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Application of the wavelet transform in the laminar turbulent transition for a flow in a mixed convection phenomenon

机译:小波变换在混合对流现象的层流湍流过渡中的应用

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The aim of this paper is to show the effect of secondary flows caused by natural convection on the laminar-turbulent hydrodynamic transition. It is not a question of measuring a critical threshold value of Reynolds number of transition but only to estimate the degree of turbulence in the transition regime, i.e. weak turbulence in the case of superposition (mixed convection) or not (forced convection) of secondary flows on the forced flow. This is possible thanks to the application of the wavelet transform. The calculation of the Holder exponent, associated with the maximum value of the singularity spectrum for two configurations, vertical (forced convection) and horizontal (mixed convection) allows the degree of turbulence to be measured in both cases. The variation of the Holder exponent versus the Reynolds number has enabled it to the shown that the secondary flows stabilise the main flow and stifle the beginnings of the turbulence during the regime of transition to turbulence; these kinds of results have also been shown in literature. Generally, large-sized secondary flows (for example Dean's flows) stabilise the turbulence. Our work confirms this, through an experiment carried out in identical conditions for mixed convection (horizontal flow) and forced convection (vertical flow).
机译:本文的目的是显示自然对流引起的二次流动对层流-湍流流体动力过渡的影响。测量过渡雷诺数的临界阈值不是问题,而仅仅是估算过渡状态下的湍流度,即在二次流叠加(混合对流)或非二次(强制对流)情况下的湍流较弱。在强制流动。这要归功于小波变换的应用。 Holder指数的计算与两种配置(垂直(强制对流)和水平(混合对流)的奇异谱的最大值相关联)可以在两种情况下测量湍流度。 Holder指数相对于雷诺数的变化使它能够表明,在过渡到湍流的过程中,次要流稳定了主流并扼杀了湍流的开始。这些结果也已在文献中显示。通常,大的二次流(例如Dean的流)稳定了湍流。我们的工作通过在相同条件下对混合对流(水平流)和强制对流(垂直流)进行的实验证实了这一点。

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