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About
Build a wind farm, a solar farm or one site carrying both. The wind side is a 40 m utility turbine with a 24 m rotor and a farm scale machine at about half the tower, both with the hub and all three blades on one node pivoted at the hub centre on the nacelle axis, so the blades sweep a vertical circle in front of the tower. Around them are the pieces a turbine arrives and goes up in: the octagonal foundation with its anchor ring, the first tower can with its doorway, a swinging access door panel, the nacelle and hub on transport cradles, a 12 m blade on its cradles, a low loader trailer whose wheels roll, a 21 m lattice met mast with a turning anemometer and a small vertical axis machine for a yard. The solar side starts with one ground mounted module on its own frame, ported left and right so a row is as long as the site allows, and adds a four module tracker row that tilts as one node, a ballasted roof pair, a helical ground screw, an inverter cabinet and a combiner box whose doors open, a ported DC cable tray straight and corner, a cleaning brush and a pallet of spares. The grid and the site are the substation transformer with its radiators and bushings, a three cubicle switchgear run, a walk in control cabin, a battery storage container, wood poles carrying the collection line, 4 m mesh fence panels and a gate that swings, warning signs, 8 m ground tiles in grass and gravel, straight and curved access track tiles on the same module, a site office, a service van, cable drums, tool crates, a weather station, floodlights and bird deterrent posts. Rigid node transform clips only, no skinning. Blade pitch and nacelle yaw do not move, because both are slow bearings inside the machine and a second channel would fight the rotor for the catalogue pose; the power line conductors are straight, taut and static, since a rigid node transform cannot hang a catenary; the fence mesh, the wound cable on the drum and the wind vanes are modelled solid for the same reason. Original AI assisted CC0 geometry; no manufacturer, operator or utility marks appear anywhere.
Files load directly from the CDN. Choose the pieces you need. Colliders, navigation and gameplay scripts are supplied by your game.
Use with an AI agent
Copy this prompt into your AI chat, then describe what you want to build with the pack.
Use the “Wind and Solar Energy Farm” pack in my project. Manifest (JSON, every model with its CDN URL): https://3dassets.dev/api/v1/packs/wind-and-solar-energy-farm Starter scene (one GLB with every piece placed): https://cdn.3dassets.dev/assets/34086/v1/model.glb Pack page: https://3dassets.dev/packs/wind-and-solar-energy-farm Description: A renewable energy site in a kit: three blade turbines whose rotors turn on the nacelle axis, a solar module ported so an array is built by repeating it, trackers, inverters and tray, and the substation, battery container and fenced compound that export the power. - 40 GLB models, 1.8 MB in total - Units: metres, +Y up, shared scale and palette across the pack - Licence: CC0 1.0 Universal (no attribution required) - Loading: three.js GLTFLoader; no additional decoders required. Load models individually from the manifest, or the starter scene as one file.
Also available as a JSON manifest or via the MCP server.
Common questions
How do I use Wind and Solar Energy Farm with my AI development tools?
How do I get started?
Which game engines and tools can I use Wind and Solar Energy Farm with?
How do I import this pack into Unity, Godot, Unreal or Blender?
Can I use Wind and Solar Energy Farm in a commercial game, and do I need to credit anyone?
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Do I have to download the whole pack?
Do the models in Wind and Solar Energy Farm fit together?
Game kit
Wind and Solar Energy Farm
A renewable energy site in a kit: three blade turbines whose rotors turn on the nacelle axis, a solar module ported so an array is built by repeating it, trackers, inverters and tray, and the substation, battery container and fenced compound that export the power.
One GLB with every piece placed in a starter scene. Each model is also below on its own.
View demoEverything in this pack
Wind Turbine Tower (Wind and Solar Energy Farm)
A three blade utility wind turbine: a 28 m tapered white tower on a base collar, a nacelle with its yaw ring and cooling face, and a 24 m rotor that turns about the nacelle axis.
Farm Scale Wind Turbine (Wind and Solar Energy Farm)
A farm scale three blade turbine, 12.5 m to the hub with an 11 m rotor: the machine a single farm, depot or island grid runs, at about half the tower of the utility model.
