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PIV measurements of the K-type transition in natural convection boundary layers

机译:自然对流边界层K型转换的PIV测量

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摘要

The K-type transition of a natural convection boundary layer of Ra = 9.8 x 10(9) is studied by PIV (Particle Image Velocimetry) measurements. To excite the transition, Tollmien-Schlitchting (TS) and oblique waves of the same frequency are introduced into the upstream boundary layer in the form of velocity perturbations. It is found that resonant interactions between the characteristic frequency of the natural convection boundary layer and the superimposed TS and oblique waves are present, which trigger the K-type transition of the boundary layer. The typical aligned Lambda-shaped flow structures characterising the K-type transition present in the transition of Blasius boundary layers are also observed in the present natural convection boundary layers. They occur when the primary instability grows to a certain extent. The appearance of the spanwise mode characterised by the aligned Lambda-shaped flow structures is found to be an 'abrupt' process, although the development of the three-dimensionality in the natural convection boundary layer is found to be a 'gradual' process. A peak in the typical profile of the Root-Mean-Square (RMS) of the amplitude of streamwise velocity is also noted around the transition point, beyond which distinct three-dimensional Lambda-shaped flow structures are observed. The transition point has been determined consistently using different approaches. A Bicoherence analysis suggests that the interaction between the external excitation frequency and the characteristic frequency of the boundary layer is responsible for the production of new harmonic frequencies and resonance groups. The NV measurements have been extended to a range of perturbation frequencies for the boundary layer, and the dependence of the K-type transition on the perturbation frequency is discussed.
机译:通过PIV(颗粒图像VELOCIMETRY)测量研究了RA = 9.8×10(9)的自然对流边界层的K型转变。为了激发转换,以速度扰动的形式引入相同频率的Tollmien-Schlitchting(TS)和倾斜波。结果发现,存在自然对流边界层和叠加TS和倾斜波的特征频率之间的谐振相互作用,其触发边界层的k型转变。在本自然对流边界层中还观察到表征存在于Blasius边界层的过渡中的K型转变的典型对准的λ形流动结​​构。当主要不稳定性在一定程度上增长时,它们会发生。发现由对齐的λ形流动结​​构的翼展模式的外观被发现是“突然”的过程,尽管发现自然对流边界层中的三维性的发展是“渐进”过程。在过渡点周围还注意到流速度幅度的幅度幅度的典型轮廓中的峰值,超出了该流动结构不同的三维λ形流动结​​构。过渡点已经一致地使用不同的方法确定。双轴脉分析表明,边界层的外部激励频率与特征频率之间的相互作用负责生产新的谐波频率和共振组。讨论了NV测量到边界层的一系列扰动频率,并且讨论了K型转变对扰动频率的依赖性。

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