Intelligent energy-saving air conditioner
Abstract
An intelligent energy-saving air conditioner includes a control device ( 1 ), a heat-exchange circulation system ( 2 ), a refrigerating system ( 3 ), and an inner air blower ( 41 ) and outer air blower ( 42 ) both are shared by the heat-exchange circulation system ( 2 ) and the refrigerating system ( 3 ). The control device ( 1 ) includes a temperature collecting and comparing unit and a control unit. The heat-exchange circulation system ( 2 ) includes a first heat exchanger ( 21 ) and a second heat exchanger ( 22 ) separately arranged from each other, and heat-exchange circulation pipes ( 24 ) connecting the first and second heat exchangers ( 21 ), ( 22 ). The refrigerating system ( 3 ) includes an evaporator ( 31 ), a condenser ( 32 ), a compressor ( 33 ) and refrigerating circulation pipes ( 34 ) connecting the evaporator ( 31 ), the condenser ( 32 ) and the compressor ( 33 ). The first heat exchanger ( 21 ) and the evaporator ( 31 ) are arranged close to each other and share the inner air blower ( 41 ), and the second heat exchanger ( 22 ) and the condenser ( 32 ) are arranged close to each other and share the outer air blower ( 42 ).
Claims
exact text as granted — not AI-modified1 - 5 . (canceled)
6 . An intelligent energy-saving air conditioner, comprising:
a control device comprising a temperature collecting and comparing unit and a control unit; a heat-exchange circulation system comprising a first heat exchanger and a second heat exchanger separately arranged from each other, and heat-exchange circulation pipes connecting the first heat exchangers and the second heat exchangers; a refrigerating system comprising an evaporator, a condenser, a compressor and refrigerating circulation pipes connecting the evaporator, the condenser and the compressor; an inner air blower and an outer air blower shared by the heat-exchange circulation system and the refrigerating system; wherein the first heat exchanger of the heat-exchange circulation system and the evaporator of the refrigerating system are arranged close to each other and share the inner air blower, and the second heat exchanger of the heat-exchange circulation system and the condenser of the refrigerating system are arranged close to each other and share the outer air blower.
7 . The intelligent energy-saving air conditioner as claimed in claim 6 , wherein the first heat exchanger and the evaporator are arranged to be parallel to each other, and the second heat exchanger and the evaporator are arranged to be parallel to each other.
8 . The intelligent energy-saving air conditioner as claimed in claim 7 , wherein the first heat exchanger and the evaporator are obliquely arranged and are parallel to each other, and the second heat-exchanger and the condenser are obliquely arranged and are parallel to each other.
9 . The intelligent energy-saving air conditioner as claimed in claim 6 , wherein the heat-exchange circulation system is a gas-liquid heat-exchange system.
10 . The intelligent energy-saving air conditioner as claimed in claim 6 , wherein the intelligent energy-saving air conditioner is an integrated air conditioner and comprises a shell containing the control device, the heat-exchange circulation system and the refrigerating system, and wherein the second heat exchanger and the condenser are located at the outer side of the shell of the air conditioner facing to the outer environment, and the first heat exchanger and the evaporator are located at the opposite inner side of the shell of the air conditioner.
11 . The intelligent energy-saving air conditioner as claimed in claim 10 , wherein the first heat exchanger and the evaporator are located below the inner air blower, and wherein the second heat exchanger and the condenser are located above the outer air blower.
12 . The intelligent energy-saving air conditioner as claimed in claim 10 , wherein the heat-exchange circulation system further comprises a fluid actuating device which connects the first and second heat exchangers, via the heat-exchange circulation pipes, and wherein the compressor and the fluid actuating device are located in the bottom of the shell of the air conditioner.
13 . The intelligent energy-saving air conditioner as claimed in claim 10 , wherein the integrated air conditioner is mounted in one of the full-embedded type and half-embedded type.
14 . The intelligent energy-saving air conditioner as claimed in claim 6 , wherein the intelligent energy-saving air conditioner is of split-type and comprises an indoor unit and an outdoor unit, and wherein the first heat exchanger, the evaporator and the inner air blower are located in the indoor unit, and the second heat exchanger, the condenser and the outer air blower are located in the outdoor unit, the heat-exchange circulation pipes and the refrigerating circulation pipes connect the indoor unit and the outdoor unit.
15 . The intelligent energy-saving air conditioner as claimed in claim 14 , wherein the heat-exchange circulation system further comprises a fluid actuating device which connects the first and second heat exchangers, via the heat-exchange circulation pipes, and wherein the fluid actuating device is located in the indoor unit, and the compressor is located in the outdoor unit.
16 . The intelligent energy-saving air conditioner as claimed in claim 14 , wherein the first heat exchanger and the evaporator are arranged to be parallel to each other, and wherein the second heat exchanger and the condenser are arranged to be parallel to each other.
17 . The intelligent energy-saving air conditioner as claimed in claim 16 , wherein the first heat exchanger and the evaporator are obliquely arranged and parallel to each other, and wherein the second heat exchanger and the condenser are obliquely arranged and parallel to each other.
18 . The intelligent energy-saving air conditioner as claimed in claim 16 , wherein the first heat exchanger and the evaporator are located below the inner air blower, and the second heat exchanger and the condenser are located at the air-out side of the outer air blower.
19 . The intelligent energy-saving air conditioner as claimed in claim 6 , wherein the heat-exchange circulation system further comprises a fluid actuating device and a liquid-storage constant-pressure device, the refrigerant medium in the heat-exchange circulation system is actuated by the fluid actuating device to in sequence pass through the second heat exchanger, the first heat exchanger, the liquid-storage constant-pressure device, then back to the fluid actuating device for recycle.
20 . The intelligent energy-saving air conditioner as claimed in claim 6 , wherein the refrigerating system further comprises a liquid storage device, a dry device and a throttle device, and wherein the refrigerant medium in the refrigerating system is compressed by the compressor and in sequence passes through the condenser, the liquid storage device, the dry device, the throttle device, the evaporator and back to the compressor for recycle.
21 . The intelligent energy-saving air conditioner as claimed in claim 6 , wherein the control device further comprises an alarm unit for providing alarm in case of the heat-exchange circulation system and/or the refrigerating system being broken down.
22 . The intelligent energy-saving air conditioner as claimed in claim 6 , wherein the temperature collecting and comparing unit of the control device collects and compares the inner temperature and outer temperature of the intelligent energy-saving air conditioner, if the inner temperature is higher than the outer temperature and reaches the set start temperature of the heat-exchange circulation system, the heat-exchange circulation system is started, and inner and outer air blower, starts running, while the refrigerating system is in stop state.
23 . The intelligent energy-saving air conditioner as claimed in claim 22 , wherein if the inner temperature is still higher than the set start temperature of the refrigerating system after the start of the heat-exchange circulation system, the refrigerating system is started, and the two systems, both keep running.
24 . The intelligent energy-saving air conditioner as claimed in claim 23 , wherein if the outer temperature is higher than the inner temperature and the inner temperature is still higher than the set start temperature of the refrigerating system, the refrigerating system keeps running and the heat-exchange circulation system is in stop state.Join the waitlist — get patent alerts
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