eutectic/bismuth based alloy (7) provided in thermal communication with the heater body (6) around an outer surface of the heater body (6). The tool has a sleeve (10) provided around an outer surface of the alloy (7), which insulates and/or mechanically protects the alloy down-hole. In this way the sleeve (10) enables the diameter of tool (5) to be reduced whilst maintaining its functionality. In further aspect, the present invention also discloses the provision of a refractory lining (20) on the inner walls of the tubular heater body of chemical heaters, such as the heater (6) used in the eutectic/bismuth based alloy well plugging/sealing tool (5).

MY201741A, drawing sheet 1
Sheet 1 of 4

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

8 claims: 4 independent, 4 dependent

  1. 1
    Claims 1. A eutectic/bismuth based alloy well plugging/sealing tool (5), said tool (5) comprising:a tubular heater body (6) with an internal cavity (8) in which a chemical heat source material (2) is received;a quantity of eutectic/bismuth based alloy (7) provided in thermal communication with the heater body (6) around an outer surface of the heater body (6);a sleeve (10) provided around an outer surface of the alloy (7) such that the heater body (6) and the sleeve (10) define an annular space within which at least a portion of the alloy (7) is enclosed;wherein the sleeve (10), which is formed from a material with insulating properties, is configured to reduce the heat lost from said annular space;wherein the sleeve (10) does not extend the full length of either the heater body (6) or the alloy (7) such that, in use, molten alloy and heat can escape from the insulated annular space at the point where the sleeve (10) ends and leave the tool (5);and said tool (5) further comprising wear pads (12) that extend radially outwards from the sleeve (10).
  2. 5
    The well tool (5) of any of claims 1 to 4, wherein the sleeve (10) is formed from one or more of the following:fibre glass, thin steel, carbon fibre, and synthetic fibre of a high tensile strength (e.g. Kevlar ®).
  3. 6
    The well tool (5) of any of claims 1 to 5, further comprising connection means for attaching the tool to a well deployment tool (15).
  4. 8
    The well tool (5) of any of claims 1 to 7, further comprising resilient basing means (19) located within the cavity (8) of the tubular heater body (6) that are 5 configured to impart pressure on any chemical heat source received within the cavity (8).