Analysis of Flow around Robotic Fish by Three-dimensional Fluid-structure Interaction Simulation and Evaluation of Propulsive Performance

Author:

Takada Yogo,Ochiai Toshinori,Fukuzaki Noboru,Tajiri Tomoki,Wakisaka Tomoyuki

Publisher

Study Group of Aero Aqua Bio-mechanics

Subject

Microbiology (medical),Immunology,Immunology and Allergy

Reference14 articles.

1. [1] Gray, J., “Studies in Animal Locomotion, VI. The Propulsive Power of the Dolphin”, The Journal of Experimental Biology, No. 13, pp.192-199, August 1935.

2. [2] Lighthill, M.J., “Note on the swimming of slender fish”, Journal of Fluid Mechanics, Vol. 9, pp. 305-317, May 1960.

3. [3] Nagai, M., Teruya, I., Uechi, K. and Miyazato, T., “Study on an Oscillating Wing Propulsion Mechanism”, Transaction of the Japan Society of Mechanical Engineers, ser. B, vol. 62, no. 593, pp. 200-206, January 1996.

4. [4] Takada, Y., Nakanishi, Y., Araki, R. and Wakisaka, T., “Investigation of Propulsive Force and Water Flow around a Small Fish Robot by PIV Measurement and Three-Dimensional Numerical Analysis”, Transactions of the Japan Society of Mechanical Engineers, ser. C, vol.72, no.763, pp. 197-204, March 2010.

5. [5] Takada, Y., Araki, R., Ochiai, T., Tajiri, T. and Wakisaka, T., “Effects of Tail Fin Flexibility on Propulsive Performance in Small Fish Robots (Investigation by Fluid-Structure Interaction Analysis Considering Elastic Deformation of Tail Fin)”, Transactions of the Japan Society of Mechanical Engineers, ser. C, vol.77, no.778, pp. 2351-2362, June 2011.

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