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An experimental investigation of spanwise vortices interacting with solid and free surfaces.

机译:跨展旋涡与固体和自由表面相互作用的实验研究。

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摘要

Coherent vortices are generated in flow fields due to flow interaction with sharp solid surfaces. Such vortices generate significant disturbances in the flow and affect its further development. In this dissertation attention is focused on the interaction of vortices with solid or free liquid/air surfaces. We examine vortices with their axis parallel or normal to the surface. Three main cases were examined: the interaction of a vortex pair propagating towards a solid boundary, the interaction of spanwise vortices in a turbulent boundary layer, and finally the interaction of spanwise vortices with a flat-plate wake and a free liquid surface. These problems hold significance in several engineering applications, including investigations into trailing wing tip vortices and their interaction with the ground, vortical effects on the development of turbulent boundary layers and free surface signatures and their detection in ship/submarine wakes. Data are acquired with a laser Doppler velocimetry system (LDV) and with Particle-Image Velocimetry (PIV), using a high-speed digital video camera. The LDV system measures two components of velocity along appropriately chosen planes. Grids of data were acquired for different pitch rates of a disturbing flap that generates vortices. Phase-averaged vorticity and turbulence level contours are estimated and presented. It is found that vortices with diameter the order of the boundary layer quickly diffuse and disappear while their turbulent kinetic energy spreads uniformly across the entire boundary layer.; Larger vortices have a considerably longer life span and in turn feed more vorticity into the boundary layer. Trailing edge vortices are generated in a water tunnel by sharp hinged motions of a flap. These vortices are allowed to reconnect with the free surface and mix with a turbulent free shear layer. The flow is conditionally sampled via frame grabbing of free surface shadowgraphs. It is found that the vortex core bends away from the plane of the shear layer. Moreover, contrary to earlier findings, organized velocity fluctuations decrease as the free surface is approached.
机译:由于与尖锐的固体表面的流动相互作用,在流场中产生了相干涡旋。这种涡流在流动中产生明显的扰动并影响其进一步发展。在本文中,注意力集中在涡旋与固体或自由液体/空气表面的相互作用上。我们检查涡流的轴平行于或垂直于表面。研究了三种主要情况:涡旋对向固体边界传播,涡流在湍流边界层中相互作用,最后是涡旋与平板尾流和自由液面相互作用。这些问题在一些工程应用中具有重要意义,包括对尾翼尖端涡旋及其与地面的相互作用进行研究,对湍流边界层和自由表面信号的发展产生涡旋影响以及在船舶/潜艇尾流中进行探测。使用高速数字摄像机,通过激光多普勒测速系统(LDV)和粒子图像测速仪(PIV)采集数据。 LDV系统沿适当选择的平面测量速度的两个分量。针对产生涡旋的扰动襟翼的不同俯仰速率获取数据网格。估计并给出了相位平均涡度和湍流等值线。发现直径为边界层顺序的涡旋迅速扩散并消失,而其湍动能则均匀地分布在整个边界层上。较大的涡流具有较长的寿命,从而将更多的涡流馈送到边界层。后缘涡流是通过襟翼的急剧铰接运动在水道中产生的。使这些涡旋与自由表面重新连接,并与湍流的自由剪切层混合。通过自由表面阴影图的帧抓取有条件地对流进行采样。发现涡旋芯弯曲离开剪切层的平面。而且,与早期发现相反,随着接近自由表面,有组织的速度波动减小。

著录项

  • 作者

    Donnelly, Martin J.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Aerospace.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天技术的研究与探索;机械、仪表工业;
  • 关键词

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