4.6 Article

Progress towards a Miniaturised PIV System

Journal

SENSORS
Volume 22, Issue 22, Pages -

Publisher

MDPI
DOI: 10.3390/s22228774

Keywords

PIV; miniaturisation; wind tunnel

Funding

  1. Clean Sky 2 Joint Undertaking (CSJU) [831825]

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Particle image velocimetry (PIV) is an important tool for optical flow diagnostics, but its requirement for optical access limits its application in closed cavities and confined spaces. To overcome this limitation, a miniaturized autocorrelation-based stereo PIV system was developed and tested. The miniature system showed the ability to measure inside confined spaces and cavities and can be mounted on board models and vehicles.
Particle image velocimetry is an important optical flow diagnostic tool due to its capacity for investigating a whole flow field without introducing disturbances. However, a significant drawback of PIV methods is their requirement for optical access, making capturing data in closed cavities and confined spaces extremely challenging. A potential approach to overcome this difficulty is miniaturising the system and placing the optical components inside the model. Conventional cross-correlation PIV methods do not allow this due to the size of current PIV cameras. In this study, a miniaturised autocorrelation-based stereo PIV system, which is volumetrically 1.2% of the conventional PIV cameras, was developed and tested. The miniature system is compared with a conventional stereo PIV in wind tunnel experiments up to 16 m/s free stream velocity and a 1.6% velocity difference is observed in the boundary layer flow. Despite a comparatively slow measurement rate of 4.5 Hz, the miniature PIV system demonstrates the ability to measure inside confined spaces and cavities and the ability to be mounted on board models and vehicles. However, limitations remain around conducting measurements with large velocity ranges and with regions of reversed flow due to the challenge of resolving a velocity of 0 m/s.

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