Turbine Nacelle and Hub (Wind and Solar Energy Farm)
The nacelle and hub of a utility turbine sat on its yellow transport cradles at ground level, with three blade root cans on the hub and the rotor still free to turn.
Turbine Foundation Pad (Wind and Solar Energy Farm)
The reinforced concrete foundation a turbine stands on: a 9.2 m octagonal pad stepped up to a plinth, with the charcoal anchor ring and its sixteen bolts left exposed for the tower flange.
Turbine Tower Base Section (Wind and Solar Energy Farm)
The bottom 4.4 m can of a turbine tower: a white tapered section on its charcoal flange, with the access doorway, an internal ladder strip and the bolted top flange left open for the next section.
Turbine Access Door Panel (Wind and Solar Energy Farm)
The access door panel from a turbine tower base: a white wall section with a steel canopy, warning plates and a grey steel leaf that swings open on its own hinge node.
Vertical Axis Wind Turbine (Wind and Solar Energy Farm)
A 5 m vertical axis wind turbine on a cast base: three straight white aerofoil blades held off a steel spindle by struts, turning about the mast. The machine for a yard or a roof where a rotor cannot go.
Met Mast With Instruments (Wind and Solar Energy Farm)
A 21 m triangular lattice met mast: braced legs on three pad feet, instrument booms carrying a wind vane, a radiation shield and a logger cabinet, and a cup anemometer that turns at the top.
Turbine Blade On Cradle (Wind and Solar Energy Farm)
A 12 m turbine blade lying on its two yellow transport cradles, root can forward and red tip marker aft: the load a blade arrives on site as.
Turbine Transport Trailer (Wind and Solar Energy Farm)
A low loader trailer section for turbine parts: an 11 m deck on a gooseneck with a kingpin plate, two wheeled axles that roll, yellow stanchions and a red rear marker board.
Solar Panel Module (Wind and Solar Energy Farm)
One ground mounted photovoltaic module on its own steel frame, tilted 28 degrees on four feet, with the junction box behind it. Ported left and right so any number repeat into an array row.
Solar Tracker Row (Wind and Solar Energy Farm)
A single axis tracker row: four modules clamped to a 9.4 m torque tube on three piers, with the drive cabinet at the end. The whole row tilts about the tube as one node.
Roof Mount Panel Pair (Wind and Solar Energy Farm)
A pair of roof mounted modules on a ballasted rail frame: two panels at a shallow 12 degree tilt on concrete ballast blocks, for a cabin, office or barn roof.
Ground Screw Pile Footing (Wind and Solar Energy Farm)
A helical ground screw footing for a solar frame: a 0.9 m steel shaft with three helix flights and a bolted head plate, the foundation a ground mount array is driven into.
Solar Inverter Cabinet (Wind and Solar Energy Farm)
A string inverter cabinet: a 2.1 m grey enclosure on a plinth with a rain hood, cooling louvres, a hazard plate and two front doors that swing open on their own hinges.
String Combiner Box (Wind and Solar Energy Farm)
A DC string combiner box on two posts: a 1 m grey enclosure with a drip hood, four cable glands underneath and a front door that opens on its own hinge.
Dc Cable Tray Straight (Wind and Solar Energy Farm)
A 2 m run of DC cable tray on stub posts: a galvanised ladder tray with its rungs, carrying a bundled cable loom, ported at both ends so runs chain across a site.
Dc Cable Tray Corner (Wind and Solar Energy Farm)
A right angle corner in the DC cable tray, turning a run from the row into the inverter: the same ladder section and deck height as the straight, ported on both legs.
Panel Cleaning Brush (Wind and Solar Energy Farm)
A telescopic panel cleaning brush in its floor stand: a 3 m steel pole with a yellow grip and a soft 0.6 m brush head, the tool a solar site is swept with.
Spare Panel Pallet Stack (Wind and Solar Energy Farm)
A pallet of six spare modules strapped flat for delivery, with the yellow banding across the stack and a paperwork wallet on top.
