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Anonymous1763982644
02-07 08:12
Model Name
porsche 911 3d model
Tags
vehicle
rendering
realistic
Prompt
Structure of Porsche 911 for 3D Modeling (Outer Body, Seats, and Wheel Motion Only) 1. Outer Body Structure The Porsche 911 has a smooth and aerodynamic outer body design. The overall shape is low, wide, and curved, with no sharp edges. The front body is slightly narrow, while the rear body is wider and muscular, giving the car a sporty appearance. The front section consists of a sloping hood and integrated bumper. Oval-shaped headlights are mounted on top of the front fenders. The side profile shows a continuous curved roofline, smooth doors, and enlarged rear wheel arches. The rear section is rounded with a sloping back surface and a horizontal tail light strip. The entire outer body is modeled as a single smooth surface to maintain aerodynamic flow. 2. Seat Structure Only the front seats are included in the model. Each seat is designed as a sports bucket seat with: A curved seat base A tall backrest with an integrated headrest Raised side bolsters for support The seats are placed low inside the body and slightly reclined backward. The seat structure is simple and smooth, without internal mechanisms or upholstery details. 3. Wheel Structure and Motion The vehicle consists of four wheels, positioned near the corners of the body. Front wheels are slightly smaller than rear wheels Rear wheels are wider for better grip Each wheel is circular with a central hub Wheel Motion: When the vehicle moves forward, all wheels rotate clockwise When the vehicle moves backward, all wheels rotate anti-clockwise Wheel rotation is synchronized with vehicle direction The wheels are aligned to support straight forward and backward motion only This wheel motion allows realistic simulation of vehicle movement in a 3D environment. 4. Excluded Components The following parts are not included in the model: Engine Dashboard Steering wheel Interior door panels Suspension system 5. Application This simplified structure is suitable for: 3D visualization Motion simulation Academic projects AI and vision-based demonstrations
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