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    • 6. 发明专利
    • Air-conditioning device
    • 空调设备
    • JP2008267732A
    • 2008-11-06
    • JP2007113420
    • 2007-04-23
    • Kansai Electric Power Co Inc:TheMitsubishi Electric Corp三菱電機株式会社関西電力株式会社
    • OTSUKA OSAMUSUMIDA YOSHIHIROUNEZAKI FUMITAKEIKEUCHI MASAKIUJI HITOHIRO
    • F25B1/00F24F11/02
    • F25B7/00
    • PROBLEM TO BE SOLVED: To provide an air-conditioning device improved in cooling performance by performing control so as to promote supercooling of a condensate refrigerant. SOLUTION: This air-conditioning device 100 has a main refrigeration circuit constituted by successively connecting a compressor 3, a four-way switching valve 4, a condenser 5, a supercooling heat exchanger 6, a main expansion valve 7 and an evaporator 8, and a supercooling generating circuit 2, constituted independently of the main refrigeration circuit 1 by successively connecting a compressor 10 for supercooling generation, a condenser 11 for supercooling generating, an expansion valve 12 for supercooling generation and an evaporator 13 for supercooling generation, and heat is exchanged between the supercooling heat exchanger 6 of the main refrigeration circuit 1 and the evaporator 13 for supercooling generation, of the supercooling generation circuit 2. A control device 15 is disposed to control the start of the compressor 10 for supercooling generation, and the control device 15 compares the pressure or the temperature after starting the main refrigeration circuit 1 with a predetermined set value and controls the start of the compressor 10 for supercooling generation, on the basis of a result of the comparison. COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:通过进行控制来提供冷却性能提高的空气调节装置,以促进冷凝剂制冷剂的过冷却。 解决方案:该空气调节装置100具有主冷冻回路,其通过连续地连接压缩机3,四通切换阀4,冷凝器5,过冷却热交换器6,主膨胀阀7和蒸发器 8以及过冷却生成电路2,其通过连续地连接用于过冷却生成的压缩机10,用于过冷却生成的冷凝器11,用于过冷却生成的膨胀阀12和用于过冷却生成的蒸发器13而独立于主制冷回路1,以及 在过冷却生成电路2的主制冷回路1的过冷却热交换器6和过冷却生成电路2的过冷却生成用蒸发器13之间进行热交换。控制装置15设置为控制压缩机10的过冷却开始, 控制装置15将主制冷回路1启动后的压力或温度进行比较 基于比较结果控制压缩机10的启动,以进行过冷却生成。 版权所有(C)2009,JPO&INPIT
    • 7. 发明专利
    • Air-conditioning device
    • 空调设备
    • JP2008267731A
    • 2008-11-06
    • JP2007113391
    • 2007-04-23
    • Kansai Electric Power Co Inc:TheMitsubishi Electric Corp三菱電機株式会社関西電力株式会社
    • OTSUKA OSAMUSUMIDA YOSHIHIROUNEZAKI FUMITAKEIKEUCHI MASAKIUJI HITOHIRO
    • F25B1/00F25B39/04
    • F25B7/00
    • PROBLEM TO BE SOLVED: To provide a compact air-conditioning device of high productivity.
      SOLUTION: In this air-conditioning device comprising a main refrigerant circuit 1 constituted by circularly connecting at least a compressor 3, a condenser 5, a supercooling heat exchanger 6, a main expansion valve 7 and an evaporator 8, and a supercooling generating circuit 2 constituted by circularly connecting a compressor 10 for supercooling generation, a condenser 11 for supercooling generation, an expansion valve 12 for supercooling generation and an evaporator 13 for supercooling generation, and exchanging heat between the supercooling heat exchanger 6 of the main refrigerant circuit 1 and the evaporator 13 for supercooling generation of the supercooling production circuit 2, the condenser 5 of the main refrigerant circuit 1 and the condenser 11 for supercooling generation are integrally constituted.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供高生产率的紧凑型空调装置。 解决方案:在这种空调装置中,包括通过将至少压缩机3,冷凝器5,过冷却热交换器6,主膨胀阀7和蒸发器8圆形连接构成的主制冷剂回路1和过冷却 通过循环连接用于过冷却生成的压缩机10,用于过冷却产生的冷凝器11,用于过冷却产生的膨胀阀12和用于过冷却产生的蒸发器13构成的发电电路2,并且在主制冷剂回路的过冷却热交换器6之间进行热交换 1和用于过冷却生产电路2的过冷却生成的蒸发器13,主制冷剂回路1的冷凝器5和用于过冷却产生的冷凝器11一体地构成。 版权所有(C)2009,JPO&INPIT
    • 8. 发明专利
    • Air-conditioning device
    • 空调设备
    • JP2008267729A
    • 2008-11-06
    • JP2007113349
    • 2007-04-23
    • Kansai Electric Power Co Inc:TheMitsubishi Electric Corp三菱電機株式会社関西電力株式会社
    • OTSUKA OSAMUSUMIDA YOSHIHIROUNEZAKI FUMITAKEIKEUCHI MASAKIUJI HITOHIRO
    • F25B1/00F25B39/04
    • PROBLEM TO BE SOLVED: To provide a compact air-conditioning device of high productivity capable of easily performing an air-conditioning operation, without needing expansion valves for supercooling production and opening and closing valves for a supercooling generatin circuit, of the number same as the number of main refrigerant circuits, even if the plurality of main refrigerant circuits are necessary.
