US2017191707A1PendingUtilityA1

Self-driving heat compression-type heat pump refrigerating method

Assignee: ZHOU YONGKUIPriority: Jun 23, 2014Filed: May 22, 2015Published: Jul 6, 2017
Est. expiryJun 23, 2034(~7.9 yrs left)· nominal 20-yr term from priority
F25B 15/02F25B 15/008F25B 15/00F25B 17/00F25B 27/007F25B 25/02
38
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Claims

Abstract

The self-driving heat compression-type heat pump refrigerating method includes preparing high-temperature steam with condensed heat generated by a heat compression-type heat pump refrigerating circulation system. The heat generated during circulation is a driving heat source for heat compression-type heat pump refrigerating circulation system to drive the heat compression-type heat pump refrigerating circulation system. By consuming only a very small amount of electricity, the driving steam is prepared by using condensing heat generated by refrigerating media steam. The heat generated during the circulation of a system itself is used as a driving heat source, realizing refrigerating and heating.

Claims

exact text as granted — not AI-modified
1 - 18 . (canceled) 
     
     
         19 . A self-driving heat compression-type heat pump refrigerating method, the method comprising the steps of:
 preparing high-temperature steam with condensed heat generated by a heat compression-type heat pump refrigerating circulation system, as a driving heat source for heat compression-type heat pump refrigerating circulation system to drive the heat compression-type heat pump refrigerating circulation system,   wherein the heat compression-type heat pump refrigerating circulation system is comprised of an absorption-type heat pump refrigerating circulation system,   wherein the absorption-type heat pump refrigerating circulation system is comprised of a working media circulation system and a solution circulation system,   wherein said working media circulation system is comprised of a circuit formed by connecting a refrigerating working media terminal of a generator, a steam compressor, a thermal source terminal of the generator, a first throttle reducing valve, an evaporator, a low-pressure compressor, an absorber, a solution pump, a solution heat exchanger and a refrigerating working media terminal of the generator in turn through pipes,   wherein said solution circulation system is comprised of a circuit formed by connecting the absorber, the solution pump, the solution heat exchanger, the generator, the solution heat exchanger and the absorber in turn through pipes, and   wherein said heat pump refrigerating circulation system is internally provided with refrigerating working media and a working pair solution comprised of substances having high solubility in the refrigerating working media.   
     
     
         20 . A self-driving heat compression-type heat pump refrigerating method, the method comprising the steps of:
 preparing high-temperature steam with condensed heat generated by a heat compression type heat pump refrigerating circulation system, as a driving heat source for the heat compression type heat pump refrigerating circulation system to drive the heat compression type heat pump refrigerating circulation system,   wherein the heat compression-type heat pump refrigerating circulation system is comprised of an adsorption-type heat pump refrigerating circulation system.   
     
     
         21 . The self-driving heat compression-type heat pump refrigerating method, according to  claim 20 , wherein the heat pump refrigerating circulation system is comprised of a circuit formed by connecting a refrigerating working media terminal of an adsorption bed, the steam compressor, a heat source terminal of the adsorption bed, a first valve, a first liquid storage, a second valve, the first throttle reducing valve, the evaporator, and a refrigerating working media terminal of the adsorption bed in turn through pipes, and
 wherein the heat pump refrigerating circulation system is provided with working media and working pairs comprised of absorbents adsorbing the working media.   
     
     
         22 . A self-driving heat compression-type heat pump refrigerating method, the method comprising the steps of:
 preparing high-temperature steam with condensed heat generated by a heat compression type heat pump refrigerating circulation system, as a driving heat source for the heat compression type heat pump refrigerating circulation system to drive the heat compression type heat pump refrigerating circulation system,   wherein the heat compression-type heat pump refrigerating circulation system comprises a driving circulation system and a heat pump refrigerating circulation system.   
     
     
         23 . The self-driving heat compression-type heat pump refrigerating method, according to  claim 22 , wherein the driving circulation system is comprised of a circuit formed by connecting the evaporator, a condenser and the evaporator through pipes in turn,
 wherein the driving circulation system is internally provided with working media,   wherein the heat pump refrigerating circulation system is comprised of the working media circulation system and the solution circulation system,   wherein the working media circulation system is comprised of a circuit formed by connecting the generator, the condenser, a working media lifting pump, the evaporator, the absorber, the solution pump, the solution heat exchanger and the generator through pipes in turn,   wherein the solution circulation system is comprised of a circuit formed by connecting the generator, the solution heat exchanger, the solution pump, the absorber, the solution heat exchanger and the generator through pipes in turn, and   wherein the heat pump refrigerating circulation system is internally provided with the refrigerating working media and the working pair solution being comprised of substances having high solubility in the refrigerating working media.   
     
