In this work, numerical simulations are conducted to reveal the hydrodynamic mechanism of caudal fin propulsion. In the modeling of a bionic caudal fin, a universal kinematics model with three degrees of freedom is adopted and the flexible deformation in the spanwise direction is considered. Navier-Stokes equations are used to solve the unsteady fluid flow and dynamic mesh method is applied to track the locomotion. The force coefficients, torque coefficient, and flow field characteristics are extracted and analyzed. Then the thrust efficiency is calculated. In order to verify validity and feasibility of the algorithm, hydrodynamic performance of flapping foil is analyzed. The present results of flapping foil compare well with those in exper...
The kinematics model based on the Slender-Body theory is proposed from the bionic movement of real f...
In this paper, the propulsive performance of a caudal peduncle-fin swimmer mimicking a bio-inspired ...
This article aims to numerically study the hydrodynamic performance of the bionic dolphin equipped w...
In this work, numerical simulations are conducted to reveal the hydrodynamic mechanism of caudal fin...
Bionic foils are usually similar in shape to the locomotive organs of animals living in fluid media,...
Abstract: The bionic undulating propeller driven by hydraulic system has different structure, kinema...
International audienceA computational model is used to examine the effect of caudal fin flexibility ...
Based on the backgrounds of underwater propulsors with high hydrodynamic performance, the article fo...
AbstractNumerical simulations are used to investigate the wake structure and hydrodynamic performanc...
A 3D fluid–structure coupled simulation of a square flexible flapper, the basic model of a caudal fi...
This paper investigates the hydrodynamic characteristics of the rectilinear motion of a robotic fish...
We numerically investigate the propulsion performance of a skeleton-reinforced caudal fin with both ...
Numerical simulations are carried out to study the fluid dynamics of a complex-shaped low-aspect-rat...
Bionic pectoral fins play an essential role in achieving the superior swimming ability of the bio-in...
Bionic propulsion has certain advantages over traditional propellers. Much research on pectoral fins...
The kinematics model based on the Slender-Body theory is proposed from the bionic movement of real f...
In this paper, the propulsive performance of a caudal peduncle-fin swimmer mimicking a bio-inspired ...
This article aims to numerically study the hydrodynamic performance of the bionic dolphin equipped w...
In this work, numerical simulations are conducted to reveal the hydrodynamic mechanism of caudal fin...
Bionic foils are usually similar in shape to the locomotive organs of animals living in fluid media,...
Abstract: The bionic undulating propeller driven by hydraulic system has different structure, kinema...
International audienceA computational model is used to examine the effect of caudal fin flexibility ...
Based on the backgrounds of underwater propulsors with high hydrodynamic performance, the article fo...
AbstractNumerical simulations are used to investigate the wake structure and hydrodynamic performanc...
A 3D fluid–structure coupled simulation of a square flexible flapper, the basic model of a caudal fi...
This paper investigates the hydrodynamic characteristics of the rectilinear motion of a robotic fish...
We numerically investigate the propulsion performance of a skeleton-reinforced caudal fin with both ...
Numerical simulations are carried out to study the fluid dynamics of a complex-shaped low-aspect-rat...
Bionic pectoral fins play an essential role in achieving the superior swimming ability of the bio-in...
Bionic propulsion has certain advantages over traditional propellers. Much research on pectoral fins...
The kinematics model based on the Slender-Body theory is proposed from the bionic movement of real f...
In this paper, the propulsive performance of a caudal peduncle-fin swimmer mimicking a bio-inspired ...
This article aims to numerically study the hydrodynamic performance of the bionic dolphin equipped w...