      SOLUTION: In this air-conditioning device having the plurality of main refrigerant circuits 1, 2 respectively constituted by circularly connecting compressors 4, 8, condensers 5, 9, supercooling heat exchangers 211, 212, main expansion valves 191, 192 and evaporators 7, 11, and a supercooling production refrigerant circuit 3, comprising a plurality of evaporators 6, 7 for supercooling production, respectively cooling the plurality of supercooling heat exchangers 211, 212, a compressor 12 for a supercooling generating circuit, a condenser 13 for the supercooling generating circuit, and an expansion valve 14 for supercooling generation, the plurality of evaporators 211, 212 for supercooling generation are connected in series, and a capacity of the expansion valve 14 for supercooling generation is controlled, on the basis of a degree of superheat of a refrigerant at an outlet of the evaporator 212 for supercooling generation, of the final stage.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供一种能够容易地进行空调操作的高生产率的紧凑型空调装置,而不需要用于过冷却生产的膨胀阀和用于过冷却生成电路的开关阀,其数量 与主制冷剂回路的数量相同,即使需要多个主制冷剂回路也是如此。 解决方案:在具有分别由圆形连接压缩机4,8,冷凝器5,9,过冷却热交换器211,212,主膨胀阀191,192和主膨胀阀191,192构成的多个主制冷剂回路1,2的空调装置中, 蒸发器7,11和过冷却生产制冷剂回路3,包括多个用于过冷却生产的蒸发器6,7,分别冷却多个过冷却热交换器211,212,用于过冷却发生电路的压缩机12,用于 过冷却发电电路和用于过冷却生成的膨胀阀14,用于过冷却生成的多个蒸发器211,212串联连接,并且基于以下的程度来控制用于过冷却生成的膨胀阀14的容量 在最终级的用于过冷却生成的蒸发器212的出口处的制冷剂的过热。 版权所有(C)2009,JPO&INPIT
    • 9. 发明专利
    • Heat pump type heat recovering device
    • 热泵型热回收装置
    • JP2008008595A
    • 2008-01-17
    • JP2006182280
    • 2006-06-30
    • Kansai Electric Power Co Inc:TheToyo Eng Works Ltd株式会社東洋製作所関西電力株式会社
    • IKEUCHI MASAKIIKOMA KENJIWATABE SHINICHIRONINOMIYA TATSUHIRANO ISAOICHIOKA JUN
    • F25B1/00F25B30/02
    • Y02A40/965Y02B30/52Y02P60/851
    • PROBLEM TO BE SOLVED: To provide a heat pump type heat recovering device capable of stably rising a heat recovering operation by preventing problems that a refrigerant is rapidly cooled to be condensed into liquid between a heat exchanger for recovering heat and a suction port of a compressor after starting a heat recovering operation, or the refrigerant is condensed by oil inside of the compressor to be condensed into liquid. SOLUTION: This heat pump type heat recovering device constituted by annularly connecting the compressor 1, a condenser 2, a pressure reducing device 4 and an evaporator 5 in this order, heating the water supplied from the external to the condenser 2 by condensation latent heat of the refrigerant in the condenser to supply steam/water of high temperatures, and evaporating the refrigerant in the evaporator 5 while using exhaust heat supplied from the external to the evaporator 5 as a heat source, is further provided with heat quantity control means 14, 16 for controlling heat quantity of exhaust heat supplied to the evaporator in starting the device. COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:提供一种热泵式热回收装置,其能够通过防止制冷剂被快速冷却以在用于回收热量的热交换器与吸入口之间冷凝成液体的问题而稳定地升高热回收操作 开始热回收操作后的压缩机,或者制冷剂被压缩机内部的油冷凝而被冷凝成液体。

      解决方案:该热泵式热回收装置依次将压缩机1,冷凝器2,减压装置4和蒸发器5环状地连接起来,通过冷凝将从外部供给到冷凝器2的水加热 冷凝器内的制冷剂的潜热供给高温蒸气/水,蒸发器5内的制冷剂蒸发,同时利用从外部向蒸发器5供给的排热作为热源,还设置有热量控制装置 14,16,用于控制在启动装置时供应到蒸发器的排气热量。 版权所有(C)2008,JPO&INPIT

    • 10. 发明专利
    • Vacuum thawing apparatus
    • 真空装置
    • JP2010130923A
    • 2010-06-17
    • JP2008308393
    • 2008-12-03
    • Kansai Electric Power Co Inc:The関西電力株式会社
    • KINOSHITA KOICHIIKEUCHI MASAKI
    • A23L3/365
    • Y02P60/851
    • PROBLEM TO BE SOLVED: To provide a vacuum thawing apparatus improving an energy efficiency. SOLUTION: This vacuum thawing apparatus 1 for thawing an object F to be thawed by latent heat of steam includes a vacuum thawing chamber 2 which holds the object F to be thawed in the inside, a water storage container 31 which is arranged in the vacuum thawing chamber 2 and holds water, an electric heater 32 which heats water in the water storage container 31 to be converted to steam, a vacuum pump 41 which exhausts the inside of the vacuum thawing chamber 2, a heat exchanger tube 33 which extends to inside the water storage container 31 and below the object F to be thawed, and circulating piping 44 which connect the outlet side of the vacuum pump 41 and the heat exchanger tube 33. The heat exchanger tube 33 is formed with a restrictor 331 on a second end side. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供提高能量效率的真空解冻装置。 解冻方法:用于解冻被蒸气潜热解冻的物体F的真空解冻装置1包括:保持要在内部解冻的物体F的真空解冻室2,其设置在 真空解冻室2并且保持水,将储水容器31中的水加热以转换为蒸汽的电加热器32,排出真空解冻室2内部的真空泵41,其延伸的热交换器管33 到储水容器31的内部并被解冻的物体F的下方,以及连接真空泵41的出口侧和热交换管33的循环配管44.热交换管33在其上形成有限流器 第二端。 版权所有(C)2010,JPO&INPIT