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个人信息Personal Information
教授 博士生导师
招生学科专业:
力学 -- 【招收博士、硕士研究生】 -- 航空学院
航空宇航科学与技术 -- 【招收博士、硕士研究生】 -- 航空学院
机械 -- 【招收博士、硕士研究生】 -- 航空学院
性别:男
毕业院校:新加坡国立大学
学历:新加坡国立大学
学位:哲学博士学位
所在单位:航空学院
办公地点:流体楼C12-404
联系方式:wuj@nuaa.edu.cn
电子邮箱:
Phase difference effect on collective locomotion of two tandem autopropelled flapping foils
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所属单位:航空学院
发表刊物:PHYSICAL REVIEW FLUIDS
关键字:FISH PERFORMANCE PROPULSION MECHANISM PATTERNS SCHOOLS FLIGHT BIRDS LEADS
摘要:The effect of phase difference on the collective locomotion of two tandem flapping foils is numerically studied in this paper. The numerical results indicate that the collective locomotion is greatly affected by the phase difference. Two distinct collective modes are observed, i.e., the fast mode and the slow mode. The fast mode is only observed in part of the range of the phase difference (phi), i.e., phi = 0.0-0.1 pi and 1.5 pi-1.9 pi with appropriate initial distance, and the slow mode appears in the range of phi = 0.3 pi-1.4 pi. Meanwhile, the follower of the two foils has hydrodynamic benefit in both fast and slow modes, and it can obtain the highest efficiency in the fast mode at phi = 1.6 pi. However, the leader can only achieve hydrodynamic benefit in the fast mode, and the highest efficiency occurs at phi = 0.1 pi. In addition, the stable distance between two foils in the slow mode can be quantized with the phase difference. Furthermore, the fluid-structure interactions between two foils are also analyzed. Two distinct vortex interactions are observed in the fast mode, i.e., merging interaction and broken interaction, which, respectively, result in the highest propulsive efficiency for the follower and the leader. In the merging interaction, the leading edge vortex of the leader is captured by the follower, which results in the weak trailing edge vortex of the leader but a strong trailing edge vortex of the follower. In the broken interaction, the leading edge vortex of the follower sheds into the wake together with the trailing edge vortex of the leader, and induces the trailing edge vortex of the follower to be broken into two parts. Which kind of vortex interaction occurs depends on the phase difference. The results obtained here may provide some light on understanding the coordinated behavior of biological collectives.
ISSN号:2469-990X
是否译文:否
发表时间:2019-05-17
合写作者:Lin, Xingjian,Zhang, Tongwei,Yang, Liming
通讯作者:吴杰