


Modern parametric bamboo woven pavilion canopy structure SketchUp 3D model, designed with flowing, wave-like roof supported by intricate lattice columns. The design integrates natural materials and open spaces to create a harmonious connection between the built environment and the surrounding landscape.
This detailed outdoor landscape architectural 3D model features a modern parametric biophilic pavilion shelter defined by a sweeping, undulating woven bamboo grid-shell canopy and branching tree-like structural columns. Designed for public park masterplans, eco-resort plazas, botanical garden gathering spaces, civic event shelters, and photorealistic ArchViz presentations, the scene pairs organic structural engineering with natural material textures for environmental rendering.
Included Architectural Components & Specifications
- Parametric Woven Grid-Shell Roof: Double-curved undulating roof structure featuring a textured dark shingle/thatch top membrane supported beneath by an intricate woven bamboo basket-weave lattice grid
- Branching Tree-Like Column Supports: Multi-stemmed natural bamboo/timber structural columns that branch outward into fan-shaped capitals, transferring roof loads with biophilic elegance
- Paved Plaza Base & Park Benches: Rectangular stone-paved ground plaza base equipped with integrated low-profile timber bench seating positioned along the perimeter interior
- Landscape Planting & Surrounding Environment: Surrounding green turf grass lawn, linear ornamental grass beds with pink/purple plumes, background broadleaf canopy shade trees, and a paved pedestrian access walkway
Rendering & Workflow Compatibility
The model contains 253,031 polygons, offering exceptional geometric accuracy for the woven lattice members, fluid roof curvature, and organic column joins while maintaining smooth real-time viewport performance for site-scale masterplan navigation. Saved in SketchUp 8 (SU8) format, it delivers complete backward compatibility across legacy and contemporary SketchUp architectural production pipelines.
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