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DCC Bridge
Anonymous1769546415
01-27 21:03
Model Name
3d architectural house model
Tags
architectural house
architecture
architecture realistic
architecture rendering
architecture rendering realistic
realistic
rendering
rendering realistic
single family house
Prompt
Create a highly detailed 3D architectural model of a disaster-resilient, sustainable single-family home, designed using principles of material science, physics, and chemistry. The model must represent a real, livable house and function as an engineering and science visualization, not artistic concept art. Geometry and structure requirements (critical) • Use precise, rigid 3D geometry with straight edges, flat planes, and accurate proportions • Avoid warped, melted, organic, wobbly, or hand-drawn surfaces • All components must appear structurally solid, orthogonal, and CAD-like • Clean intersections between walls, roof, foundation, and systems • Realistic thickness for walls, roofs, beams, panels, and pipes Required architectural elements (must be visible and labeled) • Fire-resistant front entry door with rigid frame • Impact-resistant windows with straight frames and laminated glazing • Clearly defined roof, exterior walls, foundation slab, and interior volumes • Interior living area, utility/mechanical room, and storage space • Exterior access paths and entry points consistent with real residential construction Required engineered systems (each must be clearly labeled with callouts, arrows, and diagrams) Wildfire-resistant design Label fiber-cement or concrete walls, standing-seam metal roof, sealed vents with metal mesh, fire-resistant glazing, and minimal roof overhangs. Indicate properties such as high melting point, low flammability, and thermal resistance. High-wind resistance (tornado / hurricane) Label aerodynamic roof geometry, hurricane straps, reinforced wall-to-foundation anchoring, impact-resistant windows, and continuous load paths. Use arrows to show wind forces transferring into the foundation. Rainwater harvesting system Label roof gutters, downspouts, first-flush diverter, filtration unit, storage tank, valves, and outlet. Use arrows to show rainwater flow direction. Materials must appear corrosion-resistant and rigid. Solar energy system for power outages Label roof-mounted solar panels, inverter, battery storage unit, electrical panel, and wiring paths. Panels must appear as flat crystalline silicon modules, aligned and evenly spaced. Cutaway / exploded view (rigid, technical) Include a precise cutaway or exploded-section view showing: • Roof layers (metal roofing, insulation, structural decking) • Wall layers (exterior shell, insulation, interior finish) • Foundation anchoring and reinforcement • Water storage and filtration components • Electrical wiring, inverter, and battery system All layers must be planar, aligned, and clearly separated, not distorted. Scientific clarity and labeling style • Use clean text labels, straight leader lines, and arrows • Labels must explain what the component is and why it works • Emphasize material properties: strength, thermal resistance, water resistance, electrical conductivity • No floating or curved text; labels should be readable and anchored Style requirements • Realistic, educational, engineering-focused • Neutral colors (grays, whites, metallics) • Clean background with studio lighting • Not cartoonish, stylized, abstract, or futuristic • Designed for a school science presentation
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