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Anonymous1762860208
11-12 10:49
Model Name
industrial filtration system 3d model
Tags
machine
rendering
realistic
Prompt
🎯 Prompt for 3D AI Create / Industrial Exhaust Filtration System Title: Industrial Negative-Pressure Air Filtration Unit – Power Plant Exhaust Cleaner Description: Create a hyper-realistic, engineering-grade 3D model of a large industrial air purification system used for power plant exhaust filtration. The unit operates on negative pressure suction, pulling hot combustion gases through multiple filtration and cooling stages. The design must look functional, heavy-duty, and slightly futuristic, suitable for a modern power plant environment. ⚙️ General Structure Overall Dimensions: Length 6.0 meters, Width 2.5 meters, Height 3.5 meters. Construction: Modular, metallic body made of brushed stainless steel and heat-resistant alloys, with visible welds, bolts, and access panels. Base Frame: Reinforced steel structure with crossbeams and vibration isolators beneath the unit. Finish: Industrial brushed steel with subtle surface roughness, edges slightly rounded (~6 mm radius). 🔧 Visible External Features Intake Chamber: Large circular inlet pipe (Ø1200 mm) at the front, connected to a rectangular manifold. Made of heat-resistant steel (Inconel/SS310) with temperature-resistant bolts and inspection hatch. Add heat shimmer or mild red tint glow for realism (hot gas entry). Cooling Section (Heat Exchanger): Cluster of finned metal tubes (approx. 25 mm dia, 2 mm fins at 2.1 mm spacing). Tubes housed inside a rectangular compartment with service ports. Internal fan ducts or coolant lines visible through small transparent inspection glass panels. Cyclone Separator: Cylindrical vertical chamber (Ø1200 mm, height 2.7 m) with tangential inlet. Conical dust hopper below with DN150 outlet and rotary airlock valve. Include external dust discharge pipe or chute. Add gauges and pressure indicator dial mounted on the side. Mechanical Filter Section: Rectangular metal housing containing multiple filter frames and cartridges. Inside: Coarse mesh filters (5 mm openings). Fine mesh filters (1 mm openings). Pleated cylindrical cartridges (Ø150 mm × 900 mm). Include hinged service door with locking handles, small warning stickers, and view window. Chemical Absorption Chamber: Layered bed filled with activated carbon and calcium carbonate granules (0.2–0.4 cm). Transparent or cutaway section showing internal media layers. Add inspection hatches (300 × 300 mm) and access door (600 × 400 mm). Marked label: “Chemical Scrubber Section” with hazard symbol. HEPA Filter Section: Housing with 6 pleated HEPA panels (610×610×292 mm) arranged 2×3. Visible gasket frame and metal clamps. Optional transparent cutaway to reveal inner pleats. Centrifugal Fan / Blower: Mounted at the rear, Ø1200 mm impeller with motor (55–75 kW). Include motor casing, belt coupling, bearing housing, and flexible vibration connectors on ducts. Visible power cables and sensor wiring. Motor label: “Industrial Air Suction Fan – 55 kW VFD Controlled”. Exhaust Stack: Vertical steel pipe (Ø600 mm, height +2 m above unit). Add emission sensors (CO₂, SO₂, NOₓ probes) with glowing green/red indicator LEDs. Small analyzer box connected via heat-resistant tubing. Control Panel: Mounted on one side near fan section. Compact box (600×800×300 mm) with digital touchscreen (HMI), colored status LEDs, emergency stop button, and cable conduits running to sensors. Include small industrial label plates (“SYSTEM STATUS”, “FILTER ΔP”, etc.). Cables, Pipes, and Sensors: Surface-mounted electrical conduits, temperature probes, and pressure gauges at each stage. Use realistic wiring with cable trays and brackets. Add small warning labels (TEMP, PRESSURE, CAUTION). 🧱 Internal Components (Visible via Cutaway or Transparent Sections) Flow Direction: Front-to-back, through all filtration stages. Include internal duct channels, guide vanes, and smooth transitions between sections. Add arrows or subtle smoke trail showing flow movement for realism (optional in render). Cutaway surfaces: Semi-transparent or sliced to show internals (heat exchanger tubes, filter media, HEPA pleats). 🏭 Environment / Scene Setup Industrial power plant setting. Place the unit on metallic flooring (checker plate texture) with bolted anchors. Background: turbine hall or pipe networks, dim industrial lighting with faint heat haze or smoke. Include mild environmental fog for realism. 🧩 Materials Component Material Finish Outer shell Brushed stainless steel (SS316L) Slight metallic reflection Hot zones Inconel 625 / SS310 Dull gray heat patina Pipes & ducts Matte gray steel Weld seams visible Filters Aluminum frames, fiber pleats Slight texture Granules Activated carbon (black), CaCO₃ (off-white) Matte Glass ports Tempered transparent glass Light refraction Sensor lights LED glow (green/red/blue) Subtle emissive Fan motor Painted industrial blue Scratched edges 💡 Lighting & Rendering HDRI industrial lighting — slightly overcast with realistic reflections. Soft directional light to emphasize metallic texture. Add mild smoke volumetrics or heat shimmer near the intake. Render at isometric 3/4 front-left angle, showing front, side, and partial internals. Shadow intensity: medium. Reflections: mild. 📐 Scale & Precision All components modeled to real-world scale (millimeter-accurate). Filters, bolts, and tubing must match proportions: Mesh openings = 0.5 cm and 0.1 cm Filter pleats = 1.2 cm pitch Granules = 0.3 cm average Use sub-mm precision (0.4–0.5 mm tolerance) for internal fit and alignment. Ensure physically correct thicknesses: Main shell: 6 mm Filter housings: 4 mm Inspection glass: 10 mm Base frame beams: 200 × 100 × 8 mm 🎨 Render Style Photorealistic PBR textures. Engineering showcase style: clean lighting, accurate reflections, subtle dirt and heat wear. Include floating text labels or callouts (optional): “Heat Exchanger”, “Cyclone Separator”, “HEPA Section”, “Fan Unit”. 🧠 Prompt tags (for AI renderers): realistic industrial equipment, stainless steel, power plant filter, negative pressure system, HEPA filtration, chemical scrubber, air purification, metallic structure, isometric 3D, engineering visualization, industrial HDRI, cutaway view, detailed internal components, piping and gauges, heat exchanger, blower fan, activated carbon filter, futuristic factory aesthetic, precision model, high realism.
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