Vacuum tube solar rural heating equipment
A technology of vacuum tubes and solar energy, applied in the field of vacuum tubes, can solve the problems of slowing down the heating speed of liquids and reducing the contact area between liquids and vacuum tubes, and achieve the effects of accelerating heating speed, keeping clean and increasing the contact area
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Embodiment 1
[0029] as attached figure 1 To attach Figure 6 Shown:
[0030] The invention provides a vacuum tube solar heating equipment for rural areas, the structure of which includes a bracket 1, a heating pipe 2, a water storage tank 3, and a drain pipe 4, the heating tube 2 is obliquely fixed inside the front of the bracket 1, and the water storage tank 3 is welded to the bracket 1 top, the left end of the drainage pipe 4 is vertically connected with the middle part of the right side of the water storage tank 3.
[0031] The heating pipe 2 includes a support pipe 21, a vacuum pipe 22, a water inlet pipe 23, and a cleaning mechanism 24. The bottom end of the vacuum pipe 22 is fixed on the upper surface of the support pipe 21, and the right end of the water inlet pipe 23 communicates with the middle part of the left end of the support pipe 21. The removal mechanism 24 is sleeved inside the vacuum tube 22 .
[0032] Wherein, the cleaning mechanism 24 includes a support ring 241, a br...
Embodiment 2
[0039] as attached Figure 7 To attach Figure 9 Shown:
[0040] Wherein, the swing mechanism 243 includes a support plate 43a, an adapter shaft 43b, a swing block 43c, and a reset bar 43d. The bottom end is connected with the surface on both sides of the middle and upper part of the swing block 43c, and the reset bar 43d is provided with two, which are distributed symmetrically. The reset at 43d pulls the oscillating block 43c to reset, so that the oscillating block 43c continuously oscillates to generate power, which facilitates the support ring 241 to continuously slide up and down along the inner wall of the vacuum tube 22 .
[0041] Wherein, the swing block 43c includes a force receiving block c1, a stacking cavity c2, a magnetic block c3, and a sliding plate c4. The stacking cavity c2 is recessed on the bottom surface of the force receiving block c1, and the sliding plate c4 is set inside the stacking cavity c2. The top of the magnetic block c3 is fixed at the center ...
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