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首页> 外文期刊>Canadian Journal of Physics >Rotational impact on nanoscale particles Fe2O4, NiZnFe2O4, MnZnFe2O4 suspended in C2H6O2 confined between two stretchable disks: a computational study
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Rotational impact on nanoscale particles Fe2O4, NiZnFe2O4, MnZnFe2O4 suspended in C2H6O2 confined between two stretchable disks: a computational study

机译:对纳米级粒子Fe2O4,NizNFE2O4,MnZnFe2O4悬浮在C2H6O2中悬浮在两个可拉伸盘之间的旋转冲击:计算研究

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This communication addresses the fluid and heat transfer flanked by two stretchable rotating disks influenced by the induced magnetic field. The fluid flows due to the rotation of the stretchable disks enclosing a nanofluid having nanoparticles of three distinct ferrite compounds. The mathematical formulation of the problem is performed in a cylindrical coordinate system. Similarity analysis is applied for the sake of simplification. The velocity, pressure, induced magnetic field, and temperature distributions accompanied by surface drag force and heat flux are computed numerically by employing implicit finite difference algorithm. Effects of important emerging parameters are addressed through graphs and tables. Some pivotal findings include that magnetic parameter and reciprocal magnetic Prandtl number contribute to increasing fluid pressure near the lower disk and the opposite trend is reported in the vicinity of the upper disk. The present investigation is a benchmark problem that has a promising future in geophysics, oil refinery, and the chemical processing industry.
机译:该通信地解决了由受诱导磁场影响的两个可拉伸的旋转盘侧翼的流体和传热。由于围绕具有三个不同铁氧体化合物的纳米颗粒的纳米流体的拉伸盘的旋转,流体流动。问题的数学制定在圆柱坐标系中进行。相似性分析是为了简化应用。速度,压力,诱导磁场和伴随表面拖曳力和热通量的温度分布通过采用隐含的有限差分算法来计算。重要的新兴参数的影响通过图形和表来解决。一些枢转发现包括磁性参数和互易磁性PRANDTL数有助于提高下盘附近的流体压力,并且在上盘附近报告相反的趋势。目前的调查是一个基准问题,在地球物理,炼油厂和化学加工行业中具有有希望的未来。

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