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Modeling, Simulation, and Performance of a Synergistically Propelled Ichthyoid

机译:协同推进鱼鳞状生物的建模,仿真和性能

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摘要

We have developed a novel type of submersible named the Synergistically Propelled Ichthyoid (SPI). The SPI is propelled by the synergistic combination of jet action and oscillatory motion of a fluttering fluid-conveying tail. Two dynamic models for an SPI are presented and solved: an analytically tractable model and a more complex model that captures the complete dynamics in two dimensions. The latter model has been solved numerically—these simulations show a benefit of using a fluttering tail relative to a dimensionally identical rigid tail. Construction details of an experimental realization are provided, and preliminary measurements taken using that platform are also provided. These measurements qualitatively confirm the simulation’s conclusion that a fluttering flexible tail is capable of higher speed than a dimensionally identical rigid tail.
机译:我们已经开发出一种新型的潜水器,称为“协同推进鱼鳞状”(SPI)。 SPI是由喷射作用和颤动的流体输送尾部的振荡运动的协同作用所推动的。提出并解决了SPI的两个动力学模型:一个易于分析的模型和一个更复杂的模型,可捕获二维的完整动力学。后者的模型已经通过数值求解了-这些模拟显示相对于尺寸相同的刚性尾部,使用颤动的尾部是有好处的。提供了实验实现的构造细节,还提供了使用该平台进行的初步测量。这些测量结果定性地证实了仿真的结论,即飘动的柔性尾翼比尺寸相同的刚性尾翼具有更高的速度。

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