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CFD Simulation of Fish-like Body Moving in Viscous Liquid 被引量:6
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作者 D. Adkins 《Journal of Bionic Engineering》 SCIE EI CSCD 2006年第3期147-153,共7页
The study of fish-like bodies moving in liquid is an interesting and challenging research subject in the fields of biolocomotion and biomimetics. Typically the effect of tail oscillation on fluid flow around such a bo... The study of fish-like bodies moving in liquid is an interesting and challenging research subject in the fields of biolocomotion and biomimetics. Typically the effect of tail oscillation on fluid flow around such a body is highly unsteady, generating vortices and requiring detailed analysis of fluid-structure interactions. An understanding of the complexities of such flows is of interest not only to biologists but also to engineers interested in developing vehicles capable of emulating the high performance of fish propulsion and manoeuvring. In the present study, a computational fluid dynamic (CFD) simulation of a three-dimensional biomimetic fish-like body has been developed to investigate the fluid flows around this body when moving in a viscous liquid. A parametric analysis of the variables that affect the flow surrounding the body is presented, along with flow visualisations, in an attempt to quantify and qualify the effect that these variables have on the performance of the body. The analysis provided by the unsteady transient simulation of a fish-like body has allowed the flow surrounding a fish-like body undergoing periodic oscillations to be studied. The simulation produces a motion of the tail in the (x, y) plane, with the tail oscillating as a rigid body in the form of a sinusoidal wave. 展开更多
关键词 cfd biomimetics fish-like body
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宏压电纤维致动的水下推进器性能及机理 被引量:2
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作者 林煌旭 任枭荣 +1 位作者 娄军强 贾振 《振动.测试与诊断》 EI CSCD 北大核心 2020年第5期881-887,1020,1021,共9页
提出了一种宏压电纤维复合材料(macro fiber composite,简称MFC)致动的仿鲹科身体/尾鳍(body or caudal fin,简称BCF)水下推进器。利用搭建的实验平台测试了不同驱动电压条件下推进器的摆动性能,推进器在峰峰值为1000V,频率为17.7和3Hz... 提出了一种宏压电纤维复合材料(macro fiber composite,简称MFC)致动的仿鲹科身体/尾鳍(body or caudal fin,简称BCF)水下推进器。利用搭建的实验平台测试了不同驱动电压条件下推进器的摆动性能,推进器在峰峰值为1000V,频率为17.7和3Hz的激励电压下分别取得空气中最大摆幅峰峰值为45mm,水下最大摆幅峰峰值13mm。借助计算流体力学(computational fluid dynamics,简称CFD)研究了仿生推进器在稳定摆动过程中流场特性和尾迹旋涡的分布情况,从推进器端部观察到的“反卡门涡街”结构揭示了仿生推进器的流体动力学机制和摆动式推进机理。推进器端部在x方向上的平均推进力可达1.5mN。研究成果对压电纤维致动器在仿生推进器的优化设计和提高其推进效率提供技术支持。 展开更多
关键词 仿生水下推进器 宏压电纤维复合材料 身体/尾鳍谐振式推进 计算流体力学分析 反卡门涡街
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