Communication tower with wind power generation system provided with double-power blades and wind leakage protection
A wind power generation system and dual-power technology, applied in the field of communication towers, can solve problems such as high cost and waste of resources, and achieve the effects of reducing costs, enhancing wind power, and improving ultimate load capacity
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specific Embodiment approach 1
[0014] Specific implementation mode one: combine Figure 1-Figure 5 To illustrate this embodiment, the communication tower of the wind power generation system with dual power blades and wind discharge protection in this embodiment includes a base frame section 1, a wind power section 2 and a communication launch frame section 3; the base frame section 1, the wind power section Section 2 and communication transmission frame section 3 are set up sequentially from bottom to top. The base frame section 1 and the communication transmission frame section 3 are both quadrangular platform frames. The base frame section 1 includes reinforced concrete cover plate 4 and four reinforced concrete inclined beams 5 and four reinforced concrete piles 6, each of the four bottom corners of the reinforced concrete cover plate 4 is connected with a reinforced concrete inclined beam 5, and a reinforced concrete pile 6 is installed at the bottom of each reinforced concrete inclined beam 5,
[0015]...
specific Embodiment approach 2
[0016] Specific implementation mode two: combination Figure 2-Figure 4 Describe this embodiment, the dual-power fan blade 14 of this embodiment is combined and installed by at least two blade bodies to form a multi-cavity blade. Mouth 14-1. In this way, an airflow channel is formed between two adjacent dual-power blades, so that the airflow passing through the previous dual-power blade 14 blows vertically on the rear dual-power blade 14, forming a dual-power work. In addition, The inner cavity of the dual-power fan blade 14 is increased, which enhances the mechanical performance, increases the stress area of the blade, increases the viscosity of the air in the cavity, and improves the utilization rate of wind energy. Because the volume of the blade body is small, the processability is good, and there It is beneficial to the production, transportation and installation of large wind blades. Other compositions and connections are the same as in the first embodiment.
[0017...
specific Embodiment approach 3
[0018] Specific implementation mode three: combination figure 1 To illustrate this embodiment, the foundation frame section 1 of this embodiment further includes four reinforced concrete beams 18 , and one reinforced concrete beam 18 is connected between two adjacent reinforced concrete stacks 6 . In this arrangement, the four dispersed reinforced concrete piles 6 are formed into a whole through the reinforced concrete crossbeam 18, which improves the load capacity. Other compositions and connections are the same as those in Embodiment 1 or Embodiment 2.
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