VortexPulse turns your screen into a living current — swirl vortices with a touch, route liquid through hydro puzzles, and grow Turing patterns from pure math. No labs, no equations required, just flow.
↳ Drag your cursor or finger across the canvas above — you're already stirring a vortex.
Every tool in VortexPulse is built on real fluid-mechanics concepts, wrapped in a dark glassmorphic interface designed to feel like an instrument, not a toy.
Tap and drag to spawn colorful liquid streams, spin up turbulent vortices, drop flow obstacles, and adjust viscosity live to watch the current reshape itself instantly.
Guide liquid through winding channels into target reservoirs using directional splitters and flow deflectors — part physics, part logic puzzle.
Simulate the Gray-Scott model to grow organic Turing patterns — coral-like structures and natural textures emerging from two simple chemical rules.
Calculate Reynolds numbers, compare laminar versus turbulent regimes, and watch live velocity-profile charts respond to your inputs in real time.
Fully offline, no network access, no device permissions, no battery drain, no paywalls — every simulation runs entirely on your device.
A calm, focused visual language built for long sessions of tinkering — translucent panels, soft glows, and controls that stay out of the way of the flow.
🌊 We're a small team of simulation nerds and interface designers obsessed with one question: what if fluid dynamics felt as intuitive as finger-painting? VortexPulse is our answer — an interactive 2D fluid sandbox where vortices, viscosity, and diffusion respond to your touch in real time.
💧 Our mission is to make computational fluid dynamics approachable without dumbing it down. Behind every swirl and splitter is a genuine physics model — Reynolds numbers, laminar and turbulent regimes, the Gray-Scott reaction-diffusion equations — quietly running so you can explore rather than study.
🌀 What you get is a pocket laboratory: a fluid canvas for free-form play, hydro puzzles that reward spatial thinking, a pattern generator that grows coral-like textures from chemistry, and a lab view with live charts. All of it works fully offline, with zero permissions and zero paywalls standing between you and the flow.
🔬 It's valuable because it turns abstract equations into something you can feel — drag a vortex, watch turbulence bloom, and suddenly Reynolds numbers make sense. No lecture required, just a canvas and your curiosity.
"Stir the math. Watch it flow." — VortexPulse
VortexPulse: Fluid Physics was built as a fully offline simulation sandbox. This policy explains, in plain terms, why we have effectively nothing to disclose — because we do not collect anything in the first place.
Whether it's feedback on a puzzle level, a bug report from the lab view, or a partnership idea, our inbox is genuinely open. Reach out anytime.
⏱️ We typically respond within 24–48 hours.