发明名称 Thermally Enhanced Cascade Cooling System
摘要 A cascade cooling system that uses low-grade thermal and other energy input sources to provide refrigeration and air conditioning in stationary and mobile applications. A two-loop embodiment includes a heat-powered first loop incorporating a vapor-jet compressor and a second loop based on a mechanical compressor powered by an electric motor or other source of rotational torque. The system uses waste heat, solar thermal or a fuel-fired heat source to partially or fully offset mechanical/electrical energy input. The system can also operate entirely on thermal, electrical or mechanical input. The ability to use multiple energy sources in any combination maximizes energy efficiency, performance and reliability. The system is well suited to making beneficial use of waste heat in vehicle applications. In stationary applications, solar thermal and/or waste heat from industrial processes can be used to improve the efficiency of conventional cooling systems.
申请公布号 US2015052926(A1) 申请公布日期 2015.02.26
申请号 US201313975327 申请日期 2013.08.24
申请人 Alston Gerald Allen 发明人 Alston Gerald Allen
分类号 F25B27/02 主分类号 F25B27/02
代理机构 代理人
主权项 1. A heat-powered cooling system comprising; a first cooling circuit including; a mechanical refrigerant compressor operably coupled to a vapor expander, said vapor expander receiving a portion of vaporized refrigerant at a first motive pressure from the boiler of a second cooling circuit,a first refrigerant evaporator positioned to cool the air in a compartment by vaporizing a liquid refrigerant,a first refrigerant condenser positioned to transfer heat from the refrigerant of the first cooling circuit to a second cooling circuit, a second cooling circuit including; a venturi ejector compressor which accelerates a portion of the said vaporized refrigerant at a first motive pressure through a nozzle and discharges it to a condenser at a lower second pressure such that a vacuum region at a lowest third pressure is created,a second refrigerant evaporator in thermal communication with the said first refrigerant evaporator, which receives liquid refrigerant from a second refrigerant condenser and evaporates it at the said third pressure using heat extracted from the refrigerant of the said first cooling circuit,a second condenser operably positioned to liquify and cool vaporized refrigerant by transferring heat to an exterior heat sink,a liquid refrigerant pump in fluid communication with the second condenser and a refrigerant boiler.a refrigerant boiler which, upon receiving heat energy from an external heat source, boils liquid refrigerant to create the said vapor at a first motive pressure such that,thermal energy input into the second cooling circuit cools the condenser of the first cooling circuit and thereby reduces the amount of energy required by the mechanical refrigerant compressor.
地址 Oakland CA US