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Elliptic cavity filled with hybrid nanomaterial under consideration of magnetic field

机译:椭圆腔填充磁场的杂交纳米材料

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CVFEM usage for modeling of nanomaterial flow style in a permeable elliptical tank including Lorentz effect was scrutinized in the current research. Hybrid material with use of homogeneous model was applied and radiation term has been involved in governing equations. Outputs have been depicted in contours and plots. In addition, a new formula for Nu was reported. Augment of Nu by considering greater permeability can be explained by stronger temperature gradient in cases with higher Da. Nanomaterial flow becomes suppressed with augment of Ha which results in lower Nu. As Ha was augmented from 0 to 20, 18% reduction was reported in Nu. Permeability has favorable influence on nanomaterial flow and the impact of Ha is the opposite of permeability.
机译:CVFEM使用用于在包括Lorentz效应的可渗透椭圆罐中建模的纳米材料流动风格进行审查。 应用了使用均匀模型的混合材料,并且辐射术语已参与控制方程。 输出已在轮廓和图中描绘。 此外,报告了NU的新公式。 通过考虑更高的渗透率可以通过较高的DA造成更高的温度梯度来解释NU的增强。 纳米材料流动随着HA的增强而抑制,导致较低的NU。 由于HA增强了0到20,NU中报告了18%的减少。 渗透率对纳米材料流动有利影响,HA的影响与渗透率相反。

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