     
         24 . The self-driving heat compression-type heat pump refrigerating method, according to  claim 22 , wherein the driving circulation system is comprised of a circuit formed by connecting a first adsorption bed, a second adsorption bed and the first adsorption bed in turn through pipes,
 wherein the driving circulation system is internally provided with the working media,   wherein the heat pump refrigerating circulation system has two paths, one path being formed by connecting the first adsorption bed, a valve, the condenser, the working media lifting pump, the evaporator, a valve and the second adsorption bed in turn through pipes, and the other path being formed by connecting the second adsorption bed, a valve, the condenser, the working media lifting pump, the evaporator, a valve and the first adsorption bed in turn through pipes,   wherein the heat pump refrigerating circulation system is provided with the working media and the working pairs being comprised of substances adsorbing the working media,   wherein the first adsorption bed is filled in with an absorbent absorbing with a certain amount of the working media, and   wherein the second adsorption bed is filled with an absorbent absorbed with a small amount of the working media.   
     
     
         25 . The self-driving heat compression-type heat pump refrigerating method, according to  claim 22 , wherein the driving circulation system is comprised of a circuit formed by connecting the generator, the absorber and the evaporator through pipes in turn,
 wherein the driving circulation system is internally provided with working media,   wherein the heat pump refrigerating circulation system is comprised of the working media circulation system and the solution circulation system,   wherein the working media circulation system is comprised of a circuit formed by connecting the generator, the condenser, a throttle reducing valve, the evaporator, the absorber, the solution pump, the solution heat exchanger and the generator through pipes in turn,   wherein the solution circulation system is comprised of a circuit formed by connecting the generator, the solution heat exchanger, the absorber, the solution pump, the solution heat exchanger and the generator through pipes in turn, and   wherein the heat pump refrigerating circulation system is internally provided with the refrigerating working media and a solution being comprised of substances having high solubility in the refrigerating working media.   
     
     
         26 . The self-driving heat compression-type heat pump refrigerating method, according to  claim 22 , wherein the driving circulation system is comprised of a circuit formed by connecting a first compressor, the generator, a second throttle reducing valve, the condenser and the first compressor in turn though pipes,
 wherein the heat pump refrigerating circulation system is comprised of the working media circulation system and the solution circulation system,   wherein the driving circulation system is internally provided with the working media,   wherein the working media circulation system is comprised of a circuit formed by connecting the generator, the condenser, the first throttle reducing valve, the evaporator, the absorber, the solution pump, the solution heat exchanger and the generator in turn through pipes,   wherein the solution circulation system is comprised of a circuit formed by connecting the absorber, the solution pump, the solution heat exchanger, the generator, the solution heat exchanger and the absorber in turn through pipes, and   wherein the heat pump refrigerating circulation system is internally provided with refrigerating working media and the working pair solution being comprised of substances having high solubility in the refrigerating working media.   
     
     
         27 . The self-driving heat compression-type heat pump refrigerating method, according to  claim 22 , wherein the driving circulation system is comprised of a circuit formed by connecting a first compressor, the generating rectifier, a second throttle reducing valve, the condenser and the first compressor in turn though pipes,
 wherein the driving circulation system is internally provided with working media,   wherein the heat pump refrigerating circulation system is comprised of the working media circulation system and the solution circulation system,   wherein the working media circulation system is comprised a circuit formed by connecting the generating rectifier, the condenser, the first throttle reducing valve, the evaporator, the absorber, the solution pump, the solution heat exchanger and the generator in turn through pipes,   wherein the solution circulation system is comprised of a circuit formed by connecting the absorber, the solution pump, the solution heat exchanger, the generating rectifier, the solution heat exchanger and the absorber in turn through pipes, and   wherein the heat pump refrigerating circulation system is internally provided with refrigerating working media and the working pair solution being comprised of substances having high solubility in the refrigerating working media.   
     
