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An experimental investigation of the interaction between convecting spanwise vortices and a turbulent boundary layer.

机译:对流展向涡旋与湍流边界层相互作用的实验研究。

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摘要

The interaction between convecting spanwise vortices and a flat plate turbulent boundary layer was studied experimentally. The results are relevant to the flow downstream of unsteady airfoils or spoilers. Vortices were generated with a rapidly pitched airfoil upstream of a test plate leading edge in a low-speed wind tunnel. By varying the height of the vortex generator the degree to which the vortices interacted with the test plate was controlled. Dynamic stall vortices of both positive and negative circulation were studied with Reynolds numbers (;The results focus on two distinct aspects of the flow, first is the decay and diffusion rates of the vortices. Only in the case where a negative circulation vortex impinges directly on the leading edge does surface interaction significantly increase the vortex decay/diffusion rate. The second aspect is the response of the turbulent boundary layer to the convecting vortices. Wall shear stress measurements show that the passage of a positive circulation vortex results in an increase in wall shear after a delay-time, while the negative circulation vortices result in a decrease in wall shear. An application of log-law scaling to the ensemble-averaged mean flow was found to produce a velocity scale which resembles one based on measured wall shear stress but is offset by a phase lag. The ratio of turbulent shear stress to the two-dimensional turbulent kinetic energy was generally not constant, although it did show a constant value across the boundary layer at different phases of the interaction.
机译:实验研究了对流旋涡与平板湍流边界层之间的相互作用。结果与不稳定翼型或扰流板下游的流动有关。在低速风洞中,在测试板前缘上游迅速倾斜的翼型产生涡流。通过改变涡旋发生器的高度,可以控制涡旋与测试板相互作用的程度。用雷诺数研究了正向和负向循环的动态失速旋涡(;结果集中在流动的两个不同方面,首先是旋涡的衰减和扩散速率。仅在负向循环旋涡直接撞击到涡旋的情况下前缘确实进行了表面相互作用,显着增加了涡旋的衰减/扩散速率;第二个方面是湍流边界层对对流涡旋的响应;壁面切应力测量表明,正循环涡旋的通过导致壁面增大。延迟时间后的剪切力,而负循环涡旋导致壁切力的减小,对数平均标度应用集合平均平均流产生的速度标度类似于基于测量的壁切应力的速度标度但被相位滞后所抵消湍流剪切应力与二维湍流动能之比通常不是恒定的t,尽管在交互的不同阶段跨边界层确实显示了恒定值。

著录项

  • 作者

    Macrorie, Michael.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Aerospace engineering.;Mechanical engineering.;Plasma physics.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 253 p.
  • 总页数 253
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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