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Optimal Disturbances in Boundary Layers Subject to Streamwise Pressure Gradient

机译:流向压力梯度作用下边界层的最佳扰动

摘要

An analysis of the non-modal growth of perturbations in a boundary layer in the presence of a streamwise pressure gradient is presented. The analysis is based on PSE equations for an incompressible fluid. Examples with Falkner- Skan profiles indicate that a favorable pressure gradient decreases the non-modal growth while an unfavorable pressure gradient leads to an increase of the amplification. It is suggested that the transient growth mechanism be utilized to choose optimal parameters of tripping elements on a low-pressure turbine (LPT) airfoil. As an example, a boundary-layer flow with a streamwise pressure gradient corresponding to the pressure distribution over a LPT airfoil is considered. It is shown that there is an optimal spacing of the tripping elements and that the transient growth effect depends on the starting point. The amplification is found to be small at the LPT s very low Reynolds numbers, but there is a possibility to enhance the transient energy growth by means of wall cooling.
机译:提出了在存在流向压力梯度的情况下,边界层扰动的非模态增长分析。该分析基于不可压缩流体的PSE方程。具有Falkner-Skan轮廓的示例表明,有利的压力梯度会降低非模式增长,而不利的压力梯度会导致扩增增加。建议使用瞬态增长机制来选择低压涡轮(LPT)机翼上的跳闸元件的最佳参数。作为示例,考虑具有与LPT翼型上的压力分布相对应的沿流方向的压力梯度的边界层流。结果表明,跳闸元件之间存在最佳间距,瞬态增长效应取决于起点。发现在LPT的雷诺数很低时,放大率很小,但有可能通过壁冷来增强瞬态能量的增长。

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