Optical-flow-based background-oriented schlieren technique for measuring a laser-induced underwater shock wave

Author:

Hayasaka Keisuke,Tagawa YoshiyukiORCID,Liu Tianshu,Kameda Masaharu

Funder

Japan Society for the Promotion of Science (JP)

Global Innovation Research at Tokyo University of Agriculture and Technology

Publisher

Springer Science and Business Media LLC

Subject

Fluid Flow and Transfer Processes,General Physics and Astronomy,Mechanics of Materials,Computational Mechanics

Reference25 articles.

1. Atcheson B, Heidrich W, Ihrke I (2009) An evaluation of optical flow algorithms for background oriented schlieren imaging. Exp Fluids 46:467–476

2. Brujan E (2010) Cavitation in Non-Newtonian fluids: with biomedical and bioengineering applications. Springer Science & Business Media, Berlin

3. Feng J, Okamoto K, Tsuru D, Madarame H, Fumizawa M (2002) Visualization of 3D gas density distribution using optical tomography. Chem Eng J 86(3):243–250

4. Hayasaka K, Tagawa Y, Liu T, Kameda M (2016) Measurement of a laser-induced underwater shock wave by the optical-flow-based background-oriented schlieren technique. In: Proceedings of the 18th international symposium on application of laser and imaging techniques to fluid mechanics, Lisbon, pp 249–257

5. Horn BK, Schunck BG (1981) Determining optical flow. Artif. Intell. 17(1–3):185–203

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