IP Library Granted Patent US 9,480,188
Granted Patent B2
US 9,480,188 · App. 14/932,585 · Granted Oct 25, 2016

Use of computationally generated thermal energy

Inventors: Lawrence Orsini (Brooklyn, NY); Yun Wei (Brooklyn, NY)
Assignee: LO3 Energy Inc.
H05K7/20836F24F2011/0075
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Quick Facts
Patent No.
US 9,480,188
App. No.
14/932,585
Granted
Oct 25, 2016
Kind
B2
Abstract

In one aspect, a computing device-implemented method includes receiving at least one triggering event signal from one or more components of a heat recovery system. The method also includes determining, based in part on the at least one triggering event signal, a computation workload assignment to be executed on one or more computation devices. The method further includes sending one or more command signals to the one or more computation devices. The one or more command signals include a portion of the computation workload assignment for execution by the one or more computation devices. The method also includes initiating capture of heat energy to be stored in one or more heat reservoirs, the heat energy being generated by the one or more computation device based upon the computation workload assignment.

Claims (42)

1. A computing device-implemented method comprising:

receiving at least one triggering event signal from one or more components of a heat recovery system;

determining, based in part on the at least one triggering event signal, a computation workload assignment to be executed on one or more computation devices;

sending one or more command signals to the one or more computation devices, wherein the one or more command signals include a portion of the computation workload assignment for execution by the one or more computation devices; and

initiating capture of heat energy to be stored in one or more heat reservoirs, the heat energy being generated by the one or more computation device based upon the computation workload assignment.

2. The computing device-implemented method in claim 1 , wherein the one or more command signals includes information that represents type, size and execution speed of the portion of the computation workload assignment.

3. The computing device-implemented method of claim 1 , wherein the one or more command signals include a request for heat generation information from the one or more computation devices.

4. The computing device-implemented method of claim 1 , further comprising using the captured heat energy in one or more building end use systems.

5. The computing device-implemented method of claim 1 , wherein the received at least one triggering event signal originates from one or more building end use systems.

6. The computing device-implemented method of claim 1 , wherein the received at least one triggering event signal includes information related to energy generated by a photovoltaic system.

7. The computing device-implemented method of claim 1 , wherein the received at least one triggering event signal includes information related to price of electricity supplied by a utility power grid.

8. The computing device-implemented method of claim 1 , wherein the one or more heat reservoirs includes a casing made of one or more phase change material.

9. The computing device-implemented method of claim 1 , wherein the one or more computation device includes a casing made of one or more phase change material.

10. A system comprising:

a computing device comprising:

a memory configured to store instructions; and

a processor to execute the instructions to perform operations comprising:

receiving at least one triggering event signal from one or more components of a heat recovery system;

determining, based in part on the at least one triggering event signal, a computation workload assignment to be executed on one or more computation devices;

sending one or more command signals to the one or more computation devices, wherein the one or more command signals include a portion of the computation workload assignment for execution by the one or more computation devices; and

initiating capture of heat energy to be stored in one or more heat reservoirs, the heat energy being generated by the one or more computation device based upon the computation workload assignment.

11. The system of claim 10 , wherein the one or more command signals includes information that represents type, size and execution speed of the portion of the computation workload assignment.

12. The system of claim 10 , wherein the one or more command signals include a request for heat generation information from the one or more computation devices.

13. The system of claim 10 , further perform operations comprising using the captured heat energy in one or more building end use systems.

14. The system of claim 10 , wherein the received at least one triggering event signal originates from one or more building end use systems.

15. The system of claim 10 , wherein the received at least one triggering event signal includes information related to energy generated by a photovoltaic system.

16. The system of claim 10 , wherein the received at least one triggering event signal includes information related to price of electricity supplied by a utility power grid.

17. The system of claim 10 , wherein the one or more heat reservoirs includes a casing made of one or more phase change material.

18. The system of claim 10 , wherein the one or more computation device includes a casing made of one or more phase change material.

19. One or more computer readable media storing instructions that are executable by a processing device, and upon such execution cause the processing device to perform operations comprising:

receiving at least one triggering event signal from one or more components of a heat recovery system;

determining, based in part on the at least one triggering event signal, a computation workload assignment to be executed on one or more computation devices;

sending one or more command signals to the one or more computation devices, wherein the one or more command signals include a portion of the computation workload assignment for execution by the one or more computation devices; and

initiating capture of heat energy to be stored in one or more heat reservoirs, the heat energy being generated by the one or more computation device based upon the computation workload assignment.

20. The computer readable media of claim 19 , wherein the one or more command signals includes information that represents type, size and execution speed of the portion of the computation workload assignment.

21. The computer readable media of claim 19 , wherein the one or more command signals include a request for heat generation information from the one or more computation devices.

22. The computer readable media of claim 19 , further perform operations comprising using the captured heat energy in one or more building end use systems.

23. The computer readable media of claim 19 , wherein the received at least one triggering event signal originates from one or more building end use systems.

24. The computer readable media of claim 19 , wherein the received at least one triggering event signal includes information related to energy generated by a photovoltaic system.

25. The computer readable media of claim 19 , wherein the received at least one triggering event signal includes information related to price of electricity supplied by a utility power grid.

26. The computer readable media of claim 19 , wherein the one or more heat reservoirs includes a casing made of one or more phase change material.

27. The computer readable media of claim 19 , wherein the one or more computation device includes a casing made of one or more phase change material.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2016
From: ORSINI, LAWRENCE; WEI, YUN
To: LO3 ENERGY INC.
Reel/Frame 038182/0786 →
Continuity (2)
Provisional Application 62074810 · Nov 4, 2014
Related Publication 20160123620A1 · May 5, 2016