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High-Efficiency Can Be Achieved for Non-Uniformly Flexible Pitching Hydrofoils via Tailored Collective Interactions

机译:通过量身定制的集体相互作用,可以实现高效率的非均匀柔性俯仰水翼。

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New experiments examine the interactions between a pair of three-dimensional (AR = 2) non-uniformly flexible pitching hydrofoils through force and efficiency measurements. It is discovered that the collective efficiency is improved when the follower foil has a nearly out-of-phase synchronization with the leader and is located directly downstream with an optimal streamwise spacing of X*=0.5. The collective efficiency is further improved when the follower operates with a nominal amplitude of motion that is 36% larger than the leader’s amplitude. A slight degradation in the collective efficiency was measured when the follower was slightly-staggered from the in-line arrangement where direct vortex impingement is expected. Operating at the optimal conditions, the measured collective efficiency and thrust are ηC=62% and CT,C=0.44, which are substantial improvements over the efficiency and thrust of ηC=29% and CT,C=0.16 of two fully-rigid foils in isolation. This demonstrates the promise of achieving high-efficiency with simple purely pitching mechanical systems and paves the way for the design of high-efficiency bio-inspired underwater vehicles.
机译:新实验通过力和效率测量检查一对三维(Ar = 2)非均匀柔性俯仰水膜之间的相互作用。发现当从动箔与领导者具有几乎不相间的同步时,可以改善集体效率并且直接位于下游,并且具有X * = 0.5的最佳流动间距。当跟随器操作的标称动作幅度比领导幅度大36%时,集体效率进一步提高。当从属于直接涡旋冲击的直线布置略微交错时,测量集体效率的微小劣化。在最佳条件下操作,测量的集体效率和推力是ηc= 62%和ct,c = 0.44,这对ηc= 29%和ct的效率和推力具有显着改善,C = 0.16的两个完全刚性箔隔离中。这证明了通过简单纯粹的机械系统实现高效率的承诺,为高效生物启发水下车设计铺平道路。

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