Efficiency and Durability in Solar Energy Systems
Solar Energy Systems (SES) are among the most preferred solutions in renewable energy sources. The correct placement and longevity of solar panels directly affect the efficiency and economic advantage of the system. This is where SES Tracker Construction Manufacturing comes into play. This system provides a structure that continuously adjusts the position of solar panels according to the movement of the sun, allowing them to capture sunlight more efficiently.
What is a SES Tracker?
A SES Tracker refers to the mounting of solar panels on a moving construction. This system is designed to maximize energy production by capturing sunlight at the highest possible level. Unlike traditional systems where the panels are fixed, SES Tracker constructions allow the panels to move according to the angle of the sun.
Advantages of SES Tracker Constructions
- Increased Energy Efficiency: With the solar tracking system, panels adjust their position throughout the day to follow the sun's movement, producing 20% to 30% more energy compared to fixed systems.
- Maximum Sunlight Capture: The panels begin in the optimal position at sunrise and move throughout the day to capture sunlight to its fullest potential.
- Long-lasting Structures: SES Tracker constructions are designed to be resistant to wind and weather conditions, ensuring durability and minimizing maintenance costs.
- High Efficiency in Small Areas: Especially in projects with limited space, SES Tracker systems enable the generation of more energy in the same area. This reduces land costs while increasing energy production capacity.
How is SES Tracker Construction Manufactured?
The design and manufacturing of SES Tracker systems are customized based on the characteristics of the project site. Factors such as wind load, land slope, and sunlight exposure are considered to produce the most efficient and durable systems. Materials such as steel and aluminum, which provide high standards of rust resistance and durability, are used during the manufacturing process.