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Hydrodynamic analysis of a gliding robotic dolphin based on Computational Fluid Dynamics

机译:基于计算流体力学的滑翔机器人海豚流体力学分析

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This paper presents a concrete and practical hydrodynamic analysis for a hybrid gliding robotic dolphin. In order to obtain the accurate hydrodynamic performance of both dolphin-like swimming and gliding motion, a Computational Fluid Dynamics (CFD) method is employed. Specifically, based on the FlUENT dynamic mesh interface, a novel dynamic mesh and user-defined function (UDF) are developed to describe the dorsoventral oscillations of the dolphin. Besides, the corresponding turbulent model and SIMPLE algorithm suited to dolphin-like swimming are also meticulously selected for great accuracy and high quality. Finally, the FLUENT simulation results reveal the pressure distribution and velocity field distribution around the robotic dolphin. Moreover, some important hydrodynamic coefficients including lift coefficients and drag coefficients at different frequencies are also obtained. The simulation results illustrate an expected hydrodynamic performance of the gliding robotic dolphin.
机译:本文为混合滑翔机器人海豚提出了具体而实用的流体动力学分析。为了获得类似海豚游泳和滑行运动的精确水动力性能,采用了计算流体动力学(CFD)方法。具体而言,基于FlUENT动态网格界面,开发了一种新颖的动态网格和用户定义函数(UDF)来描述海豚的背腹振动。此外,还精心选择了适用于海豚式游泳的相应湍流模型和SIMPLE算法,以实现高精度和高质量。最后,FLUENT仿真结果显示了机器人海豚周围的压力分布和速度场分布。此外,还获得了一些重要的水动力系数,包括不同频率下的升力系数和阻力系数。仿真结果说明了滑行机器人海豚的预期水动力性能。

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