Pulling-expanding type solar power station having functions of revolution and lifting
A pull-and-deploy technology for a power generation device, applied in the field of solar power generation, can solve the problems of a single solar panel structure, affecting the solar energy absorption efficiency, etc., and achieve the effect of reducing the volume
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specific Embodiment approach 1
[0029] Specific implementation mode one: refer to Figure 1 to Figure 9 This embodiment is described in detail. A pull-out solar power generation device with rotation and lifting functions described in this embodiment includes: pull-out solar panel mechanism 1, lifting mechanism 2, and circular revolving track 3;
[0030] The pull-out solar panel mechanism 1 includes two sets of identical solar cell groups, each group of solar cell groups includes a plurality of sequentially stacked solar cell panels 1-1, and the plurality of sequentially stacked solar cell panels 1-1 can It is unfolded successively in a ladder shape, and the two sets of solar cell groups have a mirror symmetrical structure and can be unfolded to both sides;
[0031] Lifting mechanism 2 includes: upper oil cylinder base 2-2, inner support 2-3, oil cylinder 2-6, outer support 2-7 and lower oil cylinder base 2-8;
[0032] The oil cylinder 2-6 is located inside the inner support 2-3, the inner support 2-3 is loc...
specific Embodiment approach 2
[0038] Specific embodiment 2: This embodiment is a further description of a pull-out solar power generation device with rotation and lifting functions described in specific embodiment 1. In this embodiment, the pull-out solar panel mechanism 1 also It includes: trusses 1-2 and two sets of identical support arm groups, each set of support arm groups includes two identical support mechanisms, and each support mechanism includes: support arms 1-7 and telescopic arms 1-8;
[0039] The truss 1-2 is a rectangular parallelepiped support with openings on both sides. Two sets of identical solar cell arrays are stacked inside the truss 1-2. The support arm 1-7 connects with the short side of the bottom of the truss 1-2 through the support shaft 1-5. One end is rotationally connected, one end of the telescopic arm 1-8 is fixedly connected to the long side adjacent to the short side, the other end of the telescopic arm 1-8 is fixedly connected to the support arm 1-7, and a support arm is p...
specific Embodiment approach 3
[0041] Specific embodiment three: This embodiment is a further description of a pull-out solar power generation device with rotation and lifting functions described in specific embodiment two. In this embodiment, in each group of solar battery groups, each A limiting mechanism 1-9 is provided between two adjacent solar battery panels 1-1.
[0042] When a plurality of solar battery panels 1-1 are in a retracted state, it is only necessary to pull the bottom two solar battery panels 1-1 to both sides, and all the solar battery panels 1-1 have the same size. When two solar battery panels 1-1 travel the width of one solar battery panel 1-1, under the action of the limit mechanism 1-9 between two adjacent solar battery panels 1-1, the lower solar battery panel 1 -1 pulls the upper solar panel 1-1 and continues to pull and unfold, and so on, all solar panels 1-1 will be unfolded in turn, without pulling each solar panel 1-1 separately.
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