IP Library › Granted Patent US 10,883,329
Granted Patent B2
US 10,883,329 · App. 16/060,607 · Granted Jan 5, 2021

Ignitor, system and method of electrical ignition of exothermic mixture

Inventors: Stian Tøndel (Trondheim, NO); Kent-Andre Bomann (Flatåsen, NO); Michael Skjold (Ranheim, NO)
Assignee: INTERWELL P&A AS
E21B29/02E21B29/10E21B33/13E21B36/008
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Quick Facts
Patent No.
US 10,883,329
App. No.
16/060,607
Granted
Jan 5, 2021
Kind
B2
Abstract

A system and a method of an ignitor for electrical ignition of an exothermic mixture to be used in wells, for the purposes of reinstatement of a barrier in well(s), subterranean storage reservoirs for a variety of potential environmental damaging materials such as CO2, radioactive storage, and other uses. Additionally, the ignitor may include a housing with a compartment within the housing, a first exothermic mixture of at least a metal and an oxide provided in the compartment, a first electrode connectable to a first terminal of a power supply, and a second electrode connectable to a second terminal of the power supply.

Claims (33)

1. An ignitor for use in a wellbore, the ignitor comprising:

a housing;

a compartment provided within the housing;

a first exothermic mixture of at least a metal and an oxide provided in the compartment,

wherein the first exothermic mixture comprises fine-grained particles of metal and

oxide particles having a particle size between 0.1 and 1 mm;

a first electrode connectable to a first terminal of a power supply; and

a second electrode connectable to a second terminal of the power supply;

wherein at least parts of the first and second electrodes are in contact with the first exothermic mixture,

wherein the first electrode and the second electrode are provided at a distance from each other, and

wherein, upon appliance of a voltage above a predetermined threshold value between the first and second electrodes, an electromagnetic field is created in the first exothermic mixture between the first and second electrodes.

2. The ignitor according to claim 1 , wherein the ignitor further comprises a holder for holding the first electrode and the second electrode, wherein the holder is made of an electric isolating material.

3. The ignitor according to claim 1 , wherein the housing further comprises at least one pressure seal configured to seal against a pressure difference between an outside of the housing and an inside of the housing.

4. The ignitor according to claim 1 , wherein the first and second electrodes are formed of a metal alloy having a melting temperature above 1400° C.

5. The ignitor according to claim 1 , wherein the first electrode and second electrode are embedded in the first exothermic mixture.

6. A system for electric ignition of an exothermic mixture in a wellbore, the system comprising at least one ignitor according to claim 1 , wherein the system further comprises the power supply, wherein the first terminal of the power supply is connected to the first electrode of the ignitor and the second terminal of the power supply is connected to the second electrode of the ignitor, and wherein the power supply comprises an electric power source and a control device.

7. The system according to claim 6 , wherein the control device comprises a switch device connected between the ignitor and the electric power source.

8. The system according to claim 7 , wherein the electric power source comprises a battery, and wherein the switch device is a time switch.

9. The system according to claim 6 , further comprising a second exothermic mixture comprising at least a metal and an oxide, wherein the second exothermic mixture at least partly encloses said housing, such that an ignition of the first exothermic mixture ignites the second exothermic mixture.

10. The system according to claim 9 , wherein the power supply comprises data for representation of previous successful ignitions, and wherein an operator may decide whether an ignition has been successful or not based on comparison with said data.

11. The system according to claim 9 , wherein the second exothermic mixture comprises iron oxide and aluminium.

12. The system according to claim 9 , wherein the second exothermic mixture fully encloses the housing.

13. A method of activating an exothermic mixture comprising:

locating a second exothermic mixture at a desired position in a well,

locating an ignitor in proximity of the second exothermic mixture, the ignitor

comprising:

a housing;

a compartment provided within the housing;

a first exothermic mixture provided in the compartment, wherein the first exothermic mixture comprises fine-grained particles of metal and oxide particles having a particle size between 0.1 and 1 mm;

a first electrode connectable to a first terminal of a power supply;

a second electrode connectable to a second terminal of the power supply;

wherein the first electrode and the second electrode are provided at a distance from each other; and

applying a voltage above a certain threshold value between the first and second electrodes thereby creating an electromagnetic field in the first exothermic mixture between the first and second electrodes.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2018
From: BU, MINGLI
To: MIASOLE PHOTOVOLTAIC TECHNOLOGY CO., LTD.
Reel/Frame 046317/0566 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2018
From: TONDEL, STIAN; BOMANN, KENT-ANDRE; SKJOLD, MICHAEL
To: INTERWELL P&A AS
Reel/Frame 046078/0160 →
Priority Claims (1)
NO 20151689 · Dec 9, 2015 · national
Continuity (1)
Related Publication 20180371859A1 · Dec 27, 2018
Cited By (2)
US 12,366,151 US 12,560,048