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Hydromechanics of swimming propulsion. part 1. Swimming of a two-dimensional flexible plate at variable forward speeds in an inviscid fluid

机译:游泳推进的水力力学。第1部分。在无粘性流体中以可变的前进速度游动二维柔性板

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摘要

The most effective movements of swimming aquatic animals of almost all sizes appear to have the form of a transverse wave progressing along the body from head to tail. The main features of this undulatory mode of propulsion are discussed for the case of large Reynolds number, based on the principle of energy conservation. The general problem of a two-dimensional flexible plate, swimming at arbitrary, unsteady forward speeds, is solved by applying the linearized inviscid flow theory. The large-time asymptotic behaviour of an initial-value harmonic motion shows the decay of the transient terms. For a flexible plate starting with a constant acceleration from at rest, the small-time solution is evaluated and the initial optimum shape is determined for the maximum thrust under conditions of fixedudpower and negligible body recoil.
机译:几乎所有大小的游泳水生动物,最有效的运动似乎都是从头到尾沿着身体前进的横波形式。基于能量守恒原理,针对雷诺数较大的情况,讨论了这种波动式推进方式的主要特征。通过应用线性无粘性流理论,可以解决二维柔性板在任意,不稳定的前进速度下游泳的一般问题。初值谐波运动的长时间渐近行为显示了瞬态项的衰减。对于从静止状态开始以恒定加速度开始的柔性板,将评估短期解决方案,并在固定大功率和可忽略的车身后坐力条件下确定最大推力的初始最佳形状。

著录项

  • 作者

    Wu T. Yao-Tsu;

  • 作者单位
  • 年度 1971
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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