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◆ Sensors (Basel, Switzerland)2026-08-02

Parallel-Channel PIV System for Time-Resolved Measurement of Shock Wave Reflection and Diffraction.

Tianqing Zhao, Zutang Wu, Jun Yang, Junyi Guan, Jin Li, Guoliang Li

原始摘要(英文原文)· Original abstract
Conventional particle image velocimetry (PIV) techniques face an inherent trade-off between temporal resolution and single-pulse laser energy, limiting their performance in shock wave measurements. This study develops a multi-channel parallel PIV system with programmable timing control to address this constraint. By distributing laser pulses across eight independent optical channels, the system decouples single-pulse energy from the repetition rate, enabling continuous velocity field measurements at microsecond temporal resolution with high signal-to-noise ratio. Experiments were conducted on a planar shock wave propagating over a trapezoidal step in a shock tube facility. The system captured velocity fields at seven consecutive time instants with a 1 μs pulse interval, revealing the curved evolution of diffracted shock fronts and transient flow separation induced by shock-boundary-layer interaction. Comparison with unsteady Reynolds-averaged Navier-Stokes simulations demonstrated that the PIV system resolves fine-scale post-shock perturbations and turbulent fluctuations that were numerically dissipated in computational fluid dynamics. The results verify that the parallel-channel architecture accurately captures unsteady flow structures during shock reflection and diffraction, offering a reliable diagnostic technique for investigations of shock wave dynamics.
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Parallel-Channel PIV System for Time-Resolved Measurement of Shock Wave Reflection and Diffraction. — 科研速览 Science Skim