Optical-flow-based background-oriented schlieren technique for measuring a laser-induced underwater shock wave
Keisuke Hayasaka, Yoshiyuki Tagawa, Tianshu Liu, Masaharu Kameda

TL;DR
This paper introduces an optical-flow-based background-oriented schlieren (OF-BOS) technique for high-resolution measurement of underwater shock wave pressure fields, demonstrating improved spatial resolution over traditional methods and validation against hydrophone data.
Contribution
The paper develops and validates a physics-based optical flow method for BOS, achieving higher spatial resolution in measuring underwater shock wave pressure fields compared to conventional cross-correlation methods.
Findings
OF-BOS provides one vector per pixel resolution.
High spatial resolution is essential for accurate pressure field reconstruction.
OF-BOS results agree well with hydrophone measurements.
Abstract
The background-oriented schlieren (BOS) technique with the physics-based optical flow method (OF-BOS) is developed for measuring the pressure field of a laser-induced underwater shock wave. Compared to BOS with the conventional cross-correlation method in PIV (called PIV-BOS), by using the OF-BOS, the displacement field generated by the small density gradient in water can be obtained at the spatial resolution of one vector per pixel. The corresponding density and pressure fields can be further extracted. It is particularly demonstrated that the sufficiently high spatial resolution of the extracted displacement vector field is required in the tomographic reconstruction to correctly infer the pressure field of the spherical underwater shock wave. The capability of the OF-BOS is critically evaluated based on synchronized hydrophone measurements. Special emphasis is placed on direct…
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