Aurora Tower — Bogat Design Studio
Aurora Tower · Bogat Design Studio
Bogat Design Studio — Concept Design — 2025
26.1224° N — 80.1373° W
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High Rise · Concept Design
AURORA TOWER
Concept Design · 2025
Type
High Rise
Status
Concept Design
Year
2025
Program
Luxury Residential + Mixed-Use
Skin
Parametric Exoskeleton

Aurora Tower stands as a beacon of kinetic energy — a sculptural synthesis of biological fluidities and high-luxury living. Named for the dawn, the tower is designed to catch the first and last light of the day, turning its facade into a shifting canvas of amber and gold.

The form twists gently as it ascends, creating a “living” silhouette that turns its face continuously toward the sun and skyline. It challenges the rigidity of traditional skyscrapers, offering instead a fluid, organic presence that feels grown from the earth rather than built from static parts.

The tower’s signature is its fluid golden lattice — a structural bronze-alloy skin inspired by the microscopic strength of marine Radiolaria. This perforated veil wraps the glazed volumes in a protective embrace, acting as a “breathable skin.” The lattice density is data-driven: tighter on the south to block solar heat, open on the north to invite natural light.

“Named for the dawn — designed to catch the first and last light of day.”
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Parametric Exoskeleton
Fluid golden lattice in structural bronze-alloy, inspired by marine Radiolaria. A functional jewelry-like texture that creates privacy while framing panoramic views.
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Bioclimatic “Lungs”
Double-helix geometry around a central open-air canyon. Acts as a thermal chimney using the stack effect — pulling cool air from the shaded plaza and exhausting heat at the crown.
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Ground-Plane Fusion
The lattice unravels at the base, flaring out into fluid canopies and pavilions — a shaded, human-scale urban forest where the boundary between tower and street dissolves.
Project Render — Coming Soon
Exterior perspective — Aurora Tower, Concept Design 2025
Materiality
Bronze-alloy parametric lattice — structural and ornamental skin
Full-height curtain glazing with solar-control coating
Reinforced concrete core with post-tensioned structure
Integrated vertical green systems at sky-terrace levels
High-reflectance crown panels for light play at dusk and dawn
Design Process
01
Research
Biomimetic studies of marine Radiolaria skeletal geometry as structural and formal inspiration for the exoskeleton.
02
Concept
Double-helix form generation. Lattice density mapped to solar exposure data for passive climate control and visual privacy.
03
Development
Parametric refinement of the exoskeleton. Ground-plane activation — lattice dissolves into public canopy at street level.
04
Visualization
Conceptual completion — a prototype for bioclimatic luxury living and parametric urbanism in South Florida.