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Title: Combined cooling, heating and power system

Abstract

A combined cooling, heating, and power system, including a working fluid cycling between a compressor and a turbine in combination with a power generator. A humidifying regenerator is disposed between the compressor and the turbine, and in combination with the working fluid upstream and again downstream of the turbine to humidify and then dehumidify the working fluid. A working fluid heat exchanger is in combination with the working fluid between the turbine and the humidifying regenerator for further heat the working fluid. The heat exchanger is in combination with a heat source that heats both the working fluid and provides a separate heating medium. A cooling device is in combination with the working fluid between the humidifying regenerator and the compressor, wherein the cooling device cools the working fluid before entering the compressor and provides a separate cooling medium.

Inventors:
;
Issue Date:
Research Org.:
Gas Technology Institute, Des Plaines, IL (United States)
Sponsoring Org.:
USDOE
OSTI Identifier:
1986681
Patent Number(s):
11466594
Application Number:
16/297,928
Assignee:
Gas Technology Institute (Des Plaines, IL)
DOE Contract Number:  
FE0031614
Resource Type:
Patent
Resource Relation:
Patent File Date: 03/11/2019
Country of Publication:
United States
Language:
English

Citation Formats

Kozlov, Aleksandr, and Chudnovsky, Yaroslav. Combined cooling, heating and power system. United States: N. p., 2022. Web.
Kozlov, Aleksandr, & Chudnovsky, Yaroslav. Combined cooling, heating and power system. United States.
Kozlov, Aleksandr, and Chudnovsky, Yaroslav. Tue . "Combined cooling, heating and power system". United States. https://www.osti.gov/servlets/purl/1986681.
@article{osti_1986681,
title = {Combined cooling, heating and power system},
author = {Kozlov, Aleksandr and Chudnovsky, Yaroslav},
abstractNote = {A combined cooling, heating, and power system, including a working fluid cycling between a compressor and a turbine in combination with a power generator. A humidifying regenerator is disposed between the compressor and the turbine, and in combination with the working fluid upstream and again downstream of the turbine to humidify and then dehumidify the working fluid. A working fluid heat exchanger is in combination with the working fluid between the turbine and the humidifying regenerator for further heat the working fluid. The heat exchanger is in combination with a heat source that heats both the working fluid and provides a separate heating medium. A cooling device is in combination with the working fluid between the humidifying regenerator and the compressor, wherein the cooling device cools the working fluid before entering the compressor and provides a separate cooling medium.},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = {2022},
month = {10}
}

Works referenced in this record:

Advanced Solar Thermally Driven Power System and Method
patent-application, March 2016


Method and Apparatus for Generating Electricity
patent-application, May 2010


Humid air turbine, humid air turbine control system, and humid air turbine control method
patent, August 2011


Heating, Cooling and Power Generation System
patent-application, October 2012


Power Generation Using Enthalpy Difference Gradient for Subatmospheric Regenerative Piston Engine
patent-application, August 2019


Advanced Humid Air Turbine System and Exhaust Gas Treatment System
patent-application, December 2016


Humid Air Turbine Power, Water Extraction, and Refrigeration Cycle
patent-application, May 2016


Regenerative thermodynamic power generation cycle systems, and methods for operating thereof
patent-application, December 2016


Combined cooling and power plant with water extraction
patent, January 2009