about
Living Organisms is a speculative computational design study that investigates how biological structures can inform new forms of living space. The project takes inspiration from sea sponges, whose porous geometries allow fluid circulation, structural stability, and spatial complexity despite their fragile appearance.
Using Grasshopper, the project translates these natural principles into a parametric architectural system. Instead of designing a fixed building, the process explores how organic geometries can generate adaptable, permeable, and flexible spatial formations.
The research is driven by a simple question: what if humans could inhabit sponge-like structures? Through this idea, the project imagines living environments shaped by lightness, connectivity, and environmental flow. The resulting form suggests a spatial system where circulation, enclosure, and structure merge into one continuous organism.
Living Organisms positions architecture as an extension of natural intelligence. It explores how computational tools can help reinterpret biological systems and transform them into experimental spaces for future habitats.
credits
Buse Yagci



