JOURNAL ARTICLE

Numerical simulation of drag reduction effect on the surface of bionic fish-scales

Xueting WuYonghua WangJinkai XuHuadong Yu

Year: 2023 Journal:   Journal of Physics Conference Series Vol: 2492 (1)Pages: 012012-012012   Publisher: IOP Publishing

Abstract

Abstract With the development of marine transportation and underwater navigation technology, fluid drag reduction has become an international research hotspot as an important technical means to save energy and reduce environmental pollution. It has been found that the body surface structures of many organisms have unique drag-reduction properties. Therefore, it is feasible and important to replicate the morphological features of the body surface to the material surface. In this research, the structural features of biomimetic fish scales were summarized and extracted by observing the laminar arrangement features and morphology features of the surface scales of aquatic fish. Then, the arrangement features and morphology of fish-scales were abstracted into the oblique groove structure, and a three-dimensional model of the bionic fish-scale with a fan-shaped structure was constructed. The surface flow field of the bionic fish-scale was numerically simulated by COMSOL Multiphysics to revealing the mechanism of resistance reduction on the surface of the bionic fish-scale. The results indicate that the maximum drag reduction rate of the bionic fish scale surface is 8.40% compared with the smooth surface at a water speed of 0.6 m/s.

Keywords:
Drag Multiphysics Underwater Marine engineering Body surface Environmental science Mechanics Geometry Geology Engineering Physics Structural engineering Mathematics Finite element method

Metrics

2
Cited By
0.29
FWCI (Field Weighted Citation Impact)
4
Refs
0.47
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Surface Modification and Superhydrophobicity
Physical Sciences →  Materials Science →  Surfaces, Coatings and Films
Fluid Dynamics and Heat Transfer
Physical Sciences →  Engineering →  Computational Mechanics
Biomimetic flight and propulsion mechanisms
Physical Sciences →  Engineering →  Aerospace Engineering

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