CA3212909C

Apparatus and method of focused in-situ electrical heating of hydrocarbon bearing formations

Abstract

A system for in-situ electrical heating of a hydrocarbon bearing formation includes a tool having metal arms capable of extending radially within a well casing. Each metal arm includes an injection electrode, bucking electrode, and first and second monitoring electrodes. An insulating member mounted to each metal arm and configured to make contact with the casing and prevent the metal arm from directly contacting the casing. A switch is configured to be connected to the electrodes of one metal arm at a time. A logging cable having wires connecting the switch to ground surface instrumentation. The tool is lowered down a casing to or near the hydrocarbon bearing formation and creates an equi-potential surface over the tool length and emanating outwardly of the casing. A heat beam developed by focusing the current of the injection and bucking electrodes heats a region containing hydrocarbons, allowing hydrocarbon recovery.

CA3212909C, drawing sheet 1
Sheet 1 of 6

Term

9.5 yearsleft in the term

Expires 4 April 2036.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

20 claims: 9 independent, 11 dependent

  1. 1
    What is claimed is:1. A system for in-situ electrical heating of a hydrocarbon bearing formation comprising: a tool configured to be lowered down a well casing, the tool comprising: a plurality of metal arms radially extendible within the well casing, each of the plurality of metal arms including a plurality of electrodes comprising an injection electrode, a bucking electrode, and first and second monitoring electrodes;at least one roller mounted to each metal arm, the at least one roller configured to make contact with the casing;and a rotary switch having a plurality of distinct positions, the plurality of distinct positions being as many as the plurality of metal arms, for each distinct position the rotary switch configured to be electrically connected to the plurality of electrodes of one distinct metal arm;a logging cable having a plurality of wires, one end of the logging cable connected to the rotary switch and a second end of the logging cable connected to instrumentation at the ground surface;an injection voltage source electrically connected to the rotary switch;and a bucking voltage source electrically connected to the rotary switch, wherein for each metal arm, the rotary switch has a separate distinct position in which the injection voltage source feeds the injection electrode and the bucking voltage source feeds the bucking electrode.
  2. 11
    A system for in-situ electrical heating of a hydrocarbon bearing formation comprising:a tool configured to be lowered down a well casing, the tool comprising: a plurality of metal arms radially extendible within the well casing, each of the plurality of metal arms including a plurality of electrodes comprising an injection electrode, a bucking electrode, and first and second monitoring electrodes;at least one roller mounted to each metal arm, the at least one roller configured to make contact with the casing;and a rotary switch having a plurality of distinct positions, the plurality of distinct positions being as many as the plurality of metal arms, for each distinct position, the rotary switch configured to be electrically connected to the plurality of electrodes of one distinct metal;a logging cable having a plurality of wires, one end of the logging cable connected to the rotary switch and a second end of the logging cable connected to instrumentation at the ground surface;an injection power amplifier electrically connected to the rotary switch;and a bucking power amplifier electrically connected to the rotary switch, wherein for each metal arm, the rotary switch has a separate position in which the injection power amplifier feeds the injection electrode and the bucking power amplifier feeds the bucking electrode.
  3. 14
    The system of any one of claims 11 to 13, wherein the at least one roller is an insulating member configured to prevent the metal arm from directly contacting the casing.
  4. 15
    The system of any one of claims 11 to 14, wherein for each metal arm:the injection electrode is central;the first monitoring electrode surrounds and is coaxial with the injection electrode;the second monitoring electrode surrounds and is coaxial with the first monitoring electrode;and the bucking electrode surrounds and is coaxial with the second monitoring electrode, wherein a non-conducting material electrically separates each of the electrodes from one another.
  5. 16
    The system of any one of claims 11 to 15, wherein for each metal arm, the second monitoring electrode is electrically connected to the metal arm.
  6. 17
    The system of any one of claims 11 to 16, wherein for each metal arm, the injection electrode and the bucking electrode have cross-sectional areas that are substantially equal.
  7. 18
    The system of any one of claims 11 to 17, wherein for each metal arm the first monitoring electrode is configured to monitor the voltage at the injection electrode;and the second monitoring electrode is configured to monitor the voltage at the bucking electrode.
  8. 19
    The system of any one of claims 11 to 18, further comprising:an amplitude adjustable amplifier configured to adjust a voltage amplitude of the bucking power amplifier feeding the bucking electrode such that a voltage amplitude difference between the first and second monitoring electrodes is zero. -15Date reçue/Date received 2024-01 -24
  9. 20
    The system of any one of claims 11 to 19, further comprising:a phase shift amplifier configured to adjust a voltage phase of the bucking power amplifier feeding the bucking electrode such that a voltage phase difference between the first and second monitoring electrodes is zero. - 16Date reçue/Date received 2024-01 -24