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首页> 外文期刊>Physical review, E >Propulsion performance of a two-dimensional flapping airfoil with wake map and dynamic mode decomposition analysis
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Propulsion performance of a two-dimensional flapping airfoil with wake map and dynamic mode decomposition analysis

机译:具有唤醒地图和动态模式分解分析的二维拍打翼型的推进性能

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摘要

In the present study, we use the dynamic mesh method based on the radial basis function interpolation for the two-dimensional simulation of harmonically oscillating NACA0015 airfoil. Under various flapping frequencies, heaving and pitching amplitudes, the observed wake flows can be divided into seven types, including the Bénardvon Kármán (BvK) vortex street, the reversed BvK (RBvK) vortex street, the 1P wake, the mP wake, the 2P + mS wake, the 2S + mS wake, and the mS wake, where m is around 4 and xS + yP signifies x single vortices and y vortex pairs shedding per oscillation period. Then we have constructed two phase diagrams of the wake types in terms of the flapping frequency, heaving and pitching amplitudes. Importantly, we have combined the propulsion performance of the flapping airfoil with the wake map and found that α( T/4 ), the angle of attack at t = T/4, can determine the wake type: negative value corresponding to drag-dominated wakes, while positive value corresponding to thrust dominated flow wakes. With the increase of α( T/4 ), the wake transforms from the mP to 2S + mS then to RBvK and eventually to 1P wake. Furthermore, the coherent structure analysis and spectral analysis are conducted for all the types of wakes by using dynamic mode decomposition. And there is a positive correlation between the strengths of vortices shedding at i times flapping frequency and the modulus of the ith dynamic mode decomposition mode, which can further reveal the differences among different types of wakes.
机译:在本研究中,我们使用基于径向基函数插值的动态网格方法,用于谐振谐振的二维模拟。在各种扑振频率下,观察到的唤醒流动可以分为七种类型,包括BénardvonKármán(BVK)Vortex Street,Reversed BVK(RBVK)Vortex Street,1P唤醒,MP唤醒,2P + MS唤醒,2S + MS唤醒以及MS唤醒,其中M约为4,XS + YP表示每个振荡周期的X单涡流和Y涡旋对脱落。然后我们在拍打频率,高调和俯仰幅度方面构建了唤醒类型的两个相图。重要的是,我们已经将拍摄翼型的推进性能与唤醒图组合起来,发现α(t / 4),t = t / 4处的攻角可以确定唤醒类型:对应于拖动的负值醒来,虽然对应于推力主导的流量的正值。随着α(t / 4)的增加,唤醒从MP到2S + MS转换为RBVK,最终唤醒。此外,通过使用动态模式分解来对所有类型的唤醒进行相干结构分析和光谱分析。并且在I次拍打频率和动态模式分解模式的模量之间存在涡流的强度之间的正相关性,这可以进一步揭示不同类型唤醒之间的差异。

著录项

  • 来源
    《Physical review, E》 |2019年第2期|共16页
  • 作者单位

    Center for Engineering and Scientific Computation and School of Aeronautics and Astronautics Zhejiang University Zhejiang 310027 China;

    Center for Engineering and Scientific Computation and School of Aeronautics and Astronautics Zhejiang University Zhejiang 310027 China;

    Center for Engineering and Scientific Computation and School of Aeronautics and Astronautics Zhejiang University Zhejiang 310027 China;

    Center for Engineering and Scientific Computation and School of Aeronautics and Astronautics Zhejiang University Zhejiang 310027 China;

    Center for Engineering and Scientific Computation and School of Aeronautics and Astronautics Zhejiang University Zhejiang 310027 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 统计物理学;等离子体物理学;流体力学;
  • 关键词

    Propulsion; two-dimensional; dynamic;

    机译:推进;二维;动态;

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