
WAJER 44 YACHT
Client: TEUN
Computational Design by: KRISTAL.
Location: Netherlands
Program: Foam core
Size: 50sqm, replicable
Year: 2024 - ...




The Wajer 44 development highlights how pure computational logic can be used to streamline production, turning complex marine engineering into a clean, automated manufacturing process. By automating the core kitting layout, the platform eliminated hundreds of manual drafting hours and slashed reliance on expensive, specialized labor. Crucially, the script bypassed human error by maintaining perfect geometric tolerances across complex curvatures, neutralizing the risk of costly workshop imprecisions and ensuring a flawless physical fit-up every time.
The project translates complex hydrodynamic hull shapes into a highly optimized, production-ready foam core kit. The workflow bridges the gap between fluid, freeform yacht design and the strict, data-driven logic required for physical naval fabrication.
The system integrates automated manufacturing parameters directly into the early design phases. By developing a custom algorithmic engine for structural detailing, the script reads arbitrary hull surfaces and instantly generates the internal foam core layout, completely eliminating manual drafting and layout overheads.
The structural core is treated as an algorithmically generated puzzle of hundreds of unique geometric blocks. The computational pipeline handles complex 3D curvature constraints and automatically outputs nested, factory-ready CNC datasets, managing all downstream kitting geometry and fabrication data natively within the script.


