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    • 3. 发明公开
    • Air conditioner
    • 冷气机
    • EP2437009A3
    • 2013-06-26
    • EP11155873.0
    • 2011-02-24
    • Panasonic Corporation
    • Kamoda, HirokazuIuchi, AkiraKawazoe, DaisukeAshihara, Masayoshi
    • F25B13/00F25B31/00F25B47/02F25B49/02
    • F25B47/022F25B31/006F25B49/022F25B2313/0293F25B2313/0314F25B2313/0315F25B2400/04F25B2400/05F25B2400/24F25B2600/01F25B2600/0253F25B2600/2501F25B2700/2106F25B2700/2111Y02B30/741
    • An air conditioner has a refrigerating cycle in which a refrigerant flows through a compressor 6, a four-way valve 8, an indoor heat exchanger 16, an expansion valve 12, an outdoor heat exchanger 14, and the four-way valve 8 in this order during heating, and also has a heat storage tank 32 that accommodates a heat storage material 36 for storing therein heat generated by the compressor 6 and a heat storage heat exchanger 34,. The air conditioner includes a heat storage bypass circuit for connecting a refrigerant pipe between the indoor heat exchanger 16 and the expansion valve 12 and a refrigerant pipe between the four-way valve 8 and an inlet port defined in the compressor 6, a defrosting bypass circuit for connecting a refrigerant pipe between the expansion valve 12 and the outdoor heat exchanger 16 and a refrigerant pipe between an outlet port defined in the compressor 6 and the four-way valve 8, and a heat storage two-way valve 42 provided in the heat storage bypass circuit. Also, a normal heating mode and a quick heating mode are provided, and a warm wind is blown out more quickly in the quick heating mode than in the normal heating mode.
    • 在该空调机中,制冷剂在压缩机6,四通阀8,室内热交换器16,膨胀阀12,室外热交换器14,四通阀8中流动的制冷循环 并且还具有容纳用于储存由压缩机6和储热换热器34产生的热的储热材料36的储热罐32。 该空气调节器包括蓄热旁路回路,用于连接室内热交换器16和膨胀阀12之间的制冷剂管路和四通阀8与限定在压缩机6中的入口之间的制冷剂管路,除霜旁路回路 用于连接膨胀阀12和室外热交换器16之间的制冷剂管和限定在压缩机6中的出口和四通阀8之间的制冷剂管以及设置在热量中的蓄热二通阀42 存储旁路电路。 此外,提供正常加热模式和快速加热模式,并且在快速加热模式下比在正常加热模式下更快速地吹出暖风。
    • 10. 发明公开
    • Air conditioner
    • 冷气机
    • EP2428753A3
    • 2013-06-26
    • EP11155860.7
    • 2011-02-24
    • Panasonic Corporation
    • Kamoda, HirokazuTokura, SatoshiDaimon, HiroyukiKawazoe, Daisuke
    • F25B13/00F25B31/00F25B47/02F25B49/02
    • F25B13/00F25B31/006F25B47/022F25B49/022F25B2313/02741F25B2313/0314F25B2313/0315F25B2400/04F25B2400/05F25B2400/24F25B2600/0253F25B2600/2501F25B2700/2106F25B2700/2111Y02B30/52Y02B30/741
    • An air conditioner is provided with a heat storage tank 32 that accommodates a heat storage material 36 for storing therein heat generated by a compressor 6 and a heat storage heat exchanger 34. A heat storage bypass circuit is provided to connect a refrigerant pipe between an indoor heat exchanger 16 and an expansion valve 12 and a refrigerant pipe between a four-way valve 8 and an inlet port defined in the compressor 6, and a defrosting bypass circuit is provided to connect a refrigerant pipe between the expansion valve 12 and an outdoor heat exchanger 14 and a refrigerant pipe between an outlet port defined in the compressor 6 and the four-way valve 8. If an outdoor heat exchanger inlet temperature sensor 44 detects a defrosting initiation temperature, a defrosting operation is initiated. Also, if the temperature detected by the outdoor heat exchanger inlet temperature sensor is less than a heat storage material temperature rise-initiation temperature higher than the defrosting initiation temperature, and if a temperature detected by a heat storage tank temperature sensor 50 does not reach a predetermined temperature, a control for increasing the temperature of the heat storage tank 32 is performed.
    • 空气调节器设置有储存储热材料36的储热罐32,储热材料36用于储存由压缩机6和储热换热器34产生的热量。设置储热旁路回路以将制冷剂管连接在室内 热交换器16和膨胀阀12以及四通阀8和限定在压缩机6中的进气口之间的制冷剂管,并且设置除霜旁通回路以连接膨胀阀12和室外热量之间的制冷剂管 以及在压缩机6中限定的出口和四通阀8之间的制冷剂管。如果室外热交换器入口温度传感器44检测到除霜起始温度,则开始除霜操作。 另外,如果室外热交换器入口温度传感器检测到的温度小于比除霜开始温度高的蓄热材料温度上升开始温度,并且如果由蓄热箱温度传感器50检测到的温度未达到 执行用于升高蓄热槽32的温度的控制。