Extraction from a formation with induction heating
An example of an apparatus is provided. The apparatus includes a magnetic core to be inserted into a borehole to a formation. The apparatus further includes a first coil wound about the magnetic core. In addition, the apparatus includes a first current supply to generate a first current to run through the first coil. Furthermore, the apparatus includes a first controller to control the first current supply. The first controller is to oscillate the first current to generate a magnetic field in the formation. Heat is to be generated in the formation via induction.
1. An apparatus comprising:
a magnetic core to be inserted into a borehole to a formation;
a first coil wound about the magnetic core;
a first current supply to generate a first current to run through the first coil; a first controller to control the first current supply, wherein the first controller is to oscillate the first current to generate a magnetic field in the formation, and wherein heat is to be generated in the formation via induction; and
a capacitor to oscillate the first current, wherein the first coil includes a positive conductor and a negative conductor separated by a dielectric along a conductive path of the first coil.
2. The apparatus of claim 1 , wherein the magnetic core is hollow.
3. The apparatus of claim 2 , wherein the magnetic core is to guide wires therethrough.
4. The apparatus of claim 2 , wherein the magnetic core is to transport liquid from the formation.
5. The apparatus of claim 1 , further comprising an insulating layer to protect the magnetic core and the first coil.
6. The apparatus of claim 5 , wherein the insulating layer is fiberglass.
7. The apparatus of claim 1 , wherein the first controller includes a switch to oscillate the first current.
8. The apparatus of claim 1 , further comprising a second coil wound about the magnetic core, wherein the second coil is electrically separated from the first coil.
9. The apparatus of claim 8 , further comprising:
a second current supply to generate a second current to run through the second coil; and
a second controller to control the second current supply, wherein the second controller is to oscillate the second current to increase the magnetic field in the formation.
10. An induction heating system comprising a plurality of apparatuses, wherein a subset of the plurality of apparatuses are arranged parallel to each other, and wherein each apparatus comprises:
a magnetic core to be inserted into a borehole to a formation;
a first coil wound about the magnetic core;
a first current supply to generate a first current to run through the first coil;
a first controller to control the first current supply, wherein the first controller is to oscillate the first current to generate a magnetic field in the formation, and wherein heat is to be generated in the formation via induction; and
a capacitor to oscillate the first current, wherein the first coil includes a positive conductor and a negative conductor separated by a dielectric along a conductive path of the first coil.
11. The induction heating system of claim 10 , wherein the subset of the plurality of apparatuses is arranged in a circle.
12. The induction heating system of claim 11 , wherein each apparatus of the subset is equidistant from adjacent apparatuses along the circle.
13. The induction heating system of claim 11 , further comprising a ring within the circle.
14. The induction heating system of claim 13 , wherein the ring is to support the subset of the plurality of apparatuses.
15. The induction heating system of claim 13 , wherein the ring is conductive to provide shielding for electronics.
16. The induction heating system of claim 10 , further comprising an insulating covering.
17. The induction heating system of claim 16 , wherein the insulating covering is fiberglass.