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Simulation of Flow Field of Synthetic Jet Actuator Based on Artificial Muscle Dielectric Elastomer

机译:基于人工肌肉介电弹性体的合成射流致动器流场模拟

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Low noise, low consumption and high propulsion efficiency are essential characters for new generation of bionic underwater propulsion technology. Based on the biomimetic mechanism, this paper proposes a synthetic jet actuator driven by dielectric elastomer (DE), with finite element simulation of the flow field in the working process. The results show that the fluid jet features the characteristics of synthetic jet, which can form a series of vortex rings, and the jet maintains its directivity under the action of the vortex ring. The research results in this paper have a good application prospect in the field of new generation for synthetic jet actuation as potential biomimetics.
机译:低噪音,低消耗和高推进效率是新一代仿生水下推进技术的基本特征。基于仿生机理,提出了一种由介电弹性体(DE)驱动的合成射流致动器,并对工作过程中的流场进行了有限元模拟。结果表明,流体射流具有合成射流的特征,可以形成一系列涡流环,并且在涡流环的作用下,射流保持方向性。本文的研究成果在新一代合成射流致动作为潜在的仿生植物领域具有良好的应用前景。

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