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Numerical simulation of forced circular jets: Effect of flapping perturbation

机译:强制圆形喷气机的数值模拟:拍打扰动的影响

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摘要

The forcing in round jets has large scale effects on the development and characteristics of the flow field such as the entrainment, spreading rate, and mixing of the flow. In the present work, an active control technique called the large scale flapping perturbation is studied for influencing the evolution of the circular jet. Direct numerical simulation of incompressible, spatially developing circular jets at a Reynolds number of 1000 is reported. The flow field has been explored by solving three-dimensional unsteady Navier-Stokes equations using second order spatial and temporal discretization. Among the considered variables (apart from the excitation amplitude), the perturbation frequency is the most important controlling parameter. For a circular jet at an excitation frequency of 0.1, there is evidence of a Y-shaped bifurcation on the bifurcating plane, while no bifurcation is observed on the other orthogonal plane. With an increase in the excitation frequency to 0.3, the circular jet issued from the orifice divides itself into three parts and a psi-shaped bifurcation is obtained on the bifurcating plane. The development of the psi-shaped bifurcation may be due to the interaction of the consecutive vortex ring and the formation of elongated vortices. However, with further increase in the excitation frequency, the spreading rate becomes weaker with the evidence of formation of the psi-shaped bifurcation. Published under license by AIP Publishing.
机译:圆形喷气机的强制对流场的开发和特性进行了大规模影响,例如夹带,扩散速率和流动的混合。在本作工作中,研究了一种主动控制技术,用于影响圆形射流的进化。报道了不可压缩的直接数值模拟,在雷诺数为1000的空间开发的圆形喷射。通过使用二阶空间和时间离散化来求解三维非稳态Navier-Stokes方程,探索了流场。在考虑的变量(除了激励幅度)中,扰动频率是最重要的控制参数。对于振动频率为0.1的圆形射流,存在在分叉平面上的Y形分叉的证据,同时在另一个正交平面上没有观察到分叉。随着激发频率的增加至0.3,从孔口发出的圆形射流将其自身划分为三个部分,并且在分叉平面上获得PSI形分叉。 Psi形分叉的发展可能是由于连续涡旋环的相互作用和细长涡流的形成。然而,随着激发频率的进一步增加,扩散速率与PSI形分叉形成的识别率变弱。通过AIP发布在许可证下发布。

著录项

  • 来源
    《Physics of fluids》 |2019年第8期|共20页
  • 作者

    Gohil Trushar B.; Saha Arun K.;

  • 作者单位

    Indian Inst Technol Kanpur Dept Mech Engn Kanpur 208016 Uttar Pradesh India;

    Indian Inst Technol Kanpur Dept Mech Engn Kanpur 208016 Uttar Pradesh India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

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