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Influence of the capillary pipe geometry on the energy efficiency of household refrigerator

机译:毛细管几何对家用冰箱能效的影响

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The energy efficiency of household refrigerating appliances was measured according to EN TSO15502. A Liebherr TKP 1650 built-in Domestic refrigerator is used to determine the influence of the capillary pipe geometry. The temperatures at the injection site of the refrigerant, the inlet and outlet of the evaporator receiver were measured. The obtained results show that there is no universal optimal geometry of the capillary pipe. There is no element of the refrigeration cycle whose change has no effect on the refrigerant flow rate passing through the capillary pipe. A change in the geometry of capillary pipe affects all other components of the refrigeration cycle and can greatly improve or impair the efficiency of the refrigerator. The potential for switching from one to two different geometries of the capillary pipe is approximately 8% improvement in energy consumption. Possible implementation should take into account the potential savings - 8% and the life cycle of the particular appliance (- 15 years). For the particular measured device, the consumption per year is about 75kWh, which should take into account that the device itself has a low volume and low energy consumption.
机译:根据EN TSO15502测量家用制冷器具的能效。利勃海尔TKP 1650内置家用冰箱用于确定毛细管几何形状的影响。测量制冷剂的注射部位的温度,测量蒸发器接收器的入口和出口。所得结果表明,毛细管没有通用最佳几何形状。没有制冷循环的元素,其变化对通过毛细管的制冷剂流速没有影响。毛细管的几何形状的变化影响了制冷循环的所有其他部件,并且可以大大提高或损害冰箱的效率。从毛细管的一个到两个不同几何形状切换的可能性大约有8%的能量消耗的提高。可能的实施应考虑到潜在的节省 - 8%和特定设备的生命周期( - 15年)。对于特定的测量装置,每年的消耗约为75kWh,这应该考虑到设备本身具有低容量和低能量消耗。

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