Refrigerating circulation system of hydrogen storage alloy air conditioner and its control method
A technology of hydrogen storage alloy and circulation system, applied in refrigerators, sorption machines, refrigeration and liquefaction, etc., can solve the problems of little use value, affecting the global environment, destroying the ozone layer, etc., achieving low manufacturing cost, small size, The effect of low energy consumption
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Embodiment approach 1
[0056] Such as figure 1 As shown, the refrigeration cycle system of the hydrogen storage alloy air conditioner in this embodiment includes:
[0057] There is a hydrogen storage alloy reaction device inside. When the hydrogen storage alloy on one side releases hydrogen, an endothermic reaction occurs, and when the hydrogen storage alloy on the other side absorbs hydrogen, an exothermic reaction occurs;
[0058] A pipeline system connected to the hydrogen storage alloy on both sides of the reaction device, the pipeline system can transport the hydrogen released from one side of the reaction device to the other side of the reaction device;
[0059] An air extraction pump installed in the pipeline system and providing power for hydrogen delivery.
[0060] The reaction device includes a first reaction device 10 and a second reaction device 20 .
[0061] The first reaction device 10 includes a first endothermic reactor 11 and a first exothermic reactor 12 filled with a hydrogen st...
Embodiment approach 2
[0078] Such as Figure 3a and Figure 3b As shown, the refrigerating cycle system of the hydrogen storage alloy air conditioner of the present invention can also have the following structure:
[0079] The reaction device includes: an endothermic reactor 110 and an exothermic reactor 120 with a hydrogen storage alloy inside.
[0080] The pipeline system includes: a first cylinder 131, a second cylinder 132 and a pipeline control device 140; one end of the first cylinder 131 communicates with the endothermic reactor 110, and the other end communicates with the air pump 150 One end of the second cylinder 132 communicates with the exothermic reactor 120, and the other end communicates with the air pump 150; the two ends of the pipeline control device 140 are respectively connected with the first cylinder 131 and the second cylinder 132 connected.
[0081] The pipeline control device 140 includes: a hydrogen delivery pipe 141 communicated with the first cylinder 131 and the seco...
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