Navier Stokes Explained
29 Sept 2026launched 2 days ago
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n/aApple doesn’t publish installs
WorldwideSold in 50+ App Store storefronts
1.0.0latest version · yesterday
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The Navier-Stokes equations describe how every liquid and gas moves. They are usually met as a wall of symbols. Here they are a tank of water you can hold. A real three-dimensional fluid solver runs on your iPhone's GPU. Drop a column of water, stir a tank, push a flow past a sphere, or turn on Tilt and let gravity follow your phone. Then look inside: color the water by speed, pressure or rotation, tap anywhere to measure it, and open the live values to see each term of the equation as an arrow at that point. In still water the pressure arrow and the gravity arrow cancel, which is what the equation says they must do. FOUR GUIDED LESSONS Predict, watch, compare, explain. • Why does a swirl fade? The same stir in two liquids, 10,000 times apart in viscosity. • What holds water up? Measure pressure at two depths. • How does flow turn? A pulse of water meets a solid sphere. • Why doesn't water squash? The same falling column with pressure switched off. A LAB, NOT A VIDEO • Gravity, viscosity and stirring strength are yours to change, with a live Reynolds number. • Velocity and pressure arrows, tracer trails, pause, single-step and half speed. • Every term of the equation opens a plain-language explanation and an experiment to try. • Works offline. No account.Read more
The Navier-Stokes equations describe how every liquid and gas moves. They are usually met as a wall of symbols. Here they are a tank of water you can hold.
A real three-dimensional fluid solver runs on your iPhone's GPU. Drop a column of water, stir a tank, push a flow past a sphere, or turn on Tilt and let gravity follow your phone. Then look inside: color the water by speed, pressure or rotation, tap anywhere to measure it, and open the live values to see each term of the equation as an arrow at that point. In still water the pressure arrow and the gravity arrow cancel, which is what the equation says they must do.
FOUR GUIDED LESSONS
Predict, watch, compare, explain.
• Why does a swirl fade? The same stir in two liquids, 10,000 times apart in viscosity.
• What holds water up? Measure pressure at two depths.
• How does flow turn? A pulse of water meets a solid sphere.
• Why doesn't water squash? The same falling column with pressure switched off.
A LAB, NOT A VIDEO
• Gravity, viscosity and stirring strength are yours to change, with a live Reynolds number.
• Velocity and pressure arrows, tracer trails, pause, single-step and half speed.
• Every term of the equation opens a plain-language explanation and an experiment to try.
• Works offline. No account.
Versions
- Version 1.0.0First seen · 30 Sept 2026
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