IP Library Granted Patent US 10,954,924
Granted Patent B2
US 10,954,924 · App. 15/935,241 · Granted Mar 23, 2021

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: GEOTHERMIC SOLUTION, LLC
F03G7/04E21B7/04E21B43/305F24T10/10F24T10/13F24T10/15F24T10/20Y02E10/10
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Quick Facts
Patent No.
US 10,954,924
App. No.
15/935,241
Granted
Mar 23, 2021
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 (29)

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;

a second segment in fluid communication with the first segment and extending radially outward at the target depth, the second segment being substantially perpendicular to the first segment;

a third segment in fluid communication with the second segment and extending in an arc at the target depth;

a fourth segment in fluid communication with the third segment and extending radially inward at the target depth; and

a fifth segment extending between the target depth and the surface, the fifth segment comprising the exit and being substantially perpendicular to the fourth segment,

wherein the second segment, the third segment, and the fourth segment (i) are substantially planar at the target depth and (ii) together comprise a primary heat transfer region, wherein the first segment and the fifth segment are each substantially vertical, and wherein the second segment and the fourth segment are each substantially horizontal.

2. The geothermal heat harvesting system of claim 1 , wherein the path comprises two independently drilled portions connected with a coupling.

3. The geothermal heat harvesting system of claim 2 , wherein the coupling is at the target depth.

4. The geothermal heat harvesting system of claim 2 , further comprising:

a sixth segment between the first segment and the second segment, the sixth segment deviating from the first segment toward the second segment; and

a seventh segment between the fourth segment and the fifth segment, the seventh segment deviating from the fifth segment toward the fourth segment.

5. The geothermal heat harvesting system of claim 4 , further comprising an additional geothermal heat harvester deviating from the geothermal heat harvester, the additional geothermal heat harvester comprising:

an eighth segment in fluid communication with the first segment;

a ninth segment in fluid communication with the eighth segment and extending radially outward at the target depth, the ninth segment being substantially perpendicular to the first segment and the eighth segment deviating from the first segment toward the ninth segment;

a tenth segment in fluid communication with the ninth segment and extending in an arc at the target depth;

an eleventh segment in fluid communication with the tenth segment and extending radially inward at the target depth, the eleventh segment being substantially perpendicular to the fifth segment; and

a twelfth segment in fluid communication with the eleventh segment and the fifth segment, the twelfth segment deviating from the fifth segment toward the eleventh segment.

6. The geothermal heat harvesting system of claim 5 , wherein the ninth segment and the eleventh are each substantially horizontal.

7. The geothermal heat harvesting system of claim 6 , wherein horizontal portions of the geothermal heat harvester and the additional geothermal heat harvester are rotated by about 45°, 90°, or 135° from each other.

8. The geothermal heat harvesting system of claim 1 , wherein the path forms a closed loop.

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

10. The geothermal heat harvesting system of claim 9 , wherein the path comprises two portions, wherein a first portion of the two portions comprises a well head that forms the entrance, and wherein a second portion of the two portions comprises a well head that forms the exit.

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

12. The geothermal heat harvesting system of claim 1 , further comprising a primary fluid that flows through at least a portion of the path, wherein the primary fluid is configured to enter at the entrance and exit at the exit, and wherein a flow rate of the primary fluid is configured for control over a life of the geothermal heat harvester such that a heat extraction rate from the geothermal heat harvester is leveled through the life.

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

14. The geothermal heat harvesting system of claim 13 , wherein the additional geothermal heat harvester is adjacent to the geothermal heat harvester, wherein the geothermal heat harvester is configured to circulate a first primary fluid and the additional geothermal heat harvester is configured to circulate a second primary fluid in a counter-flow configuration with respect to the first primary fluid.

15. The geothermal heat harvesting system of claim 13 , wherein the additional geothermal heat harvester and the geothermal heat harvester are spaced to prevent cooling overlap.

Assignments (4)
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 →
CORRECTIVE ASSIGNMENT TO CORRECT THE OMITTED ASSIGNOR LOUIS E. CAPUANO JR. PREVIOUSLY RECORDED ON REEL 055062 FRAME 0672. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Feb 1, 2021
From: MONCARZ, PIOTR D.; KOLBE, WALTER R.; CAPUANO, LOUIS E., JR.; RYAN, KEANEN
To: GEOTHERMIC SOLUTION, LLC
Reel/Frame 055207/0577 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2021
From: MONCARZ, PIOTR D.; KOLBE, WALTER R.; RYAN, KEANEN
To: GEOTHERMIC SOLUTION, LLC
Reel/Frame 055062/0672 →
Continuity (3)
Continuation PCTUS2016053569 · Sep 23, 2016
Provisional Application 62232271 · Sep 24, 2015
Related Publication 20180274524A1 · Sep 27, 2018
Cited By (13)
US 12,188,691 US 12,203,456 US 12,241,018 US 12,331,964 US 12,339,042 US 12,454,482 US 12,504,203 US 12,504,204 US 12,516,849 US 12,534,974 US 12,546,511 US 12,618,505 US 12,669,113