     
         28 . The self-driving heat compression-type heat pump refrigerating method, according to  claim 22 , wherein the driving circulation system is comprised of a circuit formed by connecting the first compressor, the generator, the second throttle reducing valve, the condenser and the first compressor in turn through pipes,
 wherein the driving circulation system is internally provided with the working media,   wherein the heat pump refrigerating circulation system is comprised of the working media circulation system and the solution circulation system,   wherein the working media circulation system is comprised of a circuit formed by connecting the generator, the condenser, the first throttle reducing valve, the evaporator, the low-pressure compressor, the absorber, the solution pump, the solution heat exchanger and the generator in turn through pipes,   wherein the solution circulation system is comprised of a circuit formed by connecting the absorber, the solution pump, the solution heat exchanger, the generator, the solution heat exchanger and the absorber in turn through pipes, and   wherein the heat pump refrigerating circulation system is internally provided with refrigerating working media and working pair solution being comprised of substances having high solubility in the refrigerating working media.   
     
     
         29 . The self-driving heat compression-type heat pump refrigerating method, according to  claim 22 , wherein the driving circulation system is comprised of a circuit formed by connecting the first compressor, the absorber serving as the condenser, the second throttle reducing valve, the condenser serving as the evaporator and the first compressor in turn through pipes,
 wherein the driving circulation system is internally provided with the working media,   wherein the heat pump refrigerating circulation system is comprised of a circuit formed by connecting the absorber, the condenser, the first valve, the first liquid storage, the second valve, the first throttle reducing valve, the evaporator and the adsorption bed in turn through pipes, and   wherein the heat pump refrigerating circulation system is provided with the working media and the working pairs being comprised of substances adsorbing the working media.   
     
     
         30 . The self-driving heat compression-type heat pump refrigerating method, according to  claim 22 , wherein the driving circulation system is comprised of a circuit formed by connecting a second compressor, the generator serving as the condenser, a third throttle reducing valve, the absorber serving as the evaporator and the second compressor in turn though pipes,
 wherein the driving circulation system is internally provided with working media,   wherein the heat pump refrigerating circulation system is comprised of the working media circulation system and the solution circulation system,   wherein the working media circulation system is comprised of a circuit formed by connecting the generator, the condenser, the first throttle reducing valve, the evaporator, the absorber, the solution pump, the solution heat exchanger and the generator in turn through pipes,   wherein the solution circulation system is comprised of a circuit formed by connecting the absorber, the solution pump, the solution heat exchanger, the generator, the solution heat exchanger and the absorber in turn through pipes, and   wherein the heat pump refrigerating circulation system is internally provided with refrigerating working media and the working pair solution being comprised of substances having high solubility in the refrigerating working media.   
     
     
         31 . The self-driving heat compression-type heat pump refrigerating method, according to  claim 22 , wherein the driving circulation system is comprised of a circuit formed by connecting a second compressor, the generating rectifier serving as the condenser, a third throttle reducing valve, the absorber serving as the evaporator and the second compressor in turn though pipes,
 wherein the driving circulation system is internally provided with working media,   wherein the heat pump refrigerating circulation system is comprised of the working media circulation system and the solution circulation system,   wherein the working media circulation system is comprised of a circuit formed by connecting the generating rectifier, the condenser, the first throttle reducing valve, the evaporator, the absorber, the solution pump, the solution heat exchanger and the generating rectifier in turn through pipes,   wherein the solution circulation system is comprised of a circuit formed by connecting the absorber, the solution pump, the solution heat exchanger, the generator, the solution heat exchanger and the absorber in turn through pipes, and   wherein the heat pump refrigerating circulation system is internally provided with refrigerating working media and the working pair solution being comprised of substances having high solubility in the refrigerating working media.   
     
     
         32 . The self-driving heat compression-type heat pump refrigerating method, according to  claim 22 , wherein the driving circulation system is comprised of a circuit formed by connecting a second compressor, a steam accumulator, a third valve, an adsorption bed serving as the condenser, a fourth valve, a second liquid storage, a fifth valve, a third throttle reducing valve, an adsorption bed serving as the evaporator, a sixth valve and the second compressor in turn through pipes,
 wherein the driving circulation system is internally provided with the working media,   wherein the heat pump refrigerating circulation system is comprised of a circuit formed by connecting the adsorption bed, the condenser, the first valve, the first liquid storage, the second valve, the first throttle reducing valve, the evaporator and the adsorption bed in turn through pipes, and   wherein the heat pump refrigerating circulation system is provided with the working media and the working pairs being comprised of the absorbent adsorbing the working media.

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