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    • 7. 发明公开
    • REFRIGERATION APPARATUS
    • 制冷设备
    • EP2918946A1
    • 2015-09-16
    • EP13837218.0
    • 2013-08-22
    • Gong, Bingxin
    • Gong, Bingxin
    • F25B1/00F04B23/06
    • F25B1/00F01B23/10F25B1/02F25B11/00F25B41/04
    • A refrigeration apparatus is provided, comprising main components such as a three-way valve (4) or multi-way valve, a generator, a cylinder group (5, 6), and an airproof container (11) in addition to conventional components such as a compressor (3), a condenser (10), an expansion valve (1), and an evaporator (2); a refrigerant sequentially flows through the compressor (3), the three-way valve (4) or multi-way valve, the cylinder group (5, 6), the condenser (10), the expansion valve (1) and the evaporator (2), and finally enters the compressor (3) from the evaporator (2); the cylinder group (5, 6) can utilize the atmospheric pressure in the airproof container (11) to do work and generate electricity, so as to compensate for the power consumed by the compressor (3), thus saving electrical energy.
    • 提供一种制冷装置,除了传统的部件之外,该制冷装置还包括诸如三通阀(4)或多路阀,发电机,气缸组(5,6)和密封容器(11)的主要部件。 作为压缩机(3),冷凝器(10),膨胀阀(1)和蒸发器(2)。 (3),三通阀(4)或多路阀,气缸组(5,6),冷凝器(10),膨胀阀(1)和蒸发器 2),最后从蒸发器(2)进入压缩机(3); 气缸组5,6可以利用密封容器11内的气压进行工作并发电,以补偿压缩机3消耗的功率,从而节省电能。
    • 9. 发明公开
    • HEAT EXCHANGING SYSTEM
    • WÄRMEAUSTAUSCHSYSTEME。
    • EP0272327A1
    • 1988-06-29
    • EP87903411.4
    • 1987-05-19
    • YAMATO KOSAN CO., LTD.
    • IISHIKI, NaotsuguOKANO, ShigetouMISHIMA, Shiro
    • F25B11/00F01K23/02F01K25/10
    • F01K25/08F01D15/005F01K3/00F02B3/06F02G5/04F25B11/00F25B27/00Y02T10/166
    • A heat exchanging system with electric power generation capability driven by temperature differences is formed by connecting a generator (66) instead of a compressor (4) to a heat exchanging system which has a heating cycle part (A) and a thermal power cycle part (B), wherein the heating cycle part (A) is formed by providing a compressor (4) driven by the thermal power cycle part (B) in a heating medium circulation line connecting a radiator (1) and an evaporator (2) and the thermal power cycle part (B) is formed by providing a turbo engine (12) in a thermal power medium circulation line connecting a condenser (11) and an evaporator (13), by connecting the output shaft (15) of the turbo engine (12) to the compressor (4) and, further, by providing a constant-temperature heat source (17) which heats the evaporator (13) of the thermal power medium circulation line. Without providing the turbo engine (12), compressor (4), or generator (66) with a special type of pressure-resistant construction, these are placed in a pressure vessel (20).
    • 热交换器包括连接到系统的发电机(66),其具有加热循环部分(A)和热力循环部分(B)。 加热循环具有由与散热器(1)和蒸发器(2)一致的动力循环驱动的压缩机(4)。 动力循环由连接到与冷凝器(11)和蒸发器(13)成一直线的压缩机的涡轮发动机(12)形成。 压缩机和发动机通过输出轴连接。 恒温热源(17)为电力线的蒸发器提供热量。