Steel cable flexible photovoltaic system installed in sloping terrain and Multi-use in 1 place

The Steel cable flexible photovoltaic system is composed of terminal bracket, middle bracket, main cable and wind resistance system. Through customized design and algorithm model calculation, the photovoltaic module array is constructed into a safe and stable space, which can effectively resist wind vibration and greatly reduce the occurrence of hidden cracks of photovoltaic modules. The span of the cable structure is usually 20 – 40 meters, up to 100 meters, and the components are 2 – 30 meters above the ground.

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Description

The Steel cable flexible photovoltaic system is composed of terminal bracket, middle bracket, main cable and wind resistance system. Through customized design and algorithm model calculation, the photovoltaic module array is constructed into a safe and stable space, which can effectively resist wind vibration and greatly reduce the occurrence of hidden cracks of photovoltaic modules. The span of the cable structure is usually 20 – 40 meters, up to 100 meters, and the components are 2 – 30 meters above the ground.

The Steel cable flexible photovoltaic system Characteristics:

1. Steel cable flexible photovoltaic system has advantages such as resistance to wind induced vibration, effective prevention of hidden cracks in bracket components, “climb and launch” and “Multi-use in one place”.

2. Steel cable flexible photovoltaic system Improves the comprehensive utilization efficiency of land, with “high headroom, long span, low cost” and other characteristics, compared with the traditional mode of fixed bracket, the PV panel installation capacity of the flexible bracket can be increased by nearly three times.

A. High headroom. Steel cable flexible photovoltaic system has an adjustable height and a maximum clearance of 9 meters, which can realize composite utilization of land and increase economic value. Steel cable flexible photovoltaic system can be used in complex terrains such as tidal flats, fishing ponds, sewage treatment plants, complex mountains, barren slopes and pools. And under the premise that the country vigorously advocates the complementarity of fishery and light, and the complementarity of agriculture and light, the Steel wire rope Flexible solar system has broad application prospects.

B. Large span. The Steel cable flexible photovoltaic system is a prestressed adaptive support system, which is composed of a cable network, a support system, an anchoring system, etc. The module support system is simplified by fixing the photovoltaic modules on steel strands tensioned between two columns. The axial tension of the tensioned steel strands is used to resist the self-weight of the component, snow load and wind load. The Steel cable flexible photovoltaic system can be erected freely in all directions, up, down, left and right, through the four installation methods of hanging, pulling, hanging and bracing, which can effectively increase the space under the board.

The Steel cable flexible photovoltaic system has a more reasonable spatial structure and uses less steel. It is small, lightweight and cost-effective; it has low site foundation requirements and takes up less space; it is highly pre-assembled and can greatly shorten the overall construction period.

C.low cost. Compared with traditional steel structure supports, Steel cable flexible photovoltaic system use less steel, fewer foundations, and lower construction costs. They have strong adaptability to terrain and strong pre-assembly, which greatly shortens the construction period. Compared with multi-layer cable-based flexible brackets, it has fewer connecting accessories, is quick to install, and has obvious cost advantages.

3. “Long purlin single load-bearing cable vertical and vertical joint flexible photovoltaic system”, “Angle truss type purlin multi-row photovoltaic module cable support structure” and “ground anchor stable multi-row photovoltaic module purlin flexible cable support structure” are suitable for land, water and mountain.

Ground photovoltaic power station is a facility that uses solar energy to generate electricity. A large number of solar panels are installed on the ground to form a battery array, which is used to collect solar energy and convert it into electrical energy. Ground photovoltaic power stations usually consist of solar panels, photovoltaic inverters, grid connection equipment and supporting facilities.

WHB&R Other ground photovoltaic systems include:

Fixed photovoltaic systems, adjustable solar systems, Complex Mountain fixed photovoltaic systems, Steel Cable Flexible solar system, intelligent tracking photovoltaic systems, agriculture, Solar with forestry, animal husbandry, and fishery complementary photovoltaic systems, building facade photovoltaic systems, etc.

Ground photovoltaic power stations have the following advantages over other solar power generation methods:

  1. Scale effect: Ground photovoltaic power stations can accommodate more solar panels and utilize more solar resources, so they have higher power generation efficiency and larger power generation capacity.
  2. Easy maintenance: The solar panels of the ground photovoltaic power station are installed on the ground, which is easy to maintain and clean, and facilitates the maintenance and replacement of equipment.
  3. Flexibility: The layout and structure of ground photovoltaic power stations are relatively flexible and can be adjusted and optimized according to terrain and conditions to maximize the use of solar energy resources.
  4. Ground photovoltaic power stations are widely used in industrial areas, rural areas, farmland, deserts and other open areas to provide clean energy for local areas and drive local economic development. At the same time, ground photovoltaic power stations can also be combined with other energy generation methods, such as wind power, to form an integrated energy system and improve energy utilization efficiency.
  5. Ground photovoltaic power stations have high power generation efficiency and stability and can meet large-scale power needs. Compared with distributed photovoltaic power stations, ground photovoltaic power stations have larger installed capacity and can provide more stable power supply to meet the power needs of industry and cities.

The global demand for renewable energy continues to increase, and ground photovoltaic power stations, as a clean energy power generation method, have huge development potential. With the increase in environmental awareness and government support for renewable energy, the market demand for ground-mounted photovoltaic power plants will continue to grow.

Development opportunities and main driving factors of the ground photovoltaic power station industry:

  1. The government’s support for clean energy continues to increase, and it encourages the construction and development of photovoltaic power stations through various policies and measures to provide a good development environment and policy guarantee for the industry.
  2. The global demand for renewable energy continues to grow, especially the pursuit of clean energy. Ground photovoltaic power stations, as an important source of renewable energy, will receive more market demand.
  3. With the advancement of technology and the realization of economies of scale, the construction and operating costs of photovoltaic power stations continue to decrease, making photovoltaic power stations more competitive and attracting more investments and users.
  4. The continuous innovation of photovoltaic power station technology, including the improvement of the efficiency of photovoltaic modules, the improvement of module materials and the intelligence of equipment, has promoted the improvement of the performance and efficiency of ground photovoltaic power stations.
  5. The increasing global emphasis on environmental protection and emission reduction, especially the need to deal with environmental issues such as climate change, has promoted the development of photovoltaic power plants.
  6. Compared with other forms of photovoltaic power stations, ground-based photovoltaic power stations can utilize wider land resources, reduce land use costs, and have greater development space.

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