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Fluid-structure interaction of a rolling restrained body of revolution at high angles of attack

机译:轧制挤压体在高角度的旋转体内的流体结构相互作用

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摘要

The current work investigates numerically rolling instabilities of a free-to-roll slender rigid-body of revolution placed in a wind tunnel at a high angle of attack. The resistance to the roll moment is represented by a linear torsion spring and equivalent linear damping representing friction in the bearings of a simulated wind tunnel model. The body is subjected to a three-dimensional, compressible, laminar flow. The full Navier-Stokes equations are solved using the second-order implicit finite difference Beam-Warming scheme, adapted to a curvilinear coordinate system, whereas the coupled structural second order equation of motion for roll is solved by a fourth-order Runge-Kutta method. The body consists of a 3.5-diameter tangent ogive forebody with a 7.0-diameter long cylindrical afterbody extending aft of the nose-body junction to x/D = 10.5. We describe in detail the investigation of three angles of attack 20 degrees, 40 degrees, and 65 degrees, at a Reynolds number of 30 000 (based on body diameter) and a Mach number of 0.2. Three distinct configurations are investigated as follows: a fixed body, a free-to-roll body with a weak torsion spring, and a free-to-roll body with a strong torsion spring. For each angle of attack the free-to-roll configuration portrays a distinct and different behavior pattern, including bi-stable limit-cycle oscillations. The bifurcation structure incorporates both large and small amplitude periodic roll oscillations where the latter lose their periodicity with increasing stiffness of the restraining spring culminating with distinct quasiperiodic oscillations. We note that removal of an applied upstream disturbance for a restrained body does not change the magnitude or complexity of the oscillations or of the flow patterns along the body. Depending on structure characteristics and flow conditions even a small rolling moment coefficient at the relatively low angle of attack of 20 degrees may lead to large amplitude resonant roll oscillations. Published by AIP Publishing.
机译:目前的工作调查了在高攻角的风洞中放置在风洞中的自由卷细长刚性的数值滚动稳定性。对卷筒矩的电阻由表示在模拟风洞模型的轴承中的摩擦的线性扭转弹簧和等效线性阻尼。主体经受三维,可压缩的层流。使用适用于曲线坐标系的二阶隐式有限差分光束加热方案来解决完整的Navier-Stokes方程,而卷曲的耦合结构二阶方程由四阶runge-kutta方法解决。身体由3.5直径的切线切线,具有7.0直径的长圆柱形,在鼻体结的后末端延伸到X / D = 10.5。我们详细描述了对20度,40度和65度的三个角度的调查,在雷诺数为30 000(基于体直径)和0.2的马赫数。调查三种不同的配置如下:固定体,带有弱扭转弹簧的自由滚动体,以及具有强大扭转弹簧的自由卷体。对于每个攻击角度,自由滚动配置描绘了一个不同的不同的行为模式,包括双稳定的极限循环振荡。分叉结构包括大型和小幅度周期辊振荡,其中后者失去了它们的周期性,随着抑制弹簧的刚度升高,这些脉冲率较高,这些脉冲具有不同的季铵周期性振荡。我们注意,去除限制体的应用上游扰动不会改变振荡或沿着身体的流动模式的大小或复杂性。取决于结构特性和流动条件,即使在20度的相对低的攻角处的小滚动力矩系数也可能导致大的幅度谐振辊振荡。通过AIP发布发布。

著录项

  • 来源
    《Physics of fluids》 |2017年第3期|共13页
  • 作者

    Degani D.; Ishay M.; Gottlieb O.;

  • 作者单位

    Technion Israel Inst Technol Dept Mech Engn IL-32000 Haifa Israel;

    Technion Israel Inst Technol Dept Mech Engn IL-32000 Haifa Israel;

    Technion Israel Inst Technol Dept Mech Engn IL-32000 Haifa Israel;

  • 收录信息
  • 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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