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Laminar natural convection in isosceles triangular enclosures heated from below and symmetrically cooled from above

机译:等腰三角形外壳中的层流自然对流从下方加热并从上方对称冷却

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A numerical study of natural convection in an isosceles triangular enclosure with a heated horizontal base and cooled upper walls is presented. Nearly every previous study conducted on this subject to date has assumed that the geometric plane of symmetry is also a plane of symmetry for the flow. This problem is re-examined over aspect ratios ranging from 0.2 to 1.0 and Grashof numbers from 10~3 to 10~5. It is found that a pitchfork bifurcation occurs at a critical Grashof number for each of the aspect ratios considered, above which the symmetric solutions are unstable to finite perturbatiosn whereas two steady mirror image solutions are stable. Resuolts are presented detailing the occurrence of the pitchfork bifurcatio in each of the aspect ratios considered and the resulting flow patterns are described. Local and mean heat transfer coefficients are presented, and discrepancies with previously published results in which a symmetric flow pattern is assumed are discussed.
机译:提出了一个等腰三角形外壳中自然对流的数值研究,该三角形外壳具有加热的水平底部和冷却的上壁。迄今为止,迄今为止几乎所有关于该主题的研究都假设几何对称面也是流体的对称面。在纵横比从0.2到1.0和Grashof数从10到3到10到5的范围内重新检查了此问题。对于所考虑的每个纵横比,发现在一个临界的Grashof数处会出现一个干草叉分叉,高于该比例时,对称解对有限微扰是不稳定的,而两个稳定的镜像解是稳定的。给出了详细描述在所考虑的每个纵横比中干草叉分叉的发生的结果,并描述了所得的流型。给出了局部传热系数和平均传热系数,并讨论了与先前发表的结果(假设采用对称流动模式)的差异。

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