The structure is designed to withstand heavy snow accumulation and strong winter winds. Optimized tilt angles promote natural snow shedding, reducing long-term load pressure on solar modules and improving winter energy yield.
.jpg)
Driven piles are embedded deeply into stable soil layers, providing excellent resistance against frost heave, ground movement, and seasonal freeze-thaw cycles. This foundation method eliminates the need for large concrete foundations and accelerates construction schedules even in cold regions.
.jpg)
High-grade aluminum alloy offers excellent resistance to corrosion, moisture, and salt exposure. This makes the system suitable for snowy, humid, and high-altitude environments where long-term reliability is critical.
.jpg)
Higher ground clearance prevents snow accumulation under panels, improves airflow, and allows easy snow removal and maintenance access during winter months.
.jpg)
This system is widely applied in alpine regions, northern countries, industrial zones, and remote off-grid installations where traditional mounting systems may struggle with extreme weather conditions.
.jpg)
.jpg)
Contact us today for a customized ground mount solar solution, technical specifications, or project case studies. Our engineering team will help you build a stable, efficient, and cost-effective solar system
even for uneven or challenging terrain.
Contact Information:
Contact: Nicole Zhou
Email: sales06@sgsolar9.com
WhatsApp: +86 153 5945 447