1. Ground-mounted Photovoltaic Power Stations: In large-scale ground-mounted power stations, clamps are needed to secure the columns and beams of the photovoltaic support system. Taking a 50MW power station as an example, a single support system requires more than 2,000 clamps, and their load-bearing capacity directly affects the wind resistance rating of the power station. By optimizing the clamp spacing and bolt torque, the overall rigidity of the support system can be improved, reducing the risk of microcracks in the modules caused by strong winds.
2. Distributed Rooftop Photovoltaics: For corrugated steel roofs, specialized clamps adopt a clamp-type design, using rubber gaskets to protect the roof coating and avoid the risk of leakage. For concrete roofs, expansion bolts are used for fixing, combined with waterproof rubber rings for double protection. Data from an industrial park project shows that after adopting a customized clamp solution, the roof load-bearing uniformity improved by 40%, and operation and maintenance costs decreased by 25%.
3. Agricultural Photovoltaic Complementary Projects: In agricultural greenhouse photovoltaic systems, clamps need to balance structural strength and lightweight requirements. By using aluminum alloy materials and a hollow design, the self-weight can be reduced while ensuring load-bearing capacity, avoiding additional load on the greenhouse frame. A vegetable base project verified that this solution extends the lifespan of greenhouses to over 15 years.
4. Flexible Support System: Designed for complex terrains such as water surfaces and hillsides, the flexible support system achieves dynamic adaptation through adjustable clamps. Its core component uses a double-ear structure, combined with spring washers, which can automatically adjust the angle within a slope range of 5°-15°, ensuring that the photovoltaic panels always maintain the optimal tilt angle.
