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A NUMERICAL INVESTIGATION OF HYDRODYNAMIC INSTABILITY OF A SHEAR FLOW IN A THERMALLY UNSTABLE FLUID LAYER

机译:热不稳定流体层内剪切流动力失稳的数值研究。

摘要

The stability characteristics of a shear flow in an unstable stratified fluid layer is investigated based upon a finite difference approximation of the linearized Boussinesq equation system. The feasibility of numerical calculation is tested with the aid of the convection theory established by Rayleigh which yields the exact solution. Since the result obtained is satisfactory, the procedure is applied to the thermal convection in a Couette flow. It is found from the calculation that constant shear has the effect which suppresses development of the thermal convection. This effect of shear is striking for a convection cell of short wave length and decreases as a wave length of the convection cell increases. The convection cell which is long in the direction perpendicular to the basic flow suffers severely the prohibitive effect of the shear, while this effect decreases as the convection cell becomes longer in the direction parallel to the basic flow.
机译:基于线性化的Boussinesq方程组的有限差分近似,研究了不稳定分层流体层中剪切流的稳定性特征。借助于瑞利建立的对流理论测试了数值计算的可行性,得出了精确的解。由于获得的结果令人满意,因此将该过程应用于库埃特流中的热对流。从计算中发现,恒定剪切具有抑制热对流发展的作用。对于短波长的对流单元,剪切的影响是惊人的,并且随着对流单元的波长的增加而减小。在垂直于基本流的方向上较长的对流室严重受到剪切力的抑制作用,而随着对流室在平行于基本流的方向上变长,该影响减小。

著录项

  • 作者

    ASAI Tomio; NAKASUJI Isao;

  • 作者单位
  • 年度 1968
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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