The Kinematics Performance of Self-Propelled Full Freedom Filament in Wakes of Flow around Cylinder

Jiyao Yang, Yun Liu, Guoyi He
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Abstract

In vortex streets, the kinematics performance of self-propelled full freedom filament is closely related to the length and the position of filaments in the flow field. In this paper, the changes of passive propulsion velocity and pressure of full-degree-of-freedom filaments after cylindrical wake were analyzed by 15 sets of experiments when the length and position of filaments were changed. The results show that the propulsive velocity of the filament, it approximately increases first and then decreases with the filament length increasing, and the further away from the center of the cylinder, the smaller the propulsive velocity of the filament. In addition, the longer the filament length and the further it is from the center of the cylinder, the lower the pressure around the filament. Experiments show that filaments without energy input can obtain energy from the surrounding flow field to maintain self-propelled motion. Studying the influence of length and position on the kinematics of filaments is helpful to provide a reference for revealing the hydrodynamic mechanism on passive propulsion process and developing low resistance energy harvesting device in swimming fish movement.
自行式全自由灯丝在绕缸尾迹中的运动性能
在涡旋街道中,自走式全自由细丝的运动性能与细丝在流场中的长度和位置密切相关。本文通过15组实验,分析了不同长度和位置的全自由度细丝经过圆柱尾迹后被动推进速度和压力的变化。结果表明:随着纤维长度的增加,纤维的推进速度大致呈先增大后减小的趋势,且距离圆柱体中心越远,纤维的推进速度越小;此外,灯丝长度越长,离圆柱体中心越远,灯丝周围的压力越低。实验表明,没有能量输入的细丝可以从周围的流场中获得能量来维持自身的运动。研究细丝长度和位置对细丝运动学的影响,有助于为揭示鱼游动过程中被动推进过程的水动力机理和开发低阻力能量收集装置提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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