3D Workspace
Home
Assets
Affiliate Program
Sign up/Log in
?
Upgrade
DCC Bridge
3D Creation Made Simple
Text & Image to 3D Model in seconds
One-Click Texturing & Smart Detail Editing
Free Credits Monthly
Start Free
Anonymous1772153072
03-05 23:32
Model Name
portable evaporative cooling 3d model
Tags
machine
rendering
realistic
Prompt
Ultra realistic 3D engineering cross-section of a portable passive evaporative cooling system for beverages, science fair level prototype, highly detailed. Show the complete multilayer system with ALL components visible in cutaway engineering view. Center: - A standard 500ml PET beverage bottle filled with cold water, placed vertically. - Bottle must NOT be attached to any structure, only positioned inside. Layer structure from inside to outside: 1. Inner air insulation layer: - Visible 1–2 cm empty air gap surrounding the bottle. - Show soft transparent air volume. 2. Evaporative cooling layer: - Wet cotton flannel fabric tightly surrounding the air gap. - Fabric must look moist with visible water droplets. - Add hydrated superabsorbent polymer gel distributed inside the fabric fibers. - Gel texture must look translucent and shiny, slightly swollen with water. 3. Structural support cylinder: - Recycled cardboard or plastic tube cylinder surrounding the fabric. - Cylinder must look like a handmade science prototype structure. 4. Thermal reflection layer: - Smooth aluminum foil partially covering the outside. - Aluminum must be reflective and wrinkled slightly for realism. - Do NOT fully seal the system; leave ventilation zones. 5. Ventilation system: - Small circular holes at top and bottom of cylinder. - Airflow must be subtly indicated using light transparent vapor motion. 6. Exterior protection layer: - Optional recycled fabric cover (denim or cloth texture). - Looks like protective sleeve design. Base: - Stable flat base made of cardboard or recycled plastic. Physics effects to visualize: - Very subtle water vapor evaporation mist around the fabric. - Light airflow movement. - Thermal cooling representation without text or arrows. Materials textures: - Realistic PET plastic transparency - Wet fabric texture - Shiny metallic aluminum - Semi-transparent hydrated gel Lighting and style: - Ultra realistic scientific laboratory lighting. - White clean background. - Academic engineering prototype presentation. - No text. - No labels. - No symbols.
Detailed Info
Related Models
Enter invite code
Enter invite code to get credits!