Universal Scaling Laws for a Generic Swimmer Model

被引:1
作者
Ventejou, Bruno [1 ]
Metivet, Thibaut [2 ]
Dupont, Aurelie [1 ]
Peyla, Philippe [1 ]
机构
[1] Univ Grenoble Alpes, CNRS, LIPhy, F-38000 Grenoble, France
[2] Univ Grenoble Alpes, CNRS, Grenoble INP, Inria,INP,LJK, F-38000 Grenoble, France
关键词
LARVAL ZEBRAFISH; KINEMATICS; SPEED; HYDRODYNAMICS; LOCOMOTION; FREQUENCY; DYNAMICS; WAVES; FISH; SIMULATION;
D O I
10.1103/PhysRevLett.134.134002
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We introduce a minimal model of a swimmer without body deformation based on force and torque dipoles which allows accurate and efficient 3D Navier-Stokes calculations. Our model can reproduce swimmer propulsion for a large range of Reynolds numbers and generate wake vortices in the inertial regime, reminiscent of the flow generated by the flapping tail of real fish. We perform a numerical exploration of the model from low to high Reynolds numbers and obtain universal laws using scaling arguments. Collecting data from a wide variety of microswimmers, we show that our theoretical scaling laws compare very well with experimental swimming performances across the different hydrodynamic regimes, from Stokes to turbulent flows. The simple design of our generic swimmer model paves the way for efficient large-scale simulations of hundreds of individuals, crucial for understanding collective effects within assemblies of aquatic animals.
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页数:6
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