TOPFENCE Agricultural Solar Mounting System Installation in South Korea
2026-03-16
As a professional solar mounting system provider, TOPFENCE delivered a customized agricultural photovoltaic mounting solution in South Korea. The project combines agricultural production with solar power generation, creating a sustainable dual-use land model.

The mounting structure is manufactured using high-strength ZAM (Zinc-Aluminum-Magnesium) steel, which offers excellent corrosion resistance and long service life, making it ideal for outdoor agricultural environments.
The agricultural PV system was designed with elevated mounting structures to ensure sufficient sunlight and working space for crops below. Adjustable tilt brackets were applied to optimize solar radiation capture while maintaining suitable growing conditions for vegetables cultivated on the farmland.
Key system features include:
High corrosion resistance ZAM steel structure
Multiple tilt design for optimal solar output
Large-span structure to minimize shading on crops
Pre-assembled components for faster installation
The mounting system supports local climate requirements, including heavy snow loads and strong seasonal winds.

Installation Process
The installation team used Direct piling foundations to minimize disturbance to the farmland soil. Thanks to the modular and pre-assembled design of the mounting system, the installation process was efficient and reduced on-site labor time.

TOPFENCE supplied a high-performance ground mounting system for a large-scale solar power station located in Gyeongsangnam-do, South Korea. Ground-mounted photovoltaic systems are widely used for utility-scale projects due to their flexibility and ability to optimize panel orientation for maximum energy generation.
The mounting structure was designed using ZAM-coated steel, which provides superior corrosion resistance compared with traditional galvanized steel and ensures reliable long-term performance.

The ground mounting system was engineered to adapt to the site's terrain and soil conditions. A modular racking structure allows quick assembly while maintaining structural strength and stability.
Main system characteristics include:
ZAM steel structure with excellent anti-corrosion performance
Direct piling foundation suitable for diverse soil conditions
Optimized tilt angle for maximum solar irradiation
High structural stability for wind and snow loads
The design also allows easy maintenance access between rows of solar panels.

Installation Process
The project utilized ground screw foundations instead of traditional concrete foundations, reducing installation time and environmental impact. Pre-assembled structural components significantly simplified the construction process.
Project Results
After commissioning, the solar power plant now supplies clean electricity to the local power grid.
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