DESCRIPTION

This highly detailed and realistic 3D model of a futsal court is designed with accuracy and real-world proportions in mind. Ideal for architectural visualization, sports simulations, gaming environments, animations, and VR/AR projects, this model replicates the layout and measurements of a standard futsal court as used in professional and recreational settings.

Features:

Accurate real-world scale based on official futsal court dimensionsRealistic textures and materials for a natural and immersive appearanceClean topology for optimized performance in rendering and real-time applicationsSuitable for close-up renders and flythrough animationsOrganized file structure and naming conventions for easy workflow integration

Technical Details:

Modeled to real-world scale: 40m x 20m (standard futsal dimensions)Polygon Count: [419886]File Formats Included: [list formats – e.g., .FBX, .OBJ, .BLEND, STL]Textures Included: Yes ([ 4K])UV Mapping: Non-overlapping, fully unwrappedPBR Ready: Yes (Physically Based Rendering materials included)

Use Cases:

Game design and developmentVR and AR experiencesArchitectural and sports venue visualizationEducational or training simulationsMarketing and promotional content for sports facilities

Notes:

No third-party plugins requiredCompatible with major 3D software and game engines

Enhance your project with a professional, game-ready futsal court built to deliver realism and precision. Ready for immediate use in your pipeline.

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Realistic Futsal Court 3D Model True to Life Dimensions 3D model Low-poly 3D model

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Native file format
BLEND
Size: 15.3 MB
Renderer: Cycles | 4.3.1 | 4.3.1
Exchange formats
OBJ
OBJ<br />Version: Wavefront OBJ<br />File Size: 6.71 MB
FBX
Autodesk FBX<br />Version: FBX 7.4<br />File Size: 43.6 MB
STL
Stereolithography<br />Version: STL Binary<br />File Size: 12.9 MB
PNG
PNG<br />File Size: 39.4 MB
Provided by designer
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3D Features
Animated
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Rigged
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Low-poly
PBR
Uses Physically Based Rendering materials, which give the model realistic lighting and surface properties.
Textures
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Materials
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UV Mapping
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419886 polygons
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/ 419856 vertices
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Unwrapped UVs
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