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Aerodynamics and dynamics of bluff bodies in presence of the moving surface boundary layer control.

机译:在存在运动表面边界层控制的情况下,钝体的空气动力学和动力学。

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摘要

Moving Surface Boundary-layer Control (MSBC) was applied to several two dimensional bluff bodies using a high speed rotating cylinder as a momentum injecting device. Flow past a symmetric airfoil; a D-section; as well as square and rectangular prisms, representing a family of shapes with progressively increasing bluffness were studied in presence of the MSBC. In the case of the airfoil, the leading edge was replaced by a rotating cylinder; while the cylindrical element formed the top and bottom upstream corners of the D-section, square and rectangular prisms;Extensive wind tunnel investigation gave data about the effect of system parameters like rate of the momentum injection, angle of attack and the surface condition of the cylinder on steady and fluctuating components of the pressure distribution around the body, vortex shedding frequency (Strouhal number), and the lift and drag coefficients. A gain in the Strouhal number with increasing momentum injection suggest a decrease in the effective bluffness of the body. A significant reduction in the drag (up to 80%) was observed for the prisms at a maximum rate of momentum injection, ;Effect of momentum injection in suppressing the vortex resonance and galloping type of instabilities were studied by mounting the bluff prism models on a dynamic test rig inside the wind tunnel test section. The measurement of amplitude frequency of the transverse oscillations over a range of wind speeds showed complete vibration suppression for momentum injection rate ;A numerical panel method was developed to simulate bluff body fluid dynamics in presence of the MSBC. The body is descretized into a large number of panels (100-150) with each panel comprising a continuous distribution of linearly varying vorticity and a constant source strength. A set of linear algebraic equations approximates the Fredholm type integral equation derived from ideal fluid flow assumption. The wake is modelled by upper and lower 'free vortex layers' emanating from the separation points on the body. Vorticity is allowed to be shed and dissipated as it is convected downstream along the panels on the 'free vortex layers'. An analytical expression relates the point vortex modelling a rotating cylinder to the rate of momentum injection. The panel method is capable of treating multielement configurations (e.g. a rotating cylinder and the truncated airfoil).;Flow visualization studies in a water channel were performed to obtain better physical insight into the MSBC process. Plexiglas models with rotating cylinders in conjunction with a fine suspension of polyvinyl chloride particles and slit lighting were used to visualize the streaklines. The still photographs and video movie recorded, rather dramatically, the effectiveness of the MSBC in suppressing separation and vortex shedding, making the flow approach the potential character. (Abstract shortened by UMI.)
机译:使用高速旋转圆柱体作为动量注入装置,将移动表面边界层控制(MSBC)应用于多个二维钝体。流过对称的机翼; D型截面;在存在MSBC的情况下,还研究了代表一系列形状并逐渐增加虚张声势的方形和矩形棱柱。在机翼的情况下,前缘被旋转的圆柱体所替代;圆柱元件形成了D型截面的顶部和底部上游角,正方形和矩形棱柱;广泛的风洞研究提供了有关系统参数效果的数据,例如动量注入率,迎角和表面条件。圆柱体上稳定的和波动的组件周围的压力分布,涡流脱落频率(斯托洛哈尔数)以及升力和阻力系数。随着动量注入的增加,斯特劳哈尔数的增加表明身体的有效虚张声势降低。在最大动量注入速率下,观察到棱镜的阻力显着降低(高达80%);通过将钝角棱镜模型安装在A上,研究了动量注入对抑制涡旋共振和驰gall型不稳定性的影响。风洞测试区内部的动态测试台。测量风速范围内横向振荡的振幅频率显示出完全抑制了动量注入速率的振动;开发了一种数值面板方法来模拟在MSBC存在下的钝体流体动力学。主体被破碎成大量的面板(100-150),每个面板包括线性分布的涡度和恒定的源强度的连续分布。一组线性代数方程组近似于从理想流体流量假设得出的Fredholm型积分方程。尾流是通过从身体上的分离点发出的上下“自由涡流层”来建模的。当涡流沿着“自由涡流层”上的面板向下游对流时,允许涡流散发和消散。一个解析表达式将对旋转圆柱体进行点涡建模与动量注入速率相关联。面板方法能够处理多种元素的构造(例如旋转的圆柱体和截短的机翼).;在水通道中进行流动可视化研究,以更好地了解MSBC过程。使用带有旋转圆柱体的Plexiglas模型,聚氯乙烯颗粒的精细悬浮液和狭缝照明来可视化条纹。静态照片和视频电影相当生动地记录了MSBC在抑制分离和涡旋脱落方面的有效性,使流动接近潜在的特征。 (摘要由UMI缩短。)

著录项

  • 作者

    Munshi, Sandeep R.;

  • 作者单位

    The University of British Columbia (Canada).;

  • 授予单位 The University of British Columbia (Canada).;
  • 学科 Engineering Aerospace.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 273 p.
  • 总页数 273
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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