覆盖多孔介质的圆柱减阻特性和机理研究
作者:
作者单位:

1.西华大学航空航天学院,成都 610039;2.西华大学能源与动力工程学院,成都 610039

作者简介:

通讯作者:

杜海,男,副教授,E-mail: duhai2017@163.com。

中图分类号:

O355

基金项目:

国家自然基金青年科学基金(51806181);2020年中央引导地方科技发展专项资金(2020ZYD050);航空发动机气动热力国防科技重点实验室开放基金(6142702190102)。


Drag Reduction Characteristics and Mechanism of Cylinder Covered with Porous Medium
Author:
Affiliation:

1.School of Aeronautics and Astronautics, Ministry of Education, Xihua University, Chengdu 610039, China;2.School of Energy and Power Engineering, Xihua University, Chengdu 610039, China

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    摘要:

    多孔材料由于其独特的孔隙结构,可用于声学降噪以及流动控制领域。首先,采用大涡模拟(Large eddy simulation,LES)方法,开展了亚临界雷诺数条件下有、无覆盖多孔介质的圆柱绕流数值计算;其次,对比了两种不同工况的升、阻力系数大小,分析多孔介质的减阻控制效果;最后,结合气动力以及流场结构变化,揭示出多孔介质的减阻控制机理。研究结果表明:雷诺数为5.6×104,圆柱表面后缘处铺设位置角为270°的多孔介质时,减阻效果可达到8.53%。由于多孔介质表面具有渗透性,一方面可提高多孔-流体交界面处的滑移速度,稳定圆柱表面的分离剪切层,降低涡脱落频率;另一方面,流体穿过多孔介质可产生类似微射流的作用效果,增强分离区圆柱表面的压力,降低圆柱上下游的压力差,从而显著减小圆柱表面的总阻力。

    Abstract:

    Due to porous materials have unique pore structure, it can be used in the field of acoustic noise reduction and flow control. Firstly, the large eddy simulation (LES) method is used to simulate the flow around a circular cylinder with or without porous medium at subcritical Reynolds number. Secondly, the lift and drag coefficients under two different working conditions are compared, and the drag reduction control effect of porous medium is analyzed. Finally, the drag reduction control mechanism of porous medium is revealed by combining aerodynamic force and flow field structure changes. The results show that at the Reynolds number of 5.6×104, the maximum drag reduction rate is reached to 8.53% when the porous medium is laid at azimuth angle of 270° at the leeward side of the cylinder surface. On the one hand, due to the permeability of porous medium, it can imporve the slip velocity at the interface between porous medium and fluid, stabilize the separated shear layer on the cylinder surface, and reduce the vortex frequency. On the other hand, the fluid can pass through porous medium, then produce the effect similar to micro-jet, which enhance the pressure on the cylinder surface in the separation zone, and significantly reduce the pressure difference between the upstream and downstream of the cylinder and the total drag on the cylinder surface.

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引用本文

杜海,张琴林,何玲艳,李奇轩.覆盖多孔介质的圆柱减阻特性和机理研究[J].南京航空航天大学学报,2022,54(4):611-622

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  • 收稿日期:2021-08-06
  • 最后修改日期:2021-12-07
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  • 在线发布日期: 2023-02-22
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