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Three-Dimensional Instabilities of Natural Convection Flow in a Vertical Cylinder With Partially Heated Sidewall

机译:侧壁部分加热的垂直圆柱体中自然对流的三维不稳定性

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The three-dimensional axisymmetry-breaking instability of an axisymmetric convective flow in a vertical cylinder with a partially heated sidewall is studied numerically. The central part of the sidewall is maintained at constant temperature, while its upper and lower parts are thermally insulated. The dependence of the critical Grashof number on the cylinder aspect ratio (A =height/radius) is obtained for a fixed value of the Prandtl number, Pr =0.021, and fixed length of the heated central region, equal to the cylinder radius. Three different modes of the most dangerous three-dimensional perturbations, which replace each other with the variation of the aspect ratio, are found. Comparison with experiment shows a good agreement at the aspect ratio A =8 and 12, while at A =4 a significant disagreement is observed. Possible reasons for this disagreement are discussed. At A =4, the dependence of the critical Grashof number on the Prandtl number is studied in the range 0 < Pr < 0.05, to rule out the possibility that the disagreement is due to uncertainty in values of fluid properties. The similarities and differences of instabilities in the cylindrical and rectangular geometries are examined. The computations are carried out using two independent numerical approaches, which cross-validate each other.
机译:数值研究了侧壁部分受热的垂直圆柱体中轴对称对流的三维破坏对称性。侧壁的中央部分保持恒温,而侧壁的上部和下部是隔热的。对于普朗特数的固定值Pr = 0.021和加热的中心区域的固定长度(等于圆柱体半径),可以获得临界Grashof数与圆柱体长宽比(A =高/半径)的相关性。找到了三种最危险的三维扰动的不同模式,它们以高宽比的变化相互替代。与实验的比较表明,在纵横比A = 8和12时,一致性很好,而在A = 4时,观察到了明显的分歧。讨论了造成这种分歧的可能原因。在A = 4时,在0

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