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    • 2. 发明公开
    • HEAT PUMP TYPE WATER HEATER SYSTEM
    • WÄRMEPUMPENDURCHLAUFERHITZERSYSTEM
    • EP3130867A1
    • 2017-02-15
    • EP15180480.4
    • 2015-08-11
    • Vaillant GmbH
    • Acedo Navarrete, JoseMartinez, RubenVicente Ortiz de Guinea, JavierGanuza, LoretoAltuzarra, IkerArribas, Illan
    • F24H4/04F25B25/00
    • F24H4/04F25B30/02F25B2339/047
    • The present invention discloses a heat pump type water heater system including a refrigerant circuit having a water/refrigerant heat exchanger for condensing a refrigerant to release heat from the refrigerant to water passing through the water/refrigerant heat exchanger; a water tank that stores water capable of passing through the water/refrigerant heat exchanger to obtain heat from the refrigerant when the refrigerant circuit is working; and a cold water reservoir that stores cold water capable of passing through the water/refrigerant heat exchanger when the refrigerant circuit is not working. In this way, cold water from the cold water reservoir in addition to the water tank passes through the water/refrigerant heat exchanger when the refrigerant circuit is not working to avoid formation of scales and/or remove scales existing in the water/refrigerant heat exchanger.
    • 本发明公开了一种热泵式热水器系统,其特征在于,具备制冷剂回路,所述制冷剂回路具有用于冷凝制冷剂以将制冷剂的热量通过所述水/制冷剂热交换器的水冷凝的水/ 水箱,储存能够通过水/制冷剂热交换器的水,以在制冷剂回路工作时从制冷剂获得热量; 以及冷冻水储存器,其存储当制冷剂回路不工作时能够通过水/制冷剂热交换器的冷水。 以这种方式,当制冷剂回路不工作时,除了水箱之外,来自冷藏水箱的冷水通过水/制冷剂热交换器,以避免形成水垢/制冷剂热交换器中的水垢和/或去除水垢 。
    • 5. 发明公开
    • SENSOR ARRAMGEMENT IN A HEAT PUMP SYSTEM
    • 传热介质在热泵系统中的应用
    • EP3196569A1
    • 2017-07-26
    • EP16152194.3
    • 2016-01-21
    • Vaillant GmbH
    • Mora, MiguelAcedo Navarrete, Jose
    • F25B13/00F25B40/06F25B49/02
    • F25B13/00F25B40/06F25B49/02F25B2600/21F25B2700/1933F25B2700/197F25B2700/21174F25B2700/21175
    • The present invention discloses a heat pump system including a refrigerant circuit having a compressor, a first heat exchanger downstream of the compressor for operating as a condenser in a heating mode and operating as an evaporator in a cooling mode, a throttling device downstream of the first heat exchanger, and a second heat exchanger downstream of the throttling device for operating as an evaporator in the heating mode and operating as a condenser in the cooling mode. A reversing valve is disposed in the refrigerant circuit between the compressor and the first/second heat exchanger for selectively reversing the refrigerant flow therein. A sensor combination for being used to calculate a present super-heating degree, wherein the sensor combination includes a temperature sensor for detecting a temperature of the refrigerant after leaving from the second heat exchanger and before entering the reversing valve and a second sensor for being used to measure a saturated temperature of the refrigerant at a low pressure side. In this way, the heat pump system can avoid super-heating degree instabilities caused by the reversing valve, thereby improving its performance and efficiency.
    • 本发明公开了一种热泵系统,包括具有压缩机,所述压缩机用于在加热模式的冷凝器运行和作为蒸发器的冷却模式下操作的下游的第一热交换器的制冷剂回路中,第一的节流装置的下游 热交换器以及节流装置下游的第二热交换器,用于在加热模式下作为蒸发器运行并且在冷却模式下作为冷凝器运行。 换向阀设置在压缩机与第一/第二热交换器之间的制冷剂回路中,用于选择性地使制冷剂在其中流动。 一种用于计算当前过热度的传感器组合,其中,传感器组合包括用于检测离开第二热交换器之后并且在进入换向阀之前的制冷剂的温度的温度传感器以及用于被使用的第二传感器 测量低压侧制冷剂的饱和温度。 这样,热泵系统可以避免由换向阀引起的过热度不稳定,从而提高其性能和效率。