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Mixed Convection of Unsteady Nanofluids Flow Past A Vertical Plane With Entropy Generation

机译:非稳态纳米流体流过垂直平面的混合对流并产生熵

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A fully developed mixed convection nanofluid flow past accelerating vertical plane in the presence of a uniform transverse magnetic field has been studied. Three different types of water-based Nanofluids containing Titanium (iv) oxide, Copper and aluminum (iii) oxide are taken into consideration. The governing equations are solved numerically by shooting technique coupled with Runge-Kutta-Fehlberg integration scheme. Effects of the pertinent parameters on the nanofluid temperature and velocity are shown in figures followed by a quantitative discussion. The expression for entropy generation number and the Bejan number are also obtained based on the profiles. It is found that the magnetic field tends to decrease the nanofluid velocity.
机译:研究了在均匀横向磁场存在下经过加速垂直平面的完全发展的混合对流纳米流体流。考虑了三种不同类型的包含氧化钛(iv),铜和氧化铝(iii)的水基纳米流体。该控制方程是通过射击技术结合Runge-Kutta-Fehlberg积分方案进行数值求解的。图中显示了相关参数对纳米流体温度和速度的影响,随后进行了定量讨论。熵生成数和贝詹数的表达式也基于该分布而获得。发现磁场趋于降低纳米流体速度。

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