IP Library Granted Patent US 11,703,036
Granted Patent B2
US 11,703,036 · App. 17/864,859 · Granted Jul 18, 2023

Geothermal heat harvesters

Inventors: Piotr D. Moncarz (Palo Alto, CA); Walter R. Kolbe (Pacifica, CA); Louis E. Capuano, Jr. (Santa Rosa, CA); Keanen Ryan (Chicago, IL)
Assignee: XGS Energy, Inc.
F03G7/04E21B7/04E21B43/305F24T10/10F24T10/13F24T10/15F24T10/20Y02E10/10
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Quick Facts
Patent No.
US 11,703,036
App. No.
17/864,859
Granted
Jul 18, 2023
Kind
B2
Abstract

Thermal energy is extracted from geological formations using a heat harvester. In some embodiments, the heat harvester is a once-through, closed loop, underground heat harvester created by directionally drilling through hot rock. The extracted thermal energy can be converted or transformed to other forms of energy.

Claims (32)

1. A geothermal heat harvesting system, comprising:

a geothermal heat harvester comprising an entrance and an exit at a surface, wherein the entrance and the exit are in fluid communication via a path, the path comprising:

a first segment extending between the surface and a target depth, the first segment comprising the entrance, wherein the first segment is substantially free of thermal insulation; and

a second segment in fluid communication with the first segment and extending between the target depth and the surface, the second segment comprising the exit,

wherein the geothermal heat harvester is surrounded by a plurality of spaces extending radially outward from the first segment and the second segment at or near the target depth, wherein the plurality of spaces is filled with conductive material,

wherein the geothermal heat harvester further comprises a flow rate control component configured to control a flow rate of a fluid that flows through at least a portion of the path, wherein the flow rate is controlled over life of the geothermal heat harvester such that a heat extraction rate from the geothermal heat harvester is leveled through life.

2. The geothermal heat harvesting system of claim 1 , wherein the plurality of spaces comprises annular spaces between a casing of the geothermal heat harvester and a borehole of the geothermal heat harvesting system.

3. The geothermal heat harvesting system of claim 2 , wherein the conductive material comprises conductive cement or grout, and wherein the conductive cement or grout is in thermal exchange with the casing and a surface of a formation surrounding the borehole.

4. The geothermal hear harvesting system of claim 1 , wherein the first segment and the second segment are each substantially vertical.

5. The geothermal hear harvesting system of claim 1 , wherein the path forms a close loop.

6. The geothermal hear harvesting system of claim 1 , wherein the closed loop path is drilled through virgin rock.

7. The geothermal hear harvesting system of claim 1 , wherein the entrance and the exit are co-located.

8. The geothermal hear harvesting system of claim 7 , wherein the path comprises two portions, wherein a first of the two portions comprises a well head that forms the entrance, and wherein a second of the two portions comprises a well head that forms the exit.

9. The geothermal heat harvesting system of claim 1 , further comprising insulating cement or grout along at least a portion of the path, the conductive cement or grout along at least a portion of the path, or a combination thereof.

10. The geothermal heat harvesting system of claim 1 , further comprising an additional geothermal heat harvester operating together with the geothermal heat harvester in a field configuration, the additional geothermal heat harvester having a separate path with substantially the same configuration as the path of the geothermal heat harvester.

11. The geothermal heat harvesting system of claim 10 , wherein the additional geothermal heat harvester is adjacent to the geothermal heat harvester, wherein the geothermal heat harvester circulates a first primary fluid and the additional geothermal heat harvester circulates a second primary fluid, and wherein the first primary fluid and the second primary fluid circulate in a counter-flow configuration with respect to each other.

12. The geothermal heat harvesting system of claim 10 , wherein the additional geothermal heat harvester and the geothermal heat harvester are spaced to prevent cooling overlap.

13. A geothermal heat harvesting system, comprising:

a geothermal heat harvester comprising an entrance and an exit at a surface, wherein the entrance and the exit are in fluid communication via a path, the path comprising:

a first segment extending between the surface and a first depth, the first segment comprising the entrance;

a second segment in fluid communication with the first segment and extending between the first depth and a second depth, the second segment being at an angle with respect to the first vertical segment of at least about 5°;

a third segment at the second depth that is in fluid communication with the second segment, wherein the third segment comprises a heat transfer region;

a fourth segment in fluid communication with the third segment and extending between the second depth and the first depth; and

a fifth segment in fluid communication with the fourth segment and extending between the first depth and the surface, the fifth segment comprising the exit, wherein the fourth segment is at an angle with respect to the fifth segment of at least about 5°,

wherein the first segment and the fifth segment are each substantially vertical, and wherein the third segment comprises a substantially horizontal portion between two shape turns, wherein each of the two shape turns results in an inside angle of between 0° to 90°.

14. The geothermal heat harvesting system of claim 13 , wherein the path comprises two independently drilled portions connected with a coupling, and wherein the coupling is at the second depth.

15. The geothermal heat harvesting system of claim 14 , wherein a first of the two independently drilled portions comprises the first segment, the second segment and a first portion of the third segment, and wherein a second of the two independently drilled portions comprises a second portion of the third segment, the fourth segment and the fifth segment.

16. The geothermal heat harvesting system of claim 13 , further comprising an additional geothermal heat harvester arranged in a radiator configuration with the geothermal heat harvester, the additional geothermal heat harvester comprising:

a sixth segment in fluid communication with at least a portion of the second segment, the sixth segment extending between a deviation depth and the second depth and deviating from the second segment at a first angle;

a seventh segment at the second depth that is in fluid communication with the sixth segment, the seventh segment being substantially horizontal, wherein the seventh segment and the third segment are spaced apart and substantially parallel; and

an eighth segment in fluid communication with the seventh segment and at least a portion of the fourth segment, the eighth segment extending between the second depth and the deviation depth and deviating from the fourth segment at a second angle.

17. The geothermal heat harvesting system of claim 16 , wherein the first angle is substantially the same as the second angle.

Assignments (3)
CHANGE OF NAME Recorded May 26, 2023
From: GEOTHERMIC SOLUTION, INC.
To: XGS ENERGY, INC.
Reel/Frame 063792/0045 →
CHANGE OF NAME Recorded Mar 17, 2023
From: GEOTHERMIC SOLUTION, LLC
To: GEOTHERMIC SOLUTION, INC.
Reel/Frame 063117/0081 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2022
From: MONCARZ, PIOTR D.; KOLBE, WALTER R.; CAPUANO JR., LOUIS E.; RYAN, KEANEN
To: GEOTHERMIC SOLUTION, LLC.
Reel/Frame 061326/0656 →
Continuity (5)
Continuation 17173311 · Feb 11, 2021
Continuation 15935241 · Mar 26, 2018
Continuation PCTUS2016053569 · Sep 23, 2016
Provisional Application 62232271 · Sep 24, 2015
Related Publication 20220364550A1 · Nov 17, 2022
Cited By (2)
US 12,203,456 US 12,669,113