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Photovoltaic Drum Model Customized Plant, New Energy Drum Model Producer

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Product Details

Photovoltaic station sand table model production

Photovoltaic Sand Table - 1K JPEG.jpg

Project background

The optical-voltaic power system sandpads produced for a new energy demonstration area are required to present solar panels arrays, retrovert clusters, lifting stations and surrounding eco-remediation areas, requiring that they simulate real photoreflection and reduce the overall landscape to no less than 90 per cent.

Feature making process

  1. Photovoltaic Array Production

  • Solar panels are selected using the Aclik mirror panel laser cut, surface vacuum plating to simulate a single-crystal silicon reflection

  • Aluminium alloy-type convulsions in the frame system and 5°-35° inclinations at the joints with a magnetic suction structure

  • Part of the base pillar was buried in epoxy resin mixed with real gravel, recreated on the site

  1. Electrical equipment performance

  • The reverser shell is sprayed with hammer paints after the ABS plate is assembled, and the dispersive vents use laser piercing techniques

  • The box transforms surfaces with corrosive fluids to make the condensed placards, transformer oil pillows into transparent yellow glue simulated insulation oil.

  • Cable ditches use soft silicone to remix real cables, with surfaces covered with tin foil for metal shielding.

  1. Ecological construction

  • A three-tiered structure is used for vegetation below the PV: bottom moss powder, mid-level shrub chips, top layer imitation of grass

  • Windproof forests are made of dyed algae fibres, and trunks are painted with acrylic cracks to show the skin of the tree.

  • Patrol roads are mixed with pyroclastic emulsions, with natural erosion at the edges.

Material innovation applications

Specialized processing of solar panel optic-grade Accumulation Magnetic Spattered membrane caps, 6061 Aluminium Alloying oxidated oxidated arctic high-density polyurethane co.C. carvings in conjunction with the biomagnetic cotton + mineral pigmentation technique

Surface treatment process

Photometric Control

  • Photovoltaic arrays partition membrane at a real solar angle, and edge plates are slightly polished

  • The metal fence at the lifting station is chemically passivated, then rubbed with graphite.

  • Spraying of various levels of duds on the ground, simulated reflection differences after rain

Environmental integration

  • Random distribution of electrostatic velvet technology for weeds

  • Cable connection point oxidized.

  • Accumulation of real weather rubble around the base of equipment