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    • 6. 发明专利
    • Refrigerating cycle device
    • 制冷循环装置
    • JP2007263390A
    • 2007-10-11
    • JP2006085458
    • 2006-03-27
    • Sanyo Electric Co Ltd三洋電機株式会社
    • KUWABARA OSAMUYAMAGUCHI KENTARO
    • F25B1/10F25B1/00F25B43/00
    • F25B1/10F25B43/006F25B2309/061F25B2400/13
    • PROBLEM TO BE SOLVED: To improve reliability by preventing liquid refrigerant from an auxiliary circuit from being sucked to a high stage-side compressing means, in a split-type refrigerating cycle device.
      SOLUTION: This split-type refrigerating cycle device constituted to allow the refrigerant compressed and discharged by a low stage-side compressor 2 (low stage-side compressing means) to be sucked to the high stage-side compressor 3 (high stage-side compressing means) to be compressed, to allow the refrigerant discharged from the high stage-side compressor 3 to flow to a radiator 4, to divide the refrigerant from the radiator 4 into a main circuit 20 and an auxiliary circuit 10 by a flow divider 5, and to allow the refrigerant flowing to the auxiliary circuit 10 to flow from an auxiliary expansion valve 12 (auxiliary pressure reducing device) to an internal heat exchanger 7 to exchange heat with the refrigerating flowing from the flow divider 5 to the main circuit 10, further comprises a second accumulator 15 as a liquid refrigerant storing means for storing the refrigerant sucked to the high stage-side compressor 3 from the auxiliary circuit 10.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:在分体式制冷循环装置中,通过防止来自辅助回路的液体制冷剂被吸入高级侧压缩装置来提高可靠性。 解决方案:该分离式制冷循环装置构成为使得由低级侧压缩机2(低级侧压缩机构)压缩和排出的制冷剂被吸入高级侧压缩机3(高级侧 侧压缩装置)被压缩,以允许从高级侧压缩机3排出的制冷剂流向散热器4,通过流动将制冷剂从散热器4分成主回路20和辅助回路10 分配器5,并且允许流到辅助回路10的制冷剂从辅助膨胀阀12(辅助减压装置)流到内部热交换器7,以与从分流器5流向主回路的制冷剂交换热量 如图10所示,还包括作为液体制冷剂存储装置的第二蓄能器15,用于将从辅助回路10吸入高级侧压缩机3的制冷剂储存。(C)2008,JPO&INPIT
    • 7. 发明专利
    • Heat pump device
    • 热泵装置
    • JP2005106333A
    • 2005-04-21
    • JP2003337601
    • 2003-09-29
    • Sanyo Electric Co Ltd三洋電機株式会社
    • MUKOYAMA HIROSHIKOBAYASHI MASAHIROKUWABARA OSAMUOTAKE MASAHISAIWASAKI TAKANORI
    • F24H1/00F25B30/02
    • PROBLEM TO BE SOLVED: To improve the heat efficiency in a heat pump device. SOLUTION: This heat pump device 1 comprises a refrigerant circuit R constituted by circularly connecting a compressor 2, a gas cooler 3 and an evaporator 6 by pipes, and a hot water storage tank T for storing the hot water heated by the gas cooler 3, and is composed of a compression unit 2A comprising at least the compressor 2 and the gas cooler 3, and an evaporator unit 9 connected with the compressor unit 2A by a pipe and comprising at least the evaporator 6. The compression unit 2A constitutes a tank unit 7 with the hot water storage tank T. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提高热泵装置的热效率。 解决方案:该热泵装置1包括通过管道将压缩机2,气体冷却器3和蒸发器6圆形连接构成的制冷剂回路R,以及用于储存由气体加热的热水的热水储存箱T 冷却器3,并且由至少包括压缩机2和气体冷却器3的压缩单元2A和通过管道与压缩机单元2A连接并至少包括蒸发器6的蒸发器单元9组成。压缩单元2A构成 具有热水储存罐T的储罐单元7.版权所有(C)2005,JPO&NCIPI
    • 8. 发明专利
    • Heat pump type hot-water supply device
    • 热泵型热水设备
    • JP2005024241A
    • 2005-01-27
    • JP2004274284
    • 2004-09-22
    • Sanyo Air Conditioners KkSanyo Electric Co Ltd三洋エアコンディショナーズ株式会社三洋電機株式会社
    • SAITO MASANOBUENYA YOSHINORIKOYAMA KIYOSHITAKIZAWA SADAHIROSHIKICHI CHIAKIISHIGAKI SHIGEYAIZAKI HIROKAZUMUKOYAMA HIROSHIKUWABARA OSAMUYAMAZAKI HARUHISAIMAI SATORU
    • F24H1/00F24D17/00
    • PROBLEM TO BE SOLVED: To provide a heat pump type hot-water supply device capable of increasing the energy efficiency by effectively utilizing a hot water at the middle part in a hot water tank.
      SOLUTION: This heat pump type hot-water supply device is provided with a heat pump refrigerant circuit X using carbon dioxide as a refrigerant and a water circulation circuit N for hot water supply which circulates water at the bottom part in the hot water tank 26 to a refrigerant-to-water heat exchanger 27 and heats and returns the hot water heated by the refrigerant-to-water heat exchanger 27 to the top of the hot water tank 26 to store the hot water in the hot water tank 26. And, it is constituted so that a top hot water delivery pipe 40 is connected to the top of the hot water tank and an intermediate hot water delivery pipe 33 is connected to the intermediate part of the hot water tank, and the top hot water delivery pipe and the intermediate hot water delivery pipe are merged at a merging part G, and a first mixing valve 100 mixing high temperature hot water from the top hot-water supply pipe with intermediate temperature hot water from the intermediate delivery pipe is installed at the merging part and a second mixing valve 57 mixing hot water from the hot water supply pipe with city water from a city water pipe 62 is installed in the hot water supply pipe on the downstream side from the first mixing valve.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供一种能够通过有效地利用热水箱中部的热水来提高能量效率的热泵式热水供给装置。

      解决方案:该热泵式热水供给装置具有使用二氧化碳作为制冷剂的热泵制冷剂回路X和用于热水供给的水循环回路N,其在热水中的底部循环水 罐26到制冷剂 - 水热交换器27,并且将由制冷剂 - 水热交换器27加热的热水加热并返回到热水箱26的顶部,以将热水储存在热水箱26中 并且,其构造为使顶部热水输送管40连接到热水箱的顶部,并且中间热水输送管33连接到热水箱的中间部分,并且顶部热水 输送管和中间热水输送管在合流部分G处合并,并且将来自顶部热水供给管的高温热水与来自中间输送管的中间温度热水混合的第一混合阀100被安装 在来自第一混合阀的下游侧的热水供给管中安装有从热水供给管的热水和城市供水管62的自来水混合的第二混合阀57。 版权所有(C)2005,JPO&NCIPI