Solar dehumidifying air conditioner system with energy storage effect
A technology of air conditioning system and solar energy, which is applied in air conditioning system, heating and ventilation control system, heating and ventilation safety system, etc., can solve the problem that the rotary dehumidifier cannot store energy, is not completely matched, and cannot solve the problem of solar energy supply and utilization time. and other problems to achieve the effect of meeting the comfort requirements of air conditioning, less energy loss and small footprint
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Embodiment 1
[0037] This embodiment is used for dehumidification and cooling in summer.
[0038] Such as figure 1 As shown, this embodiment includes: a treatment air path system, a regeneration air path system and a solid desiccant accumulator bed 11 , the treatment air path system and the regeneration air path system are connected through the solid desiccant energy storage bed 11 .
[0039] in:
[0040] The treatment air path system includes an indoor return air pipe 9 connected by air ducts, a treatment fan 10, a treatment side outlet energy storage bed stop valve 13-3, a treatment side entry energy storage bed stop valve 13-2, an air heat exchanger 4, The evaporative cooler 5 and the processing air supply pipe 6, wherein the indoor return air pipe 9 receives the outdoor fresh air 8 and the indoor return air, and is respectively connected with the indoor 7 and the processing fan 10, and the processing fan 10 exits the energy storage bed through the processing side The cut-off valve 13-...
Embodiment 2
[0058] This embodiment is a variation of Embodiment 1, and can also be used for direct heating and energy storage in winter.
[0059] Such as figure 2 As shown, on the basis of Embodiment 1, this embodiment also includes a direct heating air inlet pipe 21-1, a direct heating air outlet pipe 21-2, a direct heating return air pipe 21-3, and a direct heating inlet control valve 22- 1. Direct heating outlet control valve 22-2, direct heating return control valve 22-3 and direct heating removal control valve 22-4, wherein the outlet of the auxiliary air heater 3 is connected to the direct heating air inlet pipe 21-1 The direct heating inlet control valve 22-1 is connected, and is connected to the indoor 7 through the processing air supply pipe 6; the processing fan 10 is connected to the regeneration air return air through the direct heating outlet pipe 21-2 and the direct heating outlet control valve 22-2. The regeneration air return pipe 14 is connected to the solar energy devi...
Embodiment 3
[0063] Embodiment 3 is a modification example of Embodiment 1, and it can also be used for heating by using an energy storage bed in winter when the solar radiation is insufficient.
[0064] Such as image 3 As shown, on the basis of Embodiment 1, this embodiment also includes a heating process air cut-off valve 18-1, a heating process air control valve 18-2, a heating air supply cut-off valve 18-3, and a heating air supply control valve 18- 4. Heating and processing air pipe 19, heating and air supply pipe 20, wherein, the processing fan 10 is connected to the evaporative cooler 5 through the heating and processing air control valve 18-2 and the heating and processing air pipe 19, and the processing fan 10 is also processed by heating The wind cut-off valve 18-1 is connected with the cut-off valve 13-3 of the energy storage bed on the processing side; Connection, the other end of the heating air supply pipe 20 is connected with the processing air supply pipe 6 and the indoor...
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