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Anonymous1764123580
11-26 02:24
Model Name
quadrotor drone 3d model
Tags
vehicle
rendering
realistic
Prompt
Generate a complete low-poly technical 3D model of a DJI Agras T30 agricultural drone, shown on ground position with all arms fully extended. The model must preserve the exact structural proportions, geometric silhouette and main architecture of the original DJI Agras T30, but expressed as a simplified low-poly engineering mesh (no micro-details, no small components, no surface noise). Only include the main chassis, central frame, arm structures, motor pods and landing gear. Exclude tanks, pipes, spraying systems, sensors or internal components. Maintain a clean technical appearance. Replace all original propellers with toroidal propellers (closed-ring toroidal fans). Each propeller must consist of a continuous aerodynamic ring with internal twisted blades following a toroidal, low-noise, high-efficiency configuration. Maintain the original hub diameter and motor orientation but integrate the toroidal ring seamlessly around the propeller axis. Emphasize the toroidal geometry with low-poly faceting while preserving its functional aerodynamic design. All visible drone components — frame, arms, motor housings and toroidal propellers — must visually use aeronautical-grade fiberglass composite, represented with a matte, homogeneous surface finish, no visible texture patterns, and clean low-poly shading. Avoid gloss, reflections or high-frequency detail. Display the model in a neutral ground pose with landing gear touching the floor and symmetrical arm extension. Keep technical scale accuracy between body, arm lengths, motor sizes and toroidal propeller diameters relative to the real DJI Agras T30. Use neutral and uniform lighting focused on revealing form and geometry. No background objects, no dramatic shadows, no environmental elements. The final result must resemble a simplified engineering CAD visualization intended for academic and research analysis.
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