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Flexible bracket is an ideal product solution for mountain photovoltaic power station projects. It adopts a single-layer cable structure, a small number of bracket pile foundations, simple construction, high land utilization rate, and can easily cope with slopes exceeding 45°.
Compared with traditional rigid brackets, flexible brackets do not need to consider the terrain undulations too much when arranging battery components, and can better adapt to mountainous terrain. It can be flexibly arranged on rugged mountainous terrain, making full use of the terrain characteristics of the mountains to achieve greater land utilization.
Mountainous areas usually have strong winds, and traditional rigid brackets may encounter insufficient wind resistance in strong wind areas. The flexible bracket adopts elastic materials and cable structure design, has strong wind resistance and structural stability, and can operate safely and stably in strong wind areas.
Traditional rigid supports require a large number of foundation works in mountainous areas, while flexible supports only require a small number of support pile foundations, which are easy to construct and greatly reduce the difficulty and cost of construction. In addition, flexible supports can adapt to mountain terrains of different slopes and can be installed on steep slopes above 45°, making full use of mountain land and improving land utilization.
Compared with traditional rigid supports, flexible supports have relatively simple structures and high installation efficiency. Flexible supports adopt modular design, which is easy to transport and install, greatly reducing construction time and cost.
Foundation form | PHC/cast-in-place pile/cement foundation |
Material | Zn-Al-Mg steel |
Single span | ~ 20m |
Land utilization rate | ≥42% |
Slope adaptability | ≥45° |
Minimum height from ground | 0.5m |
Wind-resistant design | According to project requirements |
Module inclination | ≤35° |
Stranded wire strength | 1860MPa |
Module installation method | Single vertical installation |
Warranty | 25-30 years |
Flexible bracket is an ideal product solution for mountain photovoltaic power station projects. It adopts a single-layer cable structure, a small number of bracket pile foundations, simple construction, high land utilization rate, and can easily cope with slopes exceeding 45°.
Compared with traditional rigid brackets, flexible brackets do not need to consider the terrain undulations too much when arranging battery components, and can better adapt to mountainous terrain. It can be flexibly arranged on rugged mountainous terrain, making full use of the terrain characteristics of the mountains to achieve greater land utilization.
Mountainous areas usually have strong winds, and traditional rigid brackets may encounter insufficient wind resistance in strong wind areas. The flexible bracket adopts elastic materials and cable structure design, has strong wind resistance and structural stability, and can operate safely and stably in strong wind areas.
Traditional rigid supports require a large number of foundation works in mountainous areas, while flexible supports only require a small number of support pile foundations, which are easy to construct and greatly reduce the difficulty and cost of construction. In addition, flexible supports can adapt to mountain terrains of different slopes and can be installed on steep slopes above 45°, making full use of mountain land and improving land utilization.
Compared with traditional rigid supports, flexible supports have relatively simple structures and high installation efficiency. Flexible supports adopt modular design, which is easy to transport and install, greatly reducing construction time and cost.
Foundation form | PHC/cast-in-place pile/cement foundation |
Material | Zn-Al-Mg steel |
Single span | ~ 20m |
Land utilization rate | ≥42% |
Slope adaptability | ≥45° |
Minimum height from ground | 0.5m |
Wind-resistant design | According to project requirements |
Module inclination | ≤35° |
Stranded wire strength | 1860MPa |
Module installation method | Single vertical installation |
Warranty | 25-30 years |