首页> 外文会议>Conference on Bioinspiration, Biomimetics, and Bioreplication >A coupled CFD and multibody analysis of the hydrodynamics of batoid fish
【24h】

A coupled CFD and multibody analysis of the hydrodynamics of batoid fish

机译:蝙蝠鱼流体动力学的CFD和多体耦合分析

获取原文

摘要

Among all aquatic species, mantas and rays swim by oscillating their pectoral fins; this motion is similar to other fishes in term of efficiency, but it gives better agility in turning with respect to fishes moving their caudal fin. The fin motion is featured by a travelling wave going opposite to the forward motion, producing a force thanks to momentum conservation. Another contribution to the generation of thrust is given by the generation of a vortex in correspondence of the leading edge of the fin, which pulls the fish forward thanks to the lower pressure in its centre. In literature these contributions have been highlighted, but it remains to understand which one of these two mechanisms is prevailing according to different conditions of swimming, how they affect each other and what is the influence of the two on energetical efficiency. The object of this activity is to investigate how thrust generation is influenced by geometrical characteristics of the fin, such as size, geometry and flexibility and by parameters of motion, such as speed, amplitude and frequency of fin oscillation and velocity of the travelling wave. A CFD model of the fish has been implemented in OpenFOAM, not only confirming that both upstroke and downstroke contribute positively to the forward movement according to the momentum conservation principle, but also highlighting the formation of a leading-edge vortex enhancing thrust generation. The description of how thrust generation is linked to motion parameters is simulated also coupling the CFD with a multibody to simulate the whole motion in its complexity.
机译:在所有水生物种中,蝠ta和rays都通过摆动其胸鳍来游动;就效率而言,此动作与其他鱼相似,但相对于移动其尾鳍的鱼,它在转弯时具有更好的敏捷性。鳍片运动的特征在于与前进运动相反的行波,由于动量守恒,产生了力。对产生推力的另一个贡献是产生了与鳍片前缘相对应的涡流,由于鳍片中心的压力较低,该涡流将鱼向前拉。在文献中,这些贡献已被突出显示,但仍有待了解,根据游泳的不同条件,这两种机制中的哪一种占主导地位,它们如何相互影响以及两者对能量效率的影响是什么。本活动的目的是研究推力的产生如何受到鳍的几何特性(如大小,几何形状和柔韧性)以及运动参数(如鳍的振动速度,幅度和频率以及行波速度)的影响。在OpenFOAM中已实现了鱼的CFD模型,不仅确认了上冲程和下冲程都根据动量守恒原理对向前运动做出了积极贡献,而且还强调了形成前沿涡流以增强推力产生的作用。模拟了关于推力生成如何与运动参数关联的描述,还将CFD与多体耦合以模拟其复杂性的整个运动。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号