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The Unsteady Development of a Turbulent Wake Through a Downstream Low-Pressure Turbine Blade Passage

机译:通过下游低压涡轮叶片通道的湍流的不稳定发展

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This paper presents two-dimensional LDA measurements of the convection of a wake through a low-pressure turbine cascade. Previous studies have shown the wake convection to be kinematic, but have not provided details of the turbulent field. The spatial resolution of these measurements has facilitated the calculation of the production of turbulent kinetic energy, and this has revealed a mechanism for turbulence production as the wake convects through the blade row. The measured ensemble-averaged velocity field confirmed the previously reported kinematics of wake convection while the measurements of the turbulence quantities showed the wake fluid to be characterized by elevated levels of turbulent kinetic energy (TKE) and to have an anisotropic structure. Based on the measured mean and turbulence quantities, the production of turbulent kinetic energy was calculated. This highlighted a TKE production mechanism that resulted in increased levels of turbulence over the rear suction surface where boundary-layer transition occurs. The turbulence production mechanism within the blade row was also observed to produce more anisotropic turbulence. Production occurs when the principal stresses within the wake are aligned with the mean strains. This coincides with the maximum distortion of the wake within the blade passage and provides a mechanism for the production of turbulence outside of the boundary layer.
机译:本文介绍了通过低压涡轮叶栅进行尾流对流的二维LDA测量。先前的研究表明尾流对流是运动学上的,但没有提供湍流场的细节。这些测量值的空间分辨率促进了湍动能产生的计算,并且揭示了当尾流通过叶片对流对流时产生湍流的机制。测得的集合平均速度场证实了先前报道的尾流对流运动学,而湍流量的测量表明尾流流体的特征在于湍动能(TKE)的水平升高并且具有各向异性的结构。根据测得的平均值和湍流量,计算出湍动能的产生。这突显了一种TKE产生机制,该机制导致发生边界层过渡的后吸力表面上的湍流水平增加。还观察到叶片排内的湍流产生机理产生了更多的各向异性湍流。当尾流内的主应力与平均应变对齐时,就会发生生产。这与叶片通道内尾流的最大变形相吻合,并提供了在边界层外部产生湍流的机制。

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