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Natural transition in natural convection boundary layers

机译:自然对流边界层的自然过渡

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The 'natural transition' of a natural convection boundary layer adjacent to an isothermally heated vertical surface is investigated by means of three-dimensional direct numerical simulation (DNS). In order to trigger 'natural transition' numerically, spatially and temporally random perturbations are introduced into the upstream boundary layer. The propagation of the random perturbations in the streamwise direction is observed. It is found that there exist two competing wavenumbers of spanwise vortical structures, one large and the other small. The large wavenumber dominates in the upstream boundary layer, whereas the small wavenumber dominates in the downstream boundary layer. The streamwise evolution of the mean (time-averaged) streamwise vorticity observed at planes perpendicular to the heated surface in general reveals two- and three-layer longitudinal roll structures. Nonlinear processes in a transitioning natural convection boundary layer are also analysed using Bicoherence method. The transition route and mechanism are discussed based on the power spectra and Bicoherence spectra of the temperature time series obtained in the boundary layer. A spectrum filling process during the 'natural transition' to turbulence is also observed, which is qualitatively similar to that observed in Blasius boundary layers.
机译:通过三维直接数值模拟(DNS)研究了与等温加热的垂直表面相邻的自然对流边界层的“自然转变”。为了从数字上触发“自然过渡”,将空间和时间随机扰动引入上游边界层。观察到随机扰动沿流向的传播。发现在翼展方向涡旋结构中存在两个竞争波数,一个大而另一个小。大波数在上游边界层占主导地位,而小波数在下游边界层占主导地位。在垂直于加热表面的平面上观察到的平均(时间平均)流向涡流的流向演化通常揭示了两层和三层纵向辊结构。还使用Bicoherence方法分析了过渡自然对流边界层中的非线性过程。基于边界层中获得的温度时间序列的功率谱和双相干谱,讨论了转变路径和机理。还观察到了从“自然过渡”到湍流的光谱填充过程,该过程在质量上与在Blasius边界层中观察到的相似。

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