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MULTI-PLANE CHARACTERIZATION OF THE TURBULENT BOUNDARY LAYER

机译:湍流边界层的多平面特征

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摘要

The boundary layers are known for their significance in several engineering systems. In particular, the inner region of the turbulent boundary layer has been shown to play a significant role in controlling the dynamics of turbulent structures that are responsible for the transport of mass, heat and momentum. While substantial work has been done in the past to characterize the structure of turbulent flow in this region, the characterization of the three-dimensional turbulent flow structure is limited. This study reports a multi-plane particle image velocimetry (PIV) approach to investigate three-dimensional dynamics of the turbulent boundary layer in the near-wall region. Planar PIV is used to capture two-dimensional fluid velocity fields in several planes with respect to the fluid flow direction. These results are used to describe three-dimensional turbulent events given by key quantities such as mean and turbulent velocities and turbulent kinetic energy.
机译:边界层在几个工程系统中的重要性是众所周知的。特别地,已显示出湍流边界层的内部区域在控制负责质量,热量和动量传输的湍流结构的动力学中起着重要作用。尽管过去已经进行了大量工作来表征该区域中的湍流结构,但是三维湍流结构的表征却受到限制。这项研究报告了一种多平面粒子图像测速(PIV)方法,以研究近壁区域中湍流边界层的三维动力学。平面PIV用于捕获相对于流体流动方向的几个平面中的二维流体速度场。这些结果用于描述由关键量(例如均值和湍流速度以及湍动能)给出的三维湍流事件。

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