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Mixed convection in horizontal duct flow with transverse magnetic field and heating of side wallc

机译:横向风在水平风道中的混合对流和侧壁的加热

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Computational study of mixed convection in a horizontal duct with very strong (Hartmann numbers Ha up to 800) horizontal transverse magnetic field and electrically insulated walls is conducted. Strong constant-rate heating (Grashof numbers Gr up to 10~(9)) is applied to one vertical wall, while the other walls are thermally insulated. It is found that in a wide range of Ha and Gr the flow is two-dimensional (uniform in the streamwise direction) and steady-state. No instability to convection rolls aligned with the magnetic field detected recently in a similar duct and pipe with bottom heating is observed. The velocity field is a combination of convection-modified streamwise flow and convection-induced circulation in the transverse plane. The circulation has strong jets near the heated and horizontal walls as prominent features. It is demonstrated that, at a constant Reynolds number, integral characteristics and spatial structure of the flow can be approximately considered as determined by Gr/Ha2 as a single parameter. We also present results of a systematic comparison study of several commonly used grid clustering schemes in their application to wall-bounded flows with strong magnetic fields.
机译:进行了具有非常强的水平横向磁场(Hartmann数Ha高达800)和水平电绝缘壁的水平管道中混合对流的计算研究。一面垂直的墙壁被强力恒速加热(Grashof数Gr高达10〜(9)),而另一面墙壁则被隔热。发现在很大的Ha和Gr范围内,流动是二维的(沿流向均匀)和稳态。没有观察到对流辊的不稳定性,该对流辊与最近在具有底部加热的类似导管中的磁场对准。速度场是对流修改后的水流和横向上对流引起的环流的结合。该循环在靠近加热壁和水平壁的地方有强力射流,这是其主要特征。结果表明,在恒定的雷诺数下,可以将流的积分特性和空间结构近似视为由Gr / Ha2确定的单个参数。我们还介绍了几种常用的网格聚类方案在强磁场作用下的边界流应用中的系统比较研究结果。

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