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首页> 外文期刊>International Journal of Heat and Mass Transfer >Prandtl number scaling of the unsteady natural convection boundary layer adjacent to a vertical flat plate for Pr > 1 subject to ramp surface heat flux
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Prandtl number scaling of the unsteady natural convection boundary layer adjacent to a vertical flat plate for Pr > 1 subject to ramp surface heat flux

机译:Pr> 1的非稳态自然对流边界层与垂直平板相邻的Prandtl尺度缩放受表面热通量的影响

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摘要

It is found in the literature that the existing scaling results for the boundary layer thickness, velocity and steady state time for the natural convection flow over an evenly heated plate provide a very poor predic tion of the Prandtl number dependency of the flow. However, those scalings provide a good prediction of two other governing parameters' dependency, the Rayleigh number and the aspect ratio. Therefore, an improved scaling analysis using a triple-layer integral approach and direct numerical simulations have been performed for the natural convection boundary layer along a semi-infinite flat plate with uniform surface heat flux. This heat flux is a ramp function of time, where the temperature gradient on the surface increases with time up to some specific time and then remains constant. The growth of the boundary layer strongly depends on the ramp time. If the ramp time is sufficiently long, the boundary layer reaches a quasi-steady mode before the growth of the temperature gradient is completed. In this mode, the ther mal boundary layer at first grows in thickness and then contracts with increasing time. However, if the ramp time is sufficiently short, the boundary layer develops differently, but after the wall temperature gradient growth is completed, the boundary layer develops as though the startup had been instantaneous.
机译:在文献中发现,在均匀加热的板上自然对流流动的边界层厚度,速度和稳态时间的现有缩放结果不能很好地预测流动的普朗特数依赖性。但是,这些缩放比例可以很好地预测其他两个控制参数的依赖性,即瑞利数和纵横比。因此,已经对具有均匀表面热通量的沿半无限平板的自然对流边界层进行了使用三层积分方法的改进的比例分析和直接数值模拟。该热通量是时间的斜率函数,其中表面上的温度梯度直到某个特定时间都随时间增加,然后保持恒定。边界层的增长在很大程度上取决于斜坡时间。如果斜坡时间足够长,则边界层会在温度梯度的增长完成之前达到准稳态模式。在这种模式下,热边界层首先变厚,然后随着时间的增加而收缩。但是,如果斜坡时间足够短,则边界层会以不同的方式发展,但是在壁温梯度增长完成之后,边界层会像启动是瞬时启动一样发展。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer 》 |2012年第24期| p.7046-7055| 共10页
  • 作者单位

    School of Chemistry, Physics & Mechanical Engineering, Queensland University of Technology, CPO Box 2434, Brisbane QLD 4001, Australia;

    School of Chemistry, Physics & Mechanical Engineering, Queensland University of Technology, CPO Box 2434, Brisbane QLD 4001, Australia;

    School of Chemistry, Physics & Mechanical Engineering, Queensland University of Technology, CPO Box 2434, Brisbane QLD 4001, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    boundary layer; vertical plate; ramp heat flux; prandtl number;

    机译:边界层;垂直板斜坡热通量;普朗特数;

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