Storman Mytheli

App Store App Education Free
24 Sept 2026launched 7 days ago
0.00 ratings
n/aApple doesn’t publish installs
Limited release · 44 countriesUnited Arab Emirates, Argentina, Austria, Australia +40 more
1.1latest version · 3 days ago

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About

Storman Mytheli is a high-voltage simulation bench for engineers, researchers, and students who need to explore electrical breakdown in air without a physical laboratory. Set an electrode geometry -- parallel plates, coaxial cylinders, rod-plane, or concentric spheres -- then dial in gap distance, gas species, pressure, temperature, and humidity. Raise the voltage and the app answers three questions any high-voltage engineer asks: does the gap break down, what does the discharge look like when it does, and what ground area does a lightning protection rod actually shield? The discharge is not an animation. It is grown cell by cell from a live numerical solution of Laplace's equation on the electrode geometry you are dragging. Move the tip electrode mid-growth and the leader re-routes under your finger. Box-counting fractal dimension is reported for every figure with the R-squared of the fit, so morphology comparisons are quantitative. A photo-trace tool measures the dimension of a real Lichtenberg figure or spark photograph and identifies the branching parameter that would reproduce it. The built-in lab covers Paschen curves for air, nitrogen, argon, and hydrogen with each analytic minimum and no-solution asymptote marked; the rolling-sphere electrogeometric model for siting lightning rods; capacitor bank energy, peak current, and conductor survival by both the Preece and Onderdonk formulas; and a full method sheet with every formula as implemented and worked examples whose numbers are produced by the running engine.Read more
Storman Mytheli is a high-voltage simulation bench for engineers, researchers, and students who need to explore electrical breakdown in air without a physical laboratory. Set an electrode geometry -- parallel plates, coaxial cylinders, rod-plane, or concentric spheres -- then dial in gap distance, gas species, pressure, temperature, and humidity. Raise the voltage and the app answers three questions any high-voltage engineer asks: does the gap break down, what does the discharge look like when it does, and what ground area does a lightning protection rod actually shield? The discharge is not an animation. It is grown cell by cell from a live numerical solution of Laplace's equation on the electrode geometry you are dragging. Move the tip electrode mid-growth and the leader re-routes under your finger. Box-counting fractal dimension is reported for every figure with the R-squared of the fit, so morphology comparisons are quantitative. A photo-trace tool measures the dimension of a real Lichtenberg figure or spark photograph and identifies the branching parameter that would reproduce it. The built-in lab covers Paschen curves for air, nitrogen, argon, and hydrogen with each analytic minimum and no-solution asymptote marked; the rolling-sphere electrogeometric model for siting lightning rods; capacitor bank energy, peak current, and conductor survival by both the Preece and Onderdonk formulas; and a full method sheet with every formula as implemented and worked examples whose numbers are produced by the running engine.

Versions

  1. Version 1.1First seen · 28 Sept 2026

    Improved performance and stability.

Countries

Limited release · 44 countries

Apple lists this app in a small set of storefronts, a typical sign of a test or regional launch.

United Arab EmiratesArgentinaAustriaAustraliaBelgiumBrazilCanadaSwitzerlandChileColombiaCzechiaGermanyDenmarkAlgeriaEgyptSpainFranceUnited KingdomGhanaIndonesiaIrelandIsraelIndiaItalyKazakhstanMoroccoMexicoMalaysiaNigeriaNetherlandsNorwayPhilippinesPakistanPolandPortugalRomaniaRussiaSwedenSingaporeThailandTurkeyUkraineVietnamSouth Africa

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