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Three-dimensional numerical study of jet-in-crossflow characteristics at low Reynolds number

机译:低雷诺数射流横流特性的三维数值研究

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摘要

A numerical study of a square jet in a cross flow is carried out at a Reynolds number of 100. The flow field and heat transfer characteristic downstream of the jet have been explored by solving three-dimensional unsteady Navier-Stokes equations and energy equation using higher order spatial and temporal discretization. The projection of vortical structure on a plane is seen to give the component of vortex normal to the plane. Four combinations of velocity profile namely (1) uniform crossflow and uniform jet, (2) laminar boundary layer crossflow and uniform jet, (3) uniform crossflow and parabolic jet profile, and (4) laminar boundary layer crossflow and parabolic jet are compared at same phase to see their effect on the flow field and heat transfer characteristic. All the four cases are seen to exhibit unsteadiness but the jet with parabolic profile is seen to show stronger unsteadiness. The instantaneous vortical structures of all the cases at the same phase show that the structures are more complex for the jet with parabolic velocity profile. The temperature field is seen to be correlated with the vortical structures. Comparison of the time averaged flow field reveals that the jet penetration is the highest for the jet having parabolic profile and boundary layer crossflow. The adiabatic effectiveness is observed to be more for the jet with uniform velocity profile and uniform crossflow and was least for the jet with parabolic velocity profile and boundary layer crossflow.
机译:在雷诺数为100的情况下,对横流中的方形射流进行了数值研究。通过求解三维非稳态Navier-Stokes方程和能量方程,使用更高的方程组,探索了射流下游的流场和传热特性。时空离散化。可以看到涡旋结构在平面上的投影使涡旋分量垂直于该平面。比较了速度分布的四种组合,即(1)均匀横流和均匀射流,(2)层流边界层横流和均匀射流,(3)均匀横流和抛物线射流分布以及(4)层流边界层横流和抛物线射流。观察它们对流场和传热特性的影响。所有这四种情况都显示出不稳定,但是具有抛物线轮廓的射流显示出更强的不稳定。所有情况在同一相位的瞬时涡流结构表明,对于具有抛物线速度分布的射流,其结构更为复杂。可以看出温度场与旋涡结构相关。时间平均流场的比较显示,对于具有抛物线形轮廓和边界层错流的射流,射流穿透力最高。对于具有均匀速度分布和均匀错流的射流,绝热效率更高,而对于具有抛物线速度分布和边界层错流的射流,绝热效率最低。

著录项

  • 来源
    《Heat and mass transfer》 |2012年第2期|p.391-411|共21页
  • 作者单位

    Department of Mechanical Engineering, Indian Institute of Technology Kanpur, Kanpur 208 016, UP, India;

    Department of Mechanical Engineering, Indian Institute of Technology Kanpur, Kanpur 208 016, UP, India;

  • 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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