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首页> 外文期刊>Journal of thermal analysis and calorimetry >Mixed convection analysis of variable heat source/sink on MHD Maxwell, Jeffrey, and Oldroyd-B nanofluids over a cone with convective conditions using Buongiorno's model
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Mixed convection analysis of variable heat source/sink on MHD Maxwell, Jeffrey, and Oldroyd-B nanofluids over a cone with convective conditions using Buongiorno's model

机译:使用Buongiorno模型的对流条件,MAHD Maxwell,Jeffrey和Oldroyd-B纳米流体的变量热源/水槽混合对流分析

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This paper investigates the mixed convection of MHD Maxwell, Jeffery, and Oldroyd-B nanofluid models with heat source/sink over a cone geometry. The nonlinear ordinary differential equations are solved numerically by using Runge-Kutta-based shooting technique for transformed systems. Moreover, the non-homogenous Buongiorno's model is employed, which accounts for both the impact of thermophoresis and Brownian motion of the nanofluids. The accuracy of the numerical data is obtained by comparison against the existed results in the literature. Furthermore, the effects of important physical parameters such as thermophoresis, Biot number, Brownian motion, and magnetic field parameters on the concentration, temperature, and velocity profiles are evaluated in this research. As the vital outcome of this research, it is revealed that the heat and mass transfer rates are more significant in Jeffery model than other two models Maxwell and Oldroyd-B nanofluid models.
机译:本文调查了MHD Maxwell,Jeffery和Oldroyd-B纳米流体模型的混合对流,在锥形几何上使用热源/沉降。 通过使用基于Runge-Kutta的拍摄技术来解决非线性常微分方程,用于使用基于Runge-Kutta的变换系统来解决。 此外,采用非均匀布吞罗诺尔族的模型,其占纳米流体的热孔和褐色运动的影响。 通过与文献中存在的结果进行比较获得数值数据的准确性。 此外,在本研究中评估了重要物理参数,例如热孔,Biot数,布朗运动和磁场参数的效果,在该研究中评估了对浓度,温度和速度谱的影响。 作为本研究的重要结果,据透露,杰弗德模型中的热量和传质速率比其他两种型号麦克斯韦和奥尔博利-B纳米流体模型更为显着。

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