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Requirements for photovoltaic brackets for fishery-photovoltaic hybrids

1. Design requirements
Strength and stability:
The bracket must be able to withstand the weight of the solar panel and other loads attached to it, such as natural forces such as wind and snow, to ensure that the solar panel can operate stably. Therefore, the strength and stability of the bracket need to be calculated and verified in detail in the design of the bracket.
Set a reasonable safety factor to ensure that the bracket has sufficient strength and stability.
Adjustability:
The bracket needs to have a certain degree of adjustability to adapt to the needs of solar panels facing different directions to maximize the use of solar energy. For example, the bracket should be able to adjust parameters such as the height, azimuth and inclination of the solar panel to meet the best power generation effect.
Corrosion resistance:
The bracket material must have good corrosion resistance to prevent corrosion and damage caused by long-term exposure to the natural environment, thereby reducing the service life. The corrosion resistance of the material should be considered during design, and corresponding protective measures should be taken.
Ease of installation and maintenance:
The design of the bracket should be easy to install and maintain. For example, a connection method that is easy to assemble and disassemble can be used to facilitate transportation and installation. At the same time, the design of the bracket should also take into account the convenience of maintenance, such as easy cleaning, inspection and maintenance.
Economic efficiency:
On the premise of ensuring the performance and quality of the bracket, low-cost and sustainable materials and manufacturing processes should be selected as much as possible to reduce the cost of the entire fish-light complementary solar power generation system.
Lighting efficiency:
During the design, the lighting efficiency of photovoltaic panels should be fully considered to ensure that the layout and installation method of the bracket can maximize the use of solar energy resources.

2. Manufacturing requirements
Material standards:
Steel should be made of quality assurance materials that meet national steel standards.
Aluminum should be made of aluminum alloy materials that meet national standards.
The hot-dip galvanizing process should meet national standards to ensure that the bracket has high corrosion resistance.
Welding standards:
Photovoltaic brackets processed by welding should comply with the welding standards of relevant countries to ensure reliable welding quality.
3. Construction requirements
Site preparation:
Ensure that the installation site is flat, free of obstacles, and meets relevant safety requirements.
Foundation construction:
Carry out foundation construction according to design requirements to ensure the stability and load-bearing capacity of the bracket foundation.
Assembly and installation of brackets:
Assemble and install the brackets according to the drawings and specifications provided by the manufacturer to ensure that the components are firmly and stably connected. During the installation process, horizontal, vertical and angle adjustments are required to ensure that the bracket is installed flat and stable.
Safety standards:
During construction, relevant safety standards should be followed, and illegal operations are strictly prohibited to ensure the personal safety of construction workers. At the same time, detailed safety management systems and emergency plans need to be formulated to strengthen on-site safety management and prevent accidents.
Debugging and inspection:
After the installation is completed, the system is debugged and inspected to ensure the stability and safety of the bracket. Check and tighten the connecting parts of the bracket to ensure that the connection is firm and reliable.
IV. Other requirements
Environmental protection:
During the manufacturing and construction process, environmental protection principles should be followed, and environmentally friendly materials and green construction technologies should be used to reduce pollution to the environment.
Intelligence:
With the development of technology, the installation and management of fish-light complementary photovoltaic brackets can gradually introduce intelligent technologies, such as remote monitoring and intelligent management through technical means such as the Internet of Things and big data, to improve operation and maintenance efficiency and management level.

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