...
首页> 外文期刊>Canadian Journal of Physics >Numerical simulations of MHD forced convection flow of micropolar fluid inside a right-angled triangular cavity saturated with porous medium: Effects of vertical moving wall
【24h】

Numerical simulations of MHD forced convection flow of micropolar fluid inside a right-angled triangular cavity saturated with porous medium: Effects of vertical moving wall

机译:多孔介质饱和三角腔内MHD强制对流流动的数值模拟,垂直移动壁的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The present article explores the effects of moving lid on the forced convection flow of micropolar fluid inside a right-angle triangular cavity saturated with porous medium. The base and hypotenuse or inclined sides of the cavity are maintained at constant temperatures, while the vertical side of the enclosure is adiabatic and moving with constant velocity in upward or downward direction. The flow equations are simulated by using the robust finite element numerical technique. The pressure term from the momentum equations is eliminated by using the penalty parameter. For a consistent solution, the value of the penalty parameter is selected as 10(7). The simulations are performed for the cases based on the direction of moving lid. The numerical outcomes are shown in terms of streamlines, temperature contours, and local and average Nusselt numbers for sundry parameters, such as micropolar parameter, Reynolds number, Richardson number, Darcy number, Hartmann number, and Prandtl number. It is observed that the shape of the inner circulating cell is elliptic when the lid is moving in the upward direction and fluid is clear (Newtonian fluid). It is also found that average Nusselt number in both cases increases with increasing Prandtl number, Richardson number, micropolar parameter, and Darcy number, whereas it decreases with increasing Hartmann number. Further, it achieves a maximum when the lid is moving in the downward direction, regardless of the choice of involved parameters. The numerical code is also validated with previous published results. The investigation of the current study is beneficial in porous heat exchangers, construction of triangular-shaped solar collectors, rigid crystal, polymeric fluid transport, etc.
机译:本文探讨了移动盖在用多孔介质饱和的直角三角形腔内强制对流流动的效果。腔的底座和斜边或倾斜侧保持在恒定温度下,而外壳的垂直侧是绝热的并且在向上或向下方向上具有恒定速度。通过使用稳健的有限元数值技术模拟流动方程。通过使用惩罚参数消除来自动量方程的压力术语。对于一致的解决方案,惩罚参数的值被选为10(7)。基于移动盖的方向对壳体执行模拟。数值结果以流线,温度轮廓以及局部参数的局部和平均露天数表示,例如Microplar参数,Reynolds号码,Richardson号,达西数,Hartmann号和Prandtl编号。观察到,当盖子在向上方向和流体上透明(牛顿流体)时,内循环电池的形状是椭圆形。还发现两种情况下的平均营养号码随着普朗特数,Richardson号码,微息参数和达西数而增加,而且随着Hartmann号的增加而降低。此外,无论涉及参数的选择如何,它达到盖子沿向下方向移动时最大值。数值代码也使用以前发布的结果验证。目前研究的调查是有益的多孔换热器,三角形太阳能收集器的构造,刚性晶体,聚合物流体输送等。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号