Energy-consumption-free low-resistance wind energy hydraulic oxygen enrichment equipment
A technology with low resistance and no energy consumption, applied in the field of environmental engineering, can solve problems such as cumbersome equipment operation process, endangering the health of microorganisms, poor oxygen enrichment effect, etc., achieve a good algae growth environment, save costs, and reduce the content of toxic substances Effect
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Embodiment 1
[0027] Example 1: See Figure 1-3 , the present invention provides a technical solution: a wind-powered hydraulic oxygen-enriching device with no energy consumption and low resistance, including a driving assembly 1 and a lifting assembly 2, the driving assembly 1 is fixedly connected to the lifting assembly 2 through a rotating shaft 11 and a support seat 12, and the driving assembly 1 passes through a floating body 16 is located above the water surface, the lifting assembly 2 is located below the water surface, the driving assembly 1 is used to drive the lifting assembly 2 under the action of wind, and the lifting assembly 2 is used to disturb the upper and lower water bodies;
[0028] The driving assembly converts wind energy into kinetic energy of the lifting assembly. The rotating shaft is used to support the driving assembly and the lifting assembly to rotate, thereby realizing the function of disturbing the upper and lower water bodies. The support base is used to fix th...
Embodiment 2
[0041] Such as Figure 4-6 The drive assembly 1 includes a second fan blade 17, the second fan blade 17 includes two blades 171, the two blades 171 are spirally arranged around the rotating shaft 11, one side of the two blades 171 is fixedly connected with the rotating shaft 11, and the two blades 171 are fixedly connected to the rotating shaft 11. Block second blade 17 is all vertically arranged, and rotating shaft 11 middle part is provided with conical buoy 18, and conical buoy 18 both sides are fixedly connected with support base 12 by first bracket 19, and support base 12 two ends are fixedly provided with buoyant body 16, The rotating shaft 11 is rotationally connected to the conical buoy 18 and the support seat 12, and the end of the rotating shaft 11 away from the second blade 17 passes through the conical buoy 18 and the support seat 12 and is fixedly connected to the lifting assembly 2;
[0042] Both blades are spirally arranged on one side of the rotating shaft, and...
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