The ramming pile ground mount system offers an economical and efficient solution for large commercial and utility-scale solar park projects, especially suited for uneven terrain. By utilizing a driven pile foundation, this ground solar mounting system eliminates the need for extensive excavation, significantly reducing both installation time and labor costs.
Equipped with a ramming pile piling machine, the system allows each pile to be installed quickly and precisely, making it ideal for large-scale applications. Multiple configuration options are available—including single or double piles, and single or double arms—enabling flexible adaptation to various site conditions and project requirements. The main structure is constructed using hot-dip galvanized steel or anodized aluminum alloy, ensuring corrosion resistance and long-term durability under wind loads up to 60m/s and snow loads of 1.4 kN/m².
This ground mount solar kit provides a cost-effective, versatile, and reliable foundation solution for solar installations in open fields, helping achieve faster project turnaround and lower overall costs.
Locate the pile positions according to the drawings and drive C-shaped steel piles to the design elevation; align the columns with the pile tops and tighten the bolts to ensure the columns are vertical.
Install the purlins, diagonal beams, diagonal brace connectors, and diagonal braces in sequence. Initially fix all components with bolts, adjust the angles, and then tighten them completely.
Lay the purlins on the diagonal beams at the specified spacing and secure them with bolts; install the tie rod connectors on the columns, then connect the tie rods (tension and lock the bolts) to form a complete support system.
Place the solar panels on the purlins, use the center and side pressure blocks to press the frame down, and tighten the bolts; check the flatness of the modules and whether the fasteners are loose.
04 Core Engineering Parameters
Key indicators
Parameter details
Applicable roof
Ground
Wind load
60m/s
Snow load
1.4 kN/m²
Main material
GB50009-2012, EN1990:2002, ASCE7-05, AS/NZS1170, JIS C8955:2017,GB50017-2017
Provide customized solution drawing, load calculation reports (including wind load/snow load/seismic force analysis) or assembly drawing.
▶ On-site survey:
Engineers conduct on-site investigations ground conditions with local soil investigation professionals.
▶ Installation training and guidance:
Provide installation videos, installation manuals and on-site installation guidance to ensure safe and complete installation.
07 Technical verification system
Provide standardized installation videos, operation manuals and on-site technical guidance to ensure zero error in construction.
▶ Extreme environmental testing
• Pass the low-temperature impact at -40℃
• Salt spray corrosion (3,000 + hours)
• Extreme tests such as 60m/s hurricane simulation.
▶ Third-party certification
• We hold wind pressure, snow pressure, seismic resistance and material certification certificates issued by TUV, SGS and other institutions to ensure the compliance of global projects.
08 Packages & Shipping
International standard packaging; Goods are dispatched from Shanghai, Ningbo, Tianjin, Xiamen and Shenzhen ports in China.
Solar First's ground-mounted solar system is an east-west adjustable, pre-assembled bracket solution designed for large commercial and utility ground-mounted solar installations. It utilizes a durable helical pile foundation, ensuring rapid deployment, robust structural support, and long-term corrosion resistance.
The core competitiveness of aluminum helical pile foundations lies in "fast on-site construction speed, environmental friendliness, and strong adaptability to terrain".
The Solar First Inward-Curved C-Shaped Steel Ground Mounting System is a high-performance solution designed for large-scale ground-mounted plants and projects on complex terrain.
The Solar First Inward-Curved C-Shaped Steel Ground Mounting System is a high-performance solution designed for large-scale ground-mounted plants and projects on complex terrain.