首页> 外文会议>ASME Joint US-European Fluids Engineering Division summer meeting;FEDSM2010 >SINUOUS STREAK INSTABILITY AND BREAKDOWN IN A BLASIUS BOUNDARY LAYER
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SINUOUS STREAK INSTABILITY AND BREAKDOWN IN A BLASIUS BOUNDARY LAYER

机译:BLASIUS边界层中的严重条纹不稳定和崩溃

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A narrow low-speed streamwise streak is deliberately introduced into an otherwise extremely spanwise uniform Blasius boundary layer. The streak shares many of the characteristics of Klebanoff modes known to be responsible for bypass transition at moderate Free Stream Turbulence (FST) levels. However, for the low background disturbance level of the free stream (u/U < 0.05%J, the layer remains laminar to the end of the test section (Rx = 1.4 x 106J and there is no evidence of bursting or other phenomena associated with breakdown to turbulence. A harmonic disturbance is used to excite a sinuous form of instability, which grows over a considerable streamwise distance before breakdown of the streak occurs, which leads to the formation of a turbulent wedge. Detailed measurements show that new streaks are formed on either side during the breakdown process. The characteristics of the wedge are examined over a considerable streamwise distance. A similar mechanism appears to be responsible for the spanwise growth of the wedge since a span-wise succession of new streaks is observed in the early stages of its development.
机译:故意将狭窄的低速流向条纹引入否则沿翼展方向非常均匀的Blasius边界层中。该条纹具有Klebanoff模式的许多特征,这些特征已知是在中等自由流湍流(FST)级别导致旁路过渡的原因。但是,对于自由流的低本底干扰水平(u / U \ <0.05%J,该层保持层流到测试段的末端(Rx = 1.4 x 106J,并且没有破裂或其他相关现象的迹象)谐波扰动用于激发不稳定性的正弦形式的不稳定性,这种不稳定性会在条纹破裂之前在相当大的流向距离上增长,从而导致湍流楔形的形成,详细的测量结果表明形成了新的条纹在击穿过程的任一侧,在相当长的流向距离上检查楔子的特性,类似的机制似乎是楔子在翼展方向上增长的原因,因为在早期阶段就观察到了新条纹的翼展方向连续它的发展。

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