An audio-reactive 3D motion study powered by meta-simulation pipelines that map complex particle and fluid behavior to sound architecture. Utilizing custom FFT frequency splitting, incoming audio drives the procedural parameters of a multi-layer meta-simulation, generating concentric wave propagation and fluid-to-particle state changes in real time.
The composition features two contrasting visco-elastic materials—a metallic platinum substrate and a high-gloss electric blue fluid—that merge and intertwine under symmetrical vortex forces. Surface tension, caustics, and meta-fluid viscosity dynamically react to transient acoustic peaks, transforming sound frequencies into a physical, evolving visual state designed for high-resolution digital projection.