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首页> 外文期刊>International Journal of Heat and Mass Transfer >Non-linear radiative heat transfer analysis during the flow of Carreau nanofluid due to wedge-geometry: A revised model
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Non-linear radiative heat transfer analysis during the flow of Carreau nanofluid due to wedge-geometry: A revised model

机译:楔形几何在卡洛纳米流体流动过程中的非线性辐射传热分析:修正模型

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摘要

In this article, an innovative revised Buongiorno's model is employed to investigate the flow of Carreau nanofluids generated by a wedge-shaped geometry. Moreover, heat and mass transfer characteristics are explored under the influence of non-linear thermal radiation. At first, the developed flow equations are made dimensionless via suitable transformations and then resulting set of nonlinear ordinary differential equations are solved numerically using built-in MATLAB solver bvp4c. It is observed that the solution of current flow problem is highly dependent on the contribution of several physical parameters like Weissenberg number, power-law index, wedge angle parameter, velocity ratio parameter, non-linear radiation parameter, suction parameter, Brownian motion and thermophoresis parameters, Lewis and Prandtl numbers. Detailed analysis for the novel results of dimensionless velocity, temperature and nanoparticles concentration with in the boundary layer region is exhibited graphically. The core physical implication of the computed results is that the thermal boundary layer is thinned by higher radiation parameter. This study reveals that an enhancement in the local Nusselt number is noted with higher temperature ratio parameter. On the other hand, an incremental skin friction ate the wall can be achieved by growing values of power-law index. The obtained data is distinguished with earlier studies and admirable agreement has been noted. (C) 2018 Published by Elsevier Ltd.
机译:在本文中,采用了创新的修正的Buongiorno模型来研究由楔形几何体产生的Carreau纳米流体的流动。此外,在非线性热辐射的影响下探索了传热和传质特性。首先,通过适当的变换使所发展的流量方程式无量纲,然后使用内置的MATLAB求解器bvp4c对所得的非线性常微分方程组进行数值求解。可以看出,电流问题的解决方案高度依赖于几个物理参数的贡献,例如魏森伯格数,幂律指数,楔角参数,速度比参数,非线性辐射参数,吸力参数,布朗运动和热泳参数,Lewis和Prandtl数。图形显示了无量纲速度,温度和纳米粒子浓度在边界层区域的新结果的详细分析。计算结果的核心物理含义是,热边界层会因较高的辐射参数而变薄。这项研究表明,温度比参数越高,局部Nusselt数越多。另一方面,可以通过增大幂律指数的值来增加壁对皮肤的摩擦。所获得的数据与早期研究区分开来,并且已经达成了令人钦佩的协议。 (C)2018由Elsevier Ltd.发布

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