Filter-free annual-operating air conditioning device and air conditioning method
A technology of air-conditioning device and heat exchange device, which is applied in the direction of air-conditioning system, heating method, space heating and ventilation, etc. It can solve the problems of frequent cleaning of filters, easy plugging of fillers, and failure of air-conditioning device to meet the year-round operation of the air-conditioning system. Achieve the effects of wide application range and field of use, reasonable structure and convenient use
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Embodiment 1
[0036] Embodiment 1: as attached figure 1 As shown, the indoor surface heat exchange device 7 is installed at the indoor air inlet end 9, the air inlet of the indoor surface heat exchange device 7 communicates with the room through the indoor air inlet end 9, and the air outlet of the indoor surface heat exchange device 7 passes through The inner cavity of the processing device housing 5 and the air supply port 10 communicate with the room.
[0037] According to actual needs, the indoor surface heat exchange device 7 can also be installed inside the processing device shell 5, and the air inlet of the indoor surface heat exchange device 7 communicates with the indoor air inlet port 9 and the air outlet of the indoor direct evaporative refrigeration packing 6 at the same time , the air outlet of the indoor surface heat exchange device 7 communicates with the room through the air supply port 10; or, the indoor surface heat exchange device 7 is installed inside the processing...
Embodiment 2
[0039] Embodiment 2: as attached figure 2 As shown, the difference between Embodiment 2 and Embodiment 1 is that the indoor surface heat exchange device 7 of Embodiment 2 is installed inside the processing device housing 5, and the air inlet of the indoor surface heat exchange device 7 is connected with the indoor air flow at the same time. The inlet port 9 communicates with the air outlet of the indoor direct evaporative refrigeration filler 6 , and the air outlet of the indoor surface heat exchange device 7 communicates with the room through the air supply port 10 . as attached figure 2 As shown, the outdoor heat exchange device is an air-water heat exchanger 2, the air inlet of the air-water heat exchanger 2 is directly connected to the air inlet port 3, and the air outlet of the air-water heat exchanger 2 is directly connected to the exhaust port. The tuyere ends 4 communicate with each other.
Embodiment 3
[0040] Embodiment 3: as attached image 3 As shown, the difference between embodiment 3 and embodiment 1 is that the outdoor heat exchange device of embodiment 3 is an air-water heat exchanger 2, and an outdoor direct evaporative cooling device is installed in the cooling device housing 1, and the outdoor direct The evaporative cooling device includes an outdoor direct evaporative cooling filler 19, an outdoor filler spray device 20 is arranged above the outdoor direct evaporative cooling filler 19, an outdoor circulating water tank 21 is arranged below the outdoor direct evaporative cooling filler 19, and the water outlet of the outdoor circulating water tank 21 The cooling circulation pipeline 30 with the outdoor spray circulating water pump 22 communicates with the water inlet of the outdoor packing spray device 20, and the air inlet of the outdoor direct evaporative cooling packing 19 communicates with the outdoor through the air inlet port 3, and the outdoor direct evapo...
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