Site Ground Tile (Wind and Solar Energy Farm)
An 8 m square of rough site grass with tussocks and loose stones, ported on all four edges so any number tile into the field a wind or solar farm stands on.
Gravel Ground Tile (Wind and Solar Energy Farm)
The same 8 m module finished as compacted gravel hardstanding, for the compound, the crane pad and the working areas around the plant.
Access Track Straight (Wind and Solar Energy Farm)
An 8 m tile of compacted gravel access track on grass, wide enough for the delivery vehicles, ported on all four edges so it drops straight into the ground tile grid.
Access Track Curve (Wind and Solar Energy Farm)
The quarter turn in the access track, sweeping from the north edge of the tile to the east edge on the same running width, so a haul route can bend round a turbine base.
Site Fence Panel (Wind and Solar Energy Farm)
A 4 m welded mesh security fence panel on its post: galvanised mesh between top and bottom rails with a barbed top rail, ported left and right so a run closes round a compound.
Site Fence Gate (Wind and Solar Energy Farm)
The vehicle gate in the perimeter fence: a 3.8 m braced mesh leaf with a warning plate, hung on the same 4 m module as the fence panels and swinging open on its hinge post.
Warning Sign Set (Wind and Solar Energy Farm)
The sign set at the gate of an energy site on two posts: a yellow hazard board, a red diamond prohibition plate and a white site notice, all blank of any real operator marks.
Substation Transformer (Wind and Solar Energy Farm)
The site substation transformer: a 3.2 m oil filled tank on its bunded plinth with radiator banks, a conservator drum, three high voltage bushings, two low voltage bushings and a hazard plate.
Switchgear Cabinet Run (Wind and Solar Energy Farm)
A run of three medium voltage switchgear cubicles on a shared plinth, each with its mimic panel, a rain hood over the lot and three front doors that swing open.
Control Cabin Unit (Wind and Solar Energy Farm)
The site control cabin: a 4 m walk in kiosk with a yellow eaves band, a ventilation grille, a fire point plate, a step at the door and a single leaf that swings open.
Battery Storage Container (Wind and Solar Energy Farm)
A 6 m battery energy storage container: a corrugated white unit with a side mounted cooling pack, fire and hazard plates and two end doors on their own hinges.
Wood Pole Power Line (Wind and Solar Energy Farm)
A 9 m creosoted wood pole carrying two crossarms of insulators, a pole mounted box and a hazard plate, with six straight conductors running through on the site collection line.
Site Office Portacabin (Wind and Solar Energy Farm)
A 6.4 m site office portacabin: a white unit with a yellow waistband, three glazed windows, a step up to the door and a fire point plate, for the people who run the farm.
Site Service Van (Wind and Solar Energy Farm)
A white service van for the site team: a 5.2 m panel van with a glazed cab, a roof beacon, a livery panel left blank and four road wheels that roll.
Cable Drum (Wind and Solar Energy Farm)
A 1.7 m cable drum on its chocks, wound with charcoal power cable between grey flanges, with a blank rating plate on the side. The drum turns on its own axle.
Tool Crate (Wind and Solar Energy Farm)
A 1.2 m site tool crate in safety yellow with charcoal corner bands and a hasp, its lid hinged along the back edge so it lifts open.
Weather Station (Wind and Solar Energy Farm)
A tripod weather station 3.3 m high: a logger box, a small solar panel, a rain gauge, a wind vane and a cup anemometer that turns at the top of the mast.
Site Floodlight (Wind and Solar Energy Farm)
A 6.6 m site floodlight column on a ballast base: three angled LED heads on a cross arm with a control box at working height, for the compound and the crane pad.
Bird Deterrent Post (Wind and Solar Energy Farm)
A 2.7 m bird deterrent post: a steel spike with four reflective red and white vanes and a marker ball, set along the array rows and the track edges.
Ridge Wind and Solar Site (Wind and Solar Energy Farm)
A working renewable energy site laid on its own ground: three utility turbines spaced across the ridge at the back with a farm scale machine on the shoulder, a met mast reading the wind, and a gravel access track running below them and turning south into the site. A fourth...









