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Introduction to solar photovoltaic bracket system

The global energy crisis has promoted the rapid development of the new energy industry, and solar energy is the most important basic energy among various renewable energy sources. Therefore, as a solar power generation technology that converts solar radiation energy into electrical energy, the photovoltaic industry is developing even more Fast; In the old concept, the photovoltaic industry mainly includes the production chain of solar components and the production chain of electrical control components such as controllers and inverters.

The advantages of using solar support systems in solar panel support go far beyond simple production and installation. Solar panels can also be flexibly moved according to the sun's rays and seasons. Just like when it was first installed, the slope of each solar panel can be adjusted to suit different angles of light by moving the fasteners, and the solar panel can be accurately fixed in the designated position by tightening it again.

In order to maximize the power output of the entire photovoltaic power generation system, combined with the geographical, climatic and solar resource conditions of the construction site, the solar modules are fixed in a certain orientation, arrangement and spacing of the support structure, usually steel structure and aluminum alloy structure. Or a mix of both.

Challenges faced by solar photovoltaic bracket design One of the most important features of any type of solar photovoltaic bracket design component assembly is weather resistance. The structure must be strong and reliable, able to withstand atmospheric erosion, wind loads and other external effects. Safe and reliable installation, maximum use effect with minimum installation cost, almost maintenance-free, reliable repair, these are important factors that need to be considered when making a choice. Highly wear-resistant materials are used in the solution to withstand wind, snow loads and other corrosive effects. Comprehensive use of aluminum alloy anodizing, ultra-thick hot-dip galvanizing, stainless steel, anti-UV aging and other technical processes to ensure the service life of the solar bracket and solar tracker.

The maximum wind resistance of the solar bracket is 216 km/h, and the maximum wind resistance of the solar tracking bracket is 150 km/h (greater than a Category 13 typhoon). New solar module bracket systems represented by solar single-axis tracking brackets and solar dual-axis tracking brackets can greatly increase the power generation of solar modules compared with traditional fixed brackets (the number of solar panels is the same). The power generation of single-axis tracking bracket components can be increased by 25%, and solar dual-axis brackets can even be increased by 40% to 60%.

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