Edible boiled water efficient energy-saving ice maker system
A high-efficiency energy-saving ice maker technology, applied in the direction of ice making, ice making, application, etc., can solve problems such as discomfort, low ice making efficiency, and high energy consumption, and achieve a wide range of adaptation, reduce energy consumption, and reduce occupancy The effect of the area
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Embodiment 1
[0038] Such as figure 1 It shows that according to an exemplary embodiment, a high-efficiency energy-saving ice maker system for drinking boiled water includes: a first five-stage water purifier 2, the water inlet end of which is provided with a first water valve 1 and connected to an external water source Water pipeline, that is, open the first water valve 1 to make the external water source go to the first five-stage water purifier 2 through the water inlet pipeline, so as to filter the impurities in the external water source. The filtered water is passed into the water boiler 3 connected to the water outlet of the first five-stage water purifier 2, and the filtered water is boiled by the water boiler 3 to remove bacteria and residual impurities in the water source to improve the efficiency of ice making. It is safe to use and good for your health. The water outlet end of the water boiler 3 is provided with a second water valve 5, and a high-level water storage tank 7 conne...
Embodiment 2
[0040] Such as figure 2 It shows a high-efficiency and energy-saving ice maker system for drinking boiled water according to an exemplary embodiment. In the above embodiment, during the process from the external water source to the water boiler 3, the water outlet end of the first five-stage water purifier 2 is connected to the first cold and hot The exchanger 13 and the second cold heat exchanger 14, and the water outlet end of the second cold heat exchanger 14 is connected to the water boiler 3 . The water sent into the water boiler 3 can be heated in advance to speed up the boiling of the water, improve the ice-making efficiency, and reduce the energy consumption of the water boiler 3 .
[0041]At the same time, in the above, the water outlet end of the first water pump supercharger 6 is connected to the second cold heat exchanger 14 connected with the high water storage tank 7, so that in the process of the water coming out from the water boiler 3 to the high water storag...
Embodiment 3
[0043] Such as image 3 It shows that according to an exemplary embodiment, the high-efficiency and energy-saving ice maker system for drinking boiled water, the water outlet end of the first five-stage water purifier 2 is also connected to the third cold and heat exchanger 18, and the water outlet end of the third cold and heat exchanger 18 Connected to the water boiler 3, the water source is from the first cold heat exchanger 13 to the second cold heat exchanger 14 to the water boiler 3, and the water source is directly from the third cold heat exchanger 18 to the water boiler 3, so that the water source can be separated into Water arrives in the water boiler 3, effectively reduces the energy consumption of equipment.
[0044] The water outlet of the first water pump supercharger 6 is connected to the second cold heat exchanger 14, the water outlet of the second cold heat exchanger 14 is connected to the third cold heat exchanger 18, and the water outlet of the third cold he...
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