论文标题
较大的波长适合卡拉吉形游泳者的流体力学
Larger wavelengths suit the hydrodynamics of carangiform swimmers
论文作者
论文摘要
鱼类流动运动学的波长是确定其水动力性能的重要参数。这项研究的重点是通过重建稳定游泳千斤顶鱼的真实生理模型和运动学方法来对此特征进行数字检查。我们对这些模型进行了三维数值模拟,该模型由树干,背面,肛门和尾鳍组成。此外,我们针对一系列波长的起伏开出了类似Carangiform的运动。较大波长的起伏可以改善尾鳍更好的推力产生,较低的后备箱产量的推力产生,并降低躯干的功耗。这与形成更强的后体涡旋和前沿涡流的形成,并在尾鳍上循环更多。由于尾鳍的灵活性,杰克·鱼类的真正运动学超过了按照规定运动的表现。
The wavelength of undulatory kinematics of fish is an important parameter to determine their hydrodynamic performance. This study focuses on numerical examination of this feature by reconstructing the real physiological model and kinematics of steadily swimmning Jack Fish. We perform three-dimensional numerical simulations for flows over these models composed of the trunk, and dorsal, anal, and caudal fins. Moreover, we prescribe the carangiform-like motion for its undulation for a range of wavelengths. Undulation with larger wavelengths improves the hydrodynamic performance of the carangiform swimmer in terms of better thrust production by the caudal fin, lower drag production on the trunk, and reduced power consumption by the trunk. This coincides with the formation of stronger posterior body vortices and leading-edge vortices with more circulation on the caudal fin. The real kinematics of Jack Fish surpasses the performance of those with prescribed motion owing to the flexibility of the caudal fin.