Light, Matter, Form - Computational Design of Functional Geometry
In this talk, I will outline a general computational approach for material-aware design of complex 3D models. The key step is to identify suitable geometric abstractions of physical properties that enable effective computations with high predictive accuracy. I will show several examples of this approach for interactive design with inextensible and auxetic materials, and for performative optimization of light re-directing surfaces. These studies illustrate how to leverage geometric insights, mathematical theory, and advanced algorithms to build effective computational tools for material-aware design of performative geometry.