IP Library Granted Patent US 10,605,483
Granted Patent B2
US 10,605,483 · App. 15/974,679 · Granted Mar 31, 2020

Combination systems and related methods for providing power, heat and cooling

Inventors: Gregory Powell (Rockville, MD); James C. Warren (Alexandria, VA)
F24H1/208F24H1/186F24H1/52F24H9/0084F24H9/1836F24H2240/01F24H2240/06
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Quick Facts
Patent No.
US 10,605,483
App. No.
15/974,679
Granted
Mar 31, 2020
Kind
B2
Abstract

A combined heat, cooling and power system is configured to generate energy as well capture a large percentage of energy that would otherwise be lost using components, including heat transfer components, embedded within a vessel to transfer energy in the form of heat to liquid within the vessel.

Claims (71)

1. A combined heat, cooling and power system comprising:

an energy generation sub-system comprising,

a replaceable engine connected to a plurality of generators and a turbo-generator, the sub-system operable to generate electricity and exhaust gases, and provide energy to an energy storage sub-system,

the generation sub-system further comprising a catalytic converter, embedded in a vessel for storing liquid heated by waste heat from the engine, and configured to be positioned within a distance from the engine, where a temperature of the exhaust gases optimizes the operation of the catalytic converter;

an energy distribution sub-system comprising,

coils operable to circulate heated coolant received from the energy generation sub-system, and,

fans operable to direct air over the coils to heat the directed air, and operable to distribute the heated air; and

an energy storage sub-system operable to receive and store the energy from the energy generation sub-system.

2. A combined heat, cooling and power system comprising:

an energy generation sub-system comprising,

a replaceable engine connected to a plurality of generators and a turbo-generator, the sub-system operable to generate electricity and exhaust gases, and provide energy to an energy storage sub-system,

the generation sub-system further comprising a catalytic converter, embedded in a vessel for storing liquid heated by waste heat from the engine, and configured to be positioned within a distance from the engine, where a temperature of the exhaust gases optimizes the operation of the catalytic converter,

and a muffler embedded in the vessel and operable to reduce a level of sound from the engine and the exhaust gases; and

an energy distribution sub-system comprising,

coils operable to circulate heated coolant received from the energy generation sub-system, and,

fans operable to direct air over the coils to heat the directed air, and operable to distribute the heated air; and

an energy storage sub-system operable to receive and store the energy from the energy generation sub-system.

3. A combined heat, cooling and power system comprising:

an energy generation sub-system comprising,

a replaceable engine connected to a plurality of generators and a turbo-generator, the sub-system operable to generate electricity and exhaust gases, and provide energy to an energy storage sub-system, and

a vessel for storing liquid, the liquid heated by waste heat from the engine;

an energy distribution sub-system comprising,

a coolant heat exchanger operable to transfer heat from coolant to the liquid within the vessel,

coils operable to circulate heated coolant received from the energy generation sub-system, and,

fans operable to direct air over the coils to heat the directed air, and operable to distribute the heated air; and

an energy storage sub-system operable to receive and store the energy from the energy generation sub-system.

4. A combined heat, cooling and power system comprising:

an air intake section configured to be positioned so that external air from outside an energy generating sub-system is drawn into a cowling and over an engine and generators in order to cool the engine and pre-heat the air;

an energy generation sub-system comprising,

a replaceable engine connected to a plurality of generators and a turbo-generator, the sub-system operable to generate electricity and exhaust gases, and provide energy to an energy storage sub-system, and

a vessel for storing liquid, the liquid heated by waste heat from the engine;

an energy distribution sub-system comprising,

coils operable to circulate heated coolant received from the energy generation sub-system, and,

fans operable to direct air over the coils to heat the directed air, and operable to distribute the heated air; and

an energy storage sub-system operable to receive and store the energy from the energy generation sub-system.

5. A combined heat, cooling and power system comprising:

an air intake section configured to be positioned so that external air from outside an energy generating sub-system is drawn into a cowling, having thermo-acoustic insulation configured inside the cowling to prevent sounds emanating from inside the cowling from escaping the cowling, and over an engine and generators in order to cool the engine and pre-heat the air;

an energy generation sub-system comprising,

a replaceable engine connected to a plurality of generators and a turbo-generator, the sub-system operable to generate electricity and exhaust gases, and provide energy to an energy storage sub-system, and

a vessel for storing liquid, the liquid heated by waste heat from the engine;

an energy distribution sub-system comprising,

coils operable to circulate heated coolant received from the energy generation sub-system, and,

fans operable to direct air over the coils to heat the directed air, and operable to distribute the heated air; and

an energy storage sub-system operable to receive and store the energy from the energy generation sub-system.

6. A method for providing heat, cooling and power comprising:

generating electricity and exhaust gases from an engine, and providing energy to an energy storage sub-system;

storing a liquid, heated by waste heat from the engine, in a vessel;

embedding a catalytic converter in the vessel at a position where a temperature of the exhaust gases optimizes the operation of the catalytic converter;

circulating heated coolant through coils and directing air over the coils to heat the directed air, and distributing the heated air; and

receiving and storing the energy in the energy storage sub-system.

7. A method for providing heat, cooling and power comprising:

generating electricity and exhaust gases from an engine, and providing energy to an energy storage sub-system;

storing a liquid, heated by waste heat from the engine, in a vessel;

embedding a catalytic converter in the vessel at a position where a temperature of the exhaust gases optimizes the operation of the catalytic converter;

embedding a muffler in the vessel to reduce a level of sound from the engine and the exhaust gases;

circulating heated coolant through coils and directing air over the coils to heat the directed air, and distributing the heated air;

transferring heat from coolant to the liquid within the vessel; and

receiving and storing the energy in the energy storage sub-system.

8. A method for providing heat, cooling and power comprising:

positioning an air intake section so that external air is drawn over an engine in order to cool the engine and pre-heat the air;

generating electricity and exhaust gases from an engine, and providing energy to an energy storage sub-system;

storing a liquid, heated by waste heat from the engine, in a vessel;

circulating heated coolant through coils and directing air over the coils to heat the directed air, and distributing the heated air; and

receiving and storing the energy in the energy storage sub-system.

9. A method for providing heat, cooling and power comprising:

positioning an air intake section so that external air is drawn over an engine in order to cool the engine and pre-heat the air;

generating electricity and exhaust gases from an engine, and providing energy to an energy storage sub-system;

storing a liquid, heated by waste heat from the engine, in a vessel;

circulating heated coolant through coils and directing air over the coils to heat the directed air, and distributing the heated air;

preventing sounds emanating from inside a cowling from escaping the cowling; and

receiving and storing the energy in the energy storage sub-system.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Dec 1, 2022
From: EMERSON COLLECTIVE INVESTMENTS, LLC
To: ENGINUITY POWER SYSTEMS, INC., FORMERLY KNOWN AS WARREN ENGINE COMPANY, INC.
Reel/Frame 061940/0503 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2022
From: WARREN ENGINE COMPANY
To: ENGINUITY POWER SYSTEMS, INC
Reel/Frame 059438/0768 →
AMENDED AND RESTATED GRANT OF SECURITY INTEREST IN PATENTS Recorded Jul 18, 2019
From: WARREN ENGINE COMPANY, INC.
To: EMERSON COLLECTIVE INVESTMENTS, LLC
Reel/Frame 049790/0903 →
Continuity (4)
Continuation In Part 15621711 · Jun 13, 2017
Provisional Application 62349346 · Jun 13, 2016
Provisional Application 62419188 · Nov 8, 2016
Related Publication 20190032954A1 · Jan 31, 2019