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For Engineers · Compressible Nozzle Flow

Compressible Nozzle Flow for a drone quadcopter

Built for engineers using it for real design work. Go from concept to a running model in the browser, then scale to the cloud when needed. Simulate a drone quadcopter live below — adjust the inputs and watch it respond, right in your browser.

Compressible Nozzle FlowLive

Controls

Presets

In a converging–diverging (de Laval) nozzle, gas accelerates to Mach 1 at the throat, then goes supersonic in the diverging section. The exit Mach number follows from the pressure ratio via isentropic flow relations. Educational tool.

▶ Run in Python

Data Inspector

Exit Mach number1.71
Area ratio Aₑ/A*1.35
Flow regimesupersonic

Governing equation

Reading this result: Exit Mach 1.71 is supersonic — the flow chokes at Mach 1 in the throat, then the diverging section keeps accelerating it, which demands an area ratio Ae/A* of 1.35.

Runs locally in your browser — free forever. Scale to the cloud when reality gets heavy.

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Frequently asked questions

Is this good for engineers?
Yes — this version of "Compressible Nozzle Flow for a drone quadcopter" is framed for engineers using it for real design work. Go from concept to a running model in the browser, then scale to the cloud when needed.
Do I need to install anything?
No. It runs in any modern browser, free, with no account required.