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并排纵摇翼推进性能中同步变化的影响。

Implications of changing synchronization in propulsive performance of side-by-side pitching foils.

机构信息

Department of Mechanical Engineering, University of Alberta, Edmonton, AB T6G 1H9, Canada.

出版信息

Bioinspir Biomim. 2021 Mar 23;16(3). doi: 10.1088/1748-3190/abe54b.

Abstract

The unsteady hydrodynamics of side-by-side pitching foils are studied numerically at Reynolds number of 4000 with altering phase differences in the middle of an oscillation cycle. This represents a change in synchronization of oscillating foils, inspired by experimental observations on group swimming of red nose tetra fish. The hybrid oscillation cases are based on an initially out-of-phase pitching that switch to in-phase at the 20th cycle of oscillation. Various sequential combinations of out-of-phase and in-phase pitching are also examined in terms of foil propulsive performance. It is observed that out-of-phase pitching foils initially produce zero total side-force. However, they start producing negative total side-force after 13 oscillation cycles. Contrarily for the in-phase oscillation cases, the initially positive total side-force reverted to zero over time. In hybrid oscillation cases, the negative total side-force produced during the initial out-of-phase oscillations abruptly adjusted to zero following a change of synchronization that led to in-phase oscillations, which is inspired from a particular swimming behavior in fish. Based on three hybrid modes, defined on the onset of mid-cycle switch to in-phase oscillations, it was apparent that the benefit of synchronization, or there lack of, greatly depended on the timing of the change in synchronization. Thus, mid-swimming change of synchronization in side-by-side systems inspired by fish schools compensates for their non-zero total side-force production to maintain their lateral position. Such changes do not translate to significant gains in neither thrust generation nor efficiency.

摘要

并排扑翼的非定常水动力在雷诺数为 4000 的条件下进行了数值研究,在一个振荡周期的中间改变相位差。这代表了振荡翼同步的变化,灵感来自于对红鼻鱼群游泳的实验观察。混合振荡情况基于初始相位差的俯仰,在第 20 个振荡周期切换为同相。还研究了各种相位差和同相俯仰的顺序组合,以评估翼的推进性能。观察到,初始相位差的俯仰翼最初产生零总侧向力。然而,它们在 13 个振荡周期后开始产生负总侧向力。相反,对于同相振荡情况,最初的正总侧向力随时间推移逐渐变为零。在混合振荡情况下,初始相位差振荡期间产生的负总侧向力在同步变化导致同相振荡后突然调整为零,这灵感来自于鱼类的一种特殊游泳行为。基于三种混合模式,即在中间周期切换到同相振荡的开始定义,很明显,同步的好处或缺乏,很大程度上取决于同步变化的时间。因此,鱼类群体启发的并排系统中的游泳中期同步变化补偿了它们非零的总侧向力产生,以维持其横向位置。这些变化不会导致推力产生或效率的显著提高。

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