首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Magnetic Field Effect on Mixed Convection in Lid-Driven Trapezoidal Cavities Filled With a Cu-Water Nanofluid With an Aiding or Opposing Side Wall
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Magnetic Field Effect on Mixed Convection in Lid-Driven Trapezoidal Cavities Filled With a Cu-Water Nanofluid With an Aiding or Opposing Side Wall

机译:磁场对盖有辅助或相对侧壁的Cu-水纳米流体的盖驱动梯形腔中混合对流的影响

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摘要

The present study investigates mixed convection inside a Cu-water nanofluid filled trapezoidal cavity under the effect of a constant magnetic field. The mixed convection is achieved by the action of lid-driving of the right hot inclined side wall in the aiding or the opposing direction. The left inclined side wall is fixed and kept isothermal at a cold temperature. The horizontal top and bottom walls are fixed and thermally insulated. The magnetic field is imposed horizontally. The problem is formulated using the stream function-vorticity procedure and solved numerically using an efficient upwind finite-difference method. The studied parameters are: the Richardson number Ri = (0.01-10), the Hartman number Ha = (0-100), the volume fraction of Cu nanoparticles φ = (0-0.05), and the inclination angle of side walls Φ = (66deg, 70deg, 80deg). The results have shown that the suppression effect of the magnetic field for the aiding case is greater than that for the opposing case. Meanwhile, the enhancement of the Nusselt number due to the presence of the Cu nanoparticles is greater for opposing lid-driven case.
机译:本研究研究在恒定磁场作用下,铜水纳米流体填充的梯形腔内部的混合对流。混合对流是通过在辅助方向或相反方向上驱动右热倾斜侧壁进行盖的作用实现的。左倾斜的侧壁是固定的,并在低温下保持恒温。水平的顶壁和底壁是固定的,并且是隔热的。磁场是水平施加的。该问题使用流函数涡度法来表示,并使用有效的迎风有限差分方法进行数值求解。研究的参数为:Richardson数Ri =(0.01-10),Hartman数Ha =(0-100),Cu纳米粒子的体积分数φ=(0-0.05)和侧壁倾斜角Φ= (66度,70度,80度)。结果表明,磁场对辅助情况的抑制作用大于对立情况。同时,由于相反的盖子驱动的情况,由于存在Cu纳米颗粒而使Nusselt数的增加更大。

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