Active Heart, Stroke & Blood Physics & Astronomy

Aero-engine Experimental Aerodynamics

In plain English

AI plain-English summary

A new type of camera that captures only changes in a scene—rather than a full frame every fraction of a second—is being tested to measure air flow inside jet engine intakes with far greater speed and precision. The problem is that the air entering an aero-engine is never smooth. It twists and buffets, especially when the intake is curved or hidden inside an aircraft’s structure. Current laser-based measurement systems, such as stereo particle image velocimetry (PIV), struggle to capture these rapid, chaotic flow distortions near surfaces. Engineers need to see exactly what the air is doing in those tight, confined spaces to improve engine design. If this works, the new event-based cameras could capture flow data at much higher rates than conventional cameras, using less light and less data storage. That would let researchers map turbulence inside real engine intakes—not just simplified lab models. Better measurements mean better intake designs, which could reduce fuel burn, cut noise, and improve engine stability. This is fundamental aerodynamics research with a clear engineering payoff: more efficient and reliable jet engines.

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Fundamental understanding of aerodynamic flows is at the heart of aero-engine design and a key research area is the ability to measure complex flow fields. Within that context, the overall aim of this project is to further develop non-intrusive laser-based flow measurement systems with new event-based cameras for stereo PIV measurements. This will be used to characterise the dynamic flow distortion within confined regions such as convoluted aero-engine intakes. This is expected to yield significant benefits in advanced aerodynamic measurements where there is a keen interest in obtaining measurements close to surfaces.

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Researchers

Gregor SHIELDS (Student)

Related Research

Grants with similar aims, by meaning.

Seeding-Free, Non-INtrusive Aero-engine disToRtion meAsurements
Holistic Optical Metrology for Aero-Elastic Research
Non-Intrusive Flow distortion measurements within a Turbofan Intake
Accurate Aerodynamic Measurement in Unsteady Flow
Fusion of advanced testing and machine learning methods in propulsion aerodynamics

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