A kind of mobile solar oxygen increasing system and oxygen increasing method
A solar-powered and mobile technology, applied in the field of fishery and aquaculture, can solve the problems of poor autonomous mobility and low dissolved oxygen efficiency, and achieve the effects of flexible moving process, high oxygen-enhancing efficiency and mobile oxygen-enhancing effect.
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Embodiment 1
[0046] Such as figure 1 , figure 2 As shown, a mobile solar aeration system in this embodiment includes a buoyancy support mechanism, a solar power supply mechanism, a power mechanism, an aeration mechanism and a control mechanism. The buoy 1, the power mechanism includes two drive motors 4 arranged on the support plate 3, the motor shaft of the drive motor 4 is connected with the power shaft 7 through a coupling, and the bottom end of the power shaft 7 is provided with a propeller 9; the power shaft 7. A fixed shaft cylinder 8 is sleeved on the outside, and a protective cover 10 is arranged at the bottom end of the fixed shaft cylinder 8, and the propeller 9 is located in the protective cover 10. The power shaft 7 is obliquely stretched into the water, the power shaft 7 is a hollow shaft, and the top of the power shaft 7 and the fixed shaft cylinder 8 are all provided with air vents, and when the drive motor 4 starts, the power shaft 7 drives the propeller 9 to rotate at a ...
Embodiment 2
[0052] A mobile solar aeration system of this embodiment, its basic structure is the same as that of embodiment 1, the difference is that in this embodiment, an air hose 609, an air pipe 607 and an air sleeve are sequentially arranged on the inflatable aeration pump 5 6, such as image 3 and Figure 8 As shown, one end of the air pipe 607 is fixed on the tail of the support plate 3, and is connected with the air-inflating oxygen pump 5 through the air hose 609, and the other end of the air pipe 607 is sleeved inside the air sleeve 6, and the air sleeve 6 is connected with the air Tube 607 is slip connected. Such as Figure 8 As shown, the air hose 609 is placed on the support plate 3, the air tube 607 is fixed on the edge of the rear side wall of the support plate 3 and extends downward, the air tube 607 and the air sleeve 6 extend downward into the water, and the air sleeve 6 can Sliding outside the air tube 607, the depth of the air sleeve 6 in the water can be adjusted t...
Embodiment 3
[0057] The basic structure of the mobile solar aeration system of this embodiment is the same as that of Embodiment 2, except that the included angle α between the drainage hole 606 and the side wall of the fixed section 601 in this embodiment is 45°.
[0058] In this embodiment, the fixed structure of the solar panel 2 is as follows: Figure 6 As shown, the telescopic rod includes a first telescopic rod 202, a second telescopic rod 203 and a third telescopic rod 208, wherein the first telescopic rod 202 is hinged at the middle part of one side of the support frame, and the second telescopic rod 203 and the third telescopic rod 208 Respectively hinged at the two ends of the other side of the support frame. In this embodiment, three telescopic rods are set to control the inclination angle of the solar cell panel 2, and have better stable support effect, and the structural strength is high, so that the structure of the solar cell panel 2 is stable during the rotation process, an...
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