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首页> 外文期刊>International Journal of Heat and Mass Transfer >Laminar stability and heat transport in high aspect ratio planar confined impinging flows
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Laminar stability and heat transport in high aspect ratio planar confined impinging flows

机译:高长宽比平面有限撞击流中的层流稳定性和热传递

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We consider two-dimensional flow and heat transfer in a high aspect ratio (e = 10) laminar confined impinging flow and show that unsteadiness occurs as a result of the bifurcation of the steady flow to an unstable branch of solutions. Our calculations reveal that the steady flow field displays hysteresis over a wide range of Reynolds numbers, Delta Re similar to 40, wherein the location of the reattachment point R-p of the primary separation vortex is multi-valued. Linear stability analysis of the bifurcation branches leads to the conclusion that the upper branch corresponding to the larger value of R-p is unstable. These steady flow bifurcation and stability results allow us to describe the details of the transition to unsteady flow previously observed for Re 130. We use the bifurcation results to quantify the associated hysteresis in steady wall jet heat transfer at the impinging surface. For two Reynolds numbers on either side of the bifurcation point corresponding to the jump from the stable to the unstable branch we compute the leading stability eigenmodes and the associated temperature modes. Due to the loss of flow stability on the upper branch the structure of the temperature modes is significantly different on the lower and upper branches. Consequently, perturbation Nusselt number profiles corresponding to the temperature modes on the two branches also show structural differences between these two Reynolds numbers. The comparison highlights the antisymmetric character of the temperature mode and perturbation Nusselt number corresponding to the unstable velocity mode on the upper branch, and the consequent asymmetry of the perturbed Nusselt number profile. (C) 2019 Elsevier Ltd. All rights reserved.
机译:我们考虑了二维流动和高纵横比(e = 10)的层状有限撞击流的传热,并表明由于稳定流分叉到溶液的不稳定分支而产生了不稳定。我们的计算表明,稳定流场在很大范围的雷诺数(类似于40的Reynolds数)上显示出滞后现象,其中一次分离涡旋的重新附着点R-p的位置是多值的。分叉支路的线性稳定性分析得出这样的结论:对应于较大R-p值的上支路是不稳定的。这些稳定流的分叉和稳定性结果使我们能够描述先前对于Re> 130观察到的向非恒定流过渡的细节。我们使用分叉结果来量化冲击表面稳定壁射流传热中的相关滞后。对于分叉点任一侧的两个雷诺数,对应于从稳定分支到不稳定分支的跃迁,我们计算了超前的稳定本征模式和相关的温度模式。由于上部支路的流动稳定性的损失,下部支路和上部支路的温度模式结构显着不同。因此,与两个分支上的温度模式相对应的摄动努塞尔数分布图也显示出这两个雷诺数之间的结构差异。比较突出了温度模式和扰动努塞尔特数的反对称特征,该扰动努塞尔特数对应于上部分支上的不稳定速度模式,以及由此引起的扰动的努塞尔特数分布图的不对称性。 (C)2019 Elsevier Ltd.保留所有权利。

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