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A computational study of vortex rings interacting with a constant-temperature heated wall

机译:涡流环与恒温加热壁相互作用的计算研究

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摘要

This study is motivated by understanding the connections between the vortical structures in impinging jets and the wall heat transfer. Of particular interest are: (1) examining how the stage of evolution of vortex pairing in the jet might influence the wall heat transfer, and (2) establishing correlations between the vortex characteristics and the Nusselt number (Nu) distribution. To this end, CFD simulations are conducted of three simplified model problems involving the interaction of isolated axisymmetric vortex rings with a flat, constant-temperature, heated wall. The cases represent three scenarios of vortex-wall interaction: before (Case I), during (Case II) and after (Case III) pairing. The results show that when two vortices concurrently interact with the wall and undergo pairing (Case II), a significant instantaneous enhancement in Nu is attained in comparison to that associated with a single vortex interacting with the wall (Cases I and III). However, Case II also leads to the largest subsequent decay in Nu enhancement due to the formation of a particularly strong secondary vortex. In all cases, a deterioration in Nu, relative to unsteady diffusion, is observed simultaneously with the enhancement. Notwithstanding this deterioration, the net effect of vortex-wall interaction on the heat transfer remains positive with Case II producing the highest heat transfer rate. An analysis is conducted to establish the connection between the instantaneous maximum and minimum Nu, the circulation and the radial and the wall-normal location of the core-centers of the vortices, the thermal boundary layer thickness, the boundary layer separation location and the wall shear stress.
机译:这项研究是通过了解撞击射流中的旋涡结构与壁传热之间的联系而进行的。特别令人感兴趣的是:(1)检查射流中涡流对的演化阶段如何影响壁的传热,以及(2)在涡流特性与Nusselt数(Nu)分布之间建立相关性。为此,对三个简化的模型问题进行了CFD仿真,涉及孤立的轴对称涡流环与平坦的恒温加热壁之间的相互作用。这些案例代表了涡旋壁相互作用的三种情况:配对之前(案例I),配对期间(案例II)和之后(案例III)。结果表明,当两个涡旋同时与壁相互作用并进行配对时(情况II),与单个涡旋与壁相互作用(情形I和III)相比,Nu的瞬时增强显着。然而,由于形成了特别强的次级涡旋,案例II也导致了Nu增强的最大后续衰减。在所有情况下,观察到Nu相对于不稳定扩散的劣化,同时增强。尽管这种恶化,涡壁相互作用对传热的净效应仍然是积极的,案例II产生了最高的传热速率。进行分析以建立瞬时最大和最小Nu值,循环以及旋涡核心中心的径向和壁法向位置,热边界层厚度,边界层分离位置和壁之间的联系剪应力。

著录项

  • 来源
    《International Journal of Heat and Fluid Flow》 |2019年第4期|197-214|共18页
  • 作者单位

    Michigan State Univ, Dept Mech Engn, E Lansing, MI 48824 USA;

    Michigan State Univ, Dept Mech Engn, E Lansing, MI 48824 USA;

  • 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

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