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Entropy analysis of nanofluid magnetohydrodynamic convection flow past an inclined surface: A numerical review

机译:纳米流体磁流动动力对流流过倾斜表面的熵分析:数值综述

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A numerical investigation is conducted to review the entropy study of magnetohydrodynamic (MHD) convection nanofluid flow from an inclined surface. In evaluating the thermophoresis and Brownian motion impacts, Buongiorno's model is applied to nanofluid transfer. Using Keller's implicit box technique, the governing partial differential conservation equations and wall and free stream boundary conditions are made into the dimensionless form and solved computationally. For different thermos physical parameter values, the numerical results are discussed both graphically and numerically. Verification of the present code with previous Newtonian responses is also included. To analyze the variability in fluid velocity, temperature, nanoparticle volume fraction, entropy, Bejan number, shear stress rate, wall heat, and mass transfer rates, graphical and tabulated results are reported. The study suggests applications in the manufacturing of nanomaterial fabrication, and so on.
机译:进行了数值调查,以审查磁性流体动力学(MHD)对流纳米流体从倾斜表面流动的熵研究。 在评估热孔和布朗运动影响时,Buongiorno的模型应用于纳米流体转移。 使用Keller的隐式盒技术,控制局部差分保护方程和墙壁和自由流边界条件被制成无量纲形式并计算地解决。 对于不同的Thermos物理参数值,数值结果是以图形和数值讨论的。 还包括先前牛顿响应的当前代码的验证。 为了分析流体速度,温度,纳米颗粒体积分数,熵,BEJAN数,剪切应力速率,壁热和传质结果的可变性,报道了图形和制表结果。 该研究表明,在制造纳米材料制造中,等等。

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