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Intermittent Behavior of the Separated Boundary Layer along the Suction Surface of a Low Pressure Turbine Blade under Periodic Unsteady Flow Conditions

机译:在周期性非定常流动条件下,低压涡轮机叶片抽吸表面的间隔行为

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The paper experimentally and theoretically studies the effects of periodic unsteady wake flow and aerodynamic characteristics on boundary layer development, separation and re-attachment along the suction surface of a low pressure turbine blade. The experiments were carried out at Reynolds number of 110,000 (based on suction surface length and exit velocity). For one steady and two different unsteady inlet flow conditions with the corresponding passing frequencies, intermittency behavior were experimentally and theoretically investigated. The current investigation attempts to extend the intermittency unsteady boundary layer transition model developed in previously to the LPT cases, where separation occurs on the suction surface at a low Reynolds number. The results of the unsteady boundary layer measurements and the intermittency analysis were presented in the ensemble-averaged, and contour plot forms. The analysis of the boundary layer experimental data with the flow separation, confirms the universal character of the relative intermittency function which is described by a Gausssian function.
机译:本文在实验和理论上研究了周期性不稳定的唤醒流动和空气动力学特性对边界层开发,分离和重新连接的周期性不稳定的唤醒流动和空气动力学特性的影响。该实验在雷诺数110,000(基于抽吸表面长度和出口速度)进行。对于具有相应通过频率的一个稳定和两个不同的非定常的入口流动条件,实验和理论上研究了间歇性行为。目前的调查试图扩展以前在LPT情况下开发的间歇性不稳定边界层转换模型,其中在低雷诺数的吸入表面上发生分离。在集合平均和轮廓图形中,提出了不稳定边界层测量和间歇性分析的结果。利用流动分离分析边界层实验数据,确认了高斯函数描述的相对间歇函数的通用特征。

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