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    • 95. 发明公开
    • REGENERATIVE AIR CONDITIONER
    • 再生空调
    • EP3242096A1
    • 2017-11-08
    • EP15872255.3
    • 2015-12-22
    • Daikin Industries, Ltd.
    • FUJIMOTO, ShuujiYASUO, KouichiCHEN, KebiNAKAO, Takuya
    • F25B13/00F24F5/00F25B1/00F25B1/10
    • F24F5/00F25B1/00F25B1/10F25B13/00
    • A refrigerant circuit (11) includes a primary thermal storage channel (44) to which a thermal storage section (60) is connected, and an intermediate suction portion (35) through which the refrigerant having an intermediate pressure between high and low pressures in the refrigerant circuit (11) is taken into a compressor section (22, 80). The refrigerant circuit (11) performs a first utilization heating operation in which part of the refrigerant which has been condensed in an indoor heat exchanger (72) is diverged into the primary thermal storage channel (44), is evaporated in the thermal storage section (60), and is then taken into the intermediate suction portion (35) of the compressor section (22, 80), and simultaneously, the rest of the refrigerant which has been condensed in the indoor heat exchanger (72) is evaporated in an outdoor heat exchanger (23), and is then taken into a low-pressure suction portion (28, 84) of the compressor section (22, 80).
    • 制冷剂回路11具备连接有蓄热部60的一次侧蓄热通路44和中间吸入部35,该中间吸入部35用于使制冷剂的中高压和低压的中间压 制冷剂回路(11)被吸入压缩机部分(22,80)。 制冷剂回路(11)进行使在室内热交换器(72)中冷凝了的制冷剂的一部分向一次侧蓄热流路(44)分支并在蓄热部内蒸发的第一利用制热运转 然后被吸入压缩机部分(22,80)的中间抽吸部分(35),同时,在室内热交换器(72)中冷凝的其余制冷剂在室外 热交换器23,然后被带入压缩机部分22,80的低压吸入部分28,84。
    • 100. 发明公开
    • AN ARRANGEMENT ADAPTED FOR ENERGY TRANSFORMATION
    • 能量转换安排已完成
    • EP2203694A1
    • 2010-07-07
    • EP07808822.6
    • 2007-09-17
    • Picoterm ABOvelius, Bengt Seved
    • OVELIUS, Bengt, Seved
    • F25B9/14F03G7/00
    • F03G7/002F03G7/04F24F5/00F25B9/14
    • The present invention encompasses an arrangement (8) adapted for energy transformation under the utilisation of an oscillating gas volume (17) gathered in a space (7), where the reciprocal oscillating movement of the gas volume within said space (7) is sustained by an energy supplying device (6) and where a gas compression caused by the oscillation makes for the creation of an elevated temperature within all or parts of said gas volume (17) and where a gas decompression caused by the oscillation makes for the creation of reduced temperature within all or parts of said gas volume (17). There are connected to said space (7) one or more first valve-related means (5), where said first valve-related means is controllably actuable by a control unit (10) in order to supply or extract to or from said space (7) thermal energy during a compression stage for said gas volume (17). There are further connected to said space (7) one or more second valve-related means (15) where said second valve-related means is controllably actuable by the control unit (10) in order to supply or extract to or from said space (7) thermal energy during a decompression stage for said gas volume (17). Said control unit (10) is adapted to briefly permit actuation of said first valve-related means (5) and said second valve-related means (15) within mutually discrete time intervals.