Energy-saving air conditioner
A technology of air conditioner and air conditioner fan, which is applied in the field of air conditioning technology and solar energy utilization, can solve the problems of desorption process lag, limitation, power grid can not provide power, etc., and achieve the effect of accelerating heat exchange, large heat transfer temperature difference, and increasing heat transfer speed
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Embodiment 1
[0016] like figure 1 , figure 2 , Figure 4 , Figure 5 As shown, the energy-saving air conditioner of the present invention consists of two groups of alloy reactors (RA, RB), (RC, RD) with different hydrogen balance pressures, solar water heater 18, air conditioner fan coil unit 15, underground heat exchanger GS, solar energy exchange Heat circulating water pump 17, air-conditioning coil heat exchange circulating water pump 16 and geothermal heat exchange circulating water pump 22, hydrogen interflow pipe 24 is arranged between hydrogen storage alloy reactors RA and RB, hydrogen storage alloy reactors RC and RD There is a hydrogen cross-flow pipe 26, and through the control of the cycle switching solenoid valve set in the energy-saving air conditioner, the energy-saving air conditioner can switch between two connection structures: solar water heater 18, hydrogen balance pressure hydrogen storage alloy reactor RA, The solar heat exchange circulating water pump 17 forms a h...
Embodiment 2
[0022] like image 3 , Image 6As shown, the difference between this embodiment and Embodiment 1 is that the underground heat exchanger GS adopts underground pipe technology, and the buried pipe technology for heat exchange with underground pipes can adopt two forms of horizontal buried pipes and vertical pipes. The heater GS includes a buried pipe heat exchanger GS4 connected to the return pipe 20 and the outlet pipe 21. Through the buried pipe heat exchanger GS4, the return water of the return pipe 20 is exchanged with the ground GS3 to achieve the purpose of cooling and utilizing geothermal energy. .
[0023] The valve group VB has six connection ports with the outside world, which are respectively connected with the connecting pipes 5, 6, 7, 8, 9 and 10. There are two solenoid valves VB2 and two three-way solenoid valves VB3 inside the valve group. By controlling the switches of these four solenoid valves, the connecting pipe 5 can be controlled to communicate with the c...
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