Air conduction device for low-altitude haze removal and haze removal method using same
An air conduction, low-altitude technology, used in devices that affect weather conditions, botanical equipment and methods, climate change adaptation, etc. The effect of dispersing and reducing the floor space
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Embodiment 1
[0045] Such as Figure 1-2 As shown, the embodiment of the present invention provides a kind of air conduction device based on low-altitude haze removal, comprising a ventilation tower body 2, an air inlet 21 and a tower fan 22, and the ventilation tower body 2 is arranged in an urban area of a city with a high incidence of haze, and ventilation The bottom end of the tower body 2 is evenly provided with several air inlets 21, and the inside of the air inlets 21 is respectively provided with a tower fan 22, in order to use the tower fan 22 to suck the high-concentration smog air on the urban surface through the air inlets 21. The ventilation tower body 2 is then discharged to the free atmosphere area by the top outlet of the ventilation tower body 2, and the low-altitude smog air in the urban area is introduced into the high-altitude area, so as to promote the three-dimensional diffusion of the smog air and improve the diffusion efficiency of the smog air to effectively allevi...
Embodiment 2
[0051] In embodiment 2, for the same structure as in embodiment 1, give the same symbol, omit the same description, embodiment 2 has made improvement on the basis of embodiment 1, as image 3 As shown, the air inlets 21 are layered at different heights where the outer wall of the ventilation tower body 2 is located, wherein the highest air inlet 21 is located at the top outlet outer wall of the ventilation tower body 2, due to the density of the air Affected by temperature greatly, so the hazy air will appear layered, so the air inlets 21 of different heights can ventilate the hazy air at different heights, and can also preferentially discharge and purify the fog near the surface when the hazy weather is severe Haze air, or open the tower fans 22 in the air inlets 21 at different heights according to different time periods.
Embodiment 3
[0053] In embodiment 3, for the same structure as in embodiment 1, the same symbols are given, and the same description is omitted. The difference between embodiment 3 and embodiment 1 is that, as Figure 4 As shown, the ventilation tower body 2 adopts a heat collecting tower body 3, and the bottom end of the heat collecting tower body 3 is provided with a heat collecting air inlet 32, and the top of the heat collecting tower body 3 is provided with a Air channel 32 is connected to the heat collecting air outlet 33, and the outer wall of the heat collecting tower body 3 is evenly coated with a layer of heat absorbing layer 31, in order to utilize the heat absorbing layer 31 to absorb solar heat, so that the heat collecting tower body 3 forms Natural updraft to promote the diffusion of surface haze air.
[0054] Preferably, the heat collection tower body 3 adopts a sloped outer wall to effectively improve the heat absorption efficiency between the outer wall and sunlight per un...
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