Understanding fluid behaviour is essential in engineering, aerospace, automotive, and research applications. Phenomena like turbulence, cavitation, vortex formation, and droplet dynamics occur in milliseconds and are impossible to study accurately with the naked eye. High-speed imaging provides detailed visualisation of these rapid processes, enabling engineers and scientists to optimise designs and predict performance.
With Phantom high-speed cameras, Apex Slow Motion captures fluid motion with extreme clarity, allowing you to:
Observe turbulence and vortex formation in real time.
Analyse cavitation effects on pumps, propellers, and hydraulic systems.
Study droplet formation and microfluidic flows for lab-on-a-chip and chemical processes.
Evaluate airfoil and aerodynamic flow patterns in wind tunnel or open-air testing.
Our slow-motion footage turns microsecond-scale fluid behaviour into actionable visual data, supporting design optimisation, safety analysis, and R&D initiatives.
Aerospace Engineering: Analyse airflow around wings, turbines, or control surfaces.
Automotive & Marine: Observe cavitation, drag, and turbulence for efficient designs.
Microfluidics & Lab Research: Track droplets, mixing, and chemical reactions at microscopic scales.
Industrial Flow Systems: Optimise pumps, valves, and fluid transport mechanisms.
Visualise complex fluid behaviour invisible to standard cameras.
Optimise performance and efficiency of equipment and designs.
Reduce trial-and-error in R&D and prototyping.
Support safety and compliance through detailed flow analysis.