流经化学反应辐射多孔介质的 Oldroyd-B 和 Casson 纳米流体的比较分析

S. A. Shehzad, Rabia Farid
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摘要

本研究探讨了非牛顿纳米流体与牛顿条件的比较分析。研究采用 Oldroyd-B 和 Casson 流体作为非牛顿流体(NNF)。流动的产生是由于磁化表面的双向运动。能量和质量传输方程中考虑了辐射和化学反应过程。Buongiorno 的纳米颗粒理论被用于纳米流体分析。流体动力学的基本公式被纳入到物理模型中。利用边界层假设简化数学模型。利用相似性约束将三个独立变量的非线性模型转换为一个独立变量模型。简化后的数学模型通过同位方法进行分析处理。通过数值基准和图形说明验证了该方案的收敛性。对物理量的多功能约束结果进行了数值和图形处理。在极限方法中,将结果与之前公布的结果进行了比较。
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Comparative analysis of oldroyd-b and casson nanofluids flowing through chemically reactive radiative porous medium
The comparative analysis of non-Newtonian nanofluids with Newtonian conditions are addressed in this research. Oldroyd-B and Casson fluids are adopted as the non-Newtonian fluids (NNF). The generation of flow is due to bidirectionally movement of magnetized surface. Radiation and chemical reactive processes are accounted in energy and mass transportation equations. Buongiorno’s theory of nanoparticles is developed for the nanofluids analysis. The basic formulas of fluid dynamics are incorporated to formulate the physical model. The assumption of boundary-layer is utilized for the simplification of mathematical model. The arising nonlinear model of three independent variables are converted into one independent variable model using similarity constraints. The simplified mathematical model is treated analytically through the implementation of homotopic approach. The convergence of this scheme is verified through numerical benchmark and graphic illustration. The results of versatile constraints on physical quantities are addressed numerically and graphically. The comparison of results with previous published outcomes is provided in limiting approach.
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