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Numerical study of Williamson hybrid nanofluid flow with thermal characteristics past over an extending surface

机译:Numerical study of Williamson hybrid nanofluid flow with thermal characteristics past over an extending surface

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摘要

The energy and mass dissemination rate have been studied through Williamson hybrid nanofluid (NF) flow comprised of silver (Ag) and magnesium oxide (MgO) nanoparticles (NPs) past over an extending porous surface. The hybrid nanofluid has synthesized by dispersion of Ag and MgO nanoparticles in the base fluid (engine oil). The effects of the constant magnetic field, thermal dissipation, and heat source are also studied in the present analysis. The above scenario has been designed in the form of a nonlinear system of partial differential equations, which are processed through a similarity framework to the system of dimensionless ordinary differential equations. The results are obtained by the numerical computational approach parametric continuation method. It has been perceived that the velocity contour decreases with rising upshots of porosity parameter Kp and magnetic force M, while enhances with the variation of volume friction coefficient. The increment of Biot number Bi, heat source Q, and Eckert number Ec enhances the energy profile, respectively. Furthermore, the mass conversion rate decreases with the variation of thermophoretic parameters and Schmidt number.
机译:能量和质量传播率研究通过混合nanofluid威廉姆森(NF)流组成的银(Ag)和氧化镁(分别)纳米颗粒(NPs)延伸过去多孔表面。合成了色散Ag)和采用纳米粒子在基液(机油)。恒定磁场的影响,热耗散,热源也研究了目前的分析。设计形式的非线性系统的偏微分方程通过相似框架来处理的无量纲常微分系统方程。数值计算方法参数延续的方法。速度轮廓随上升结果之一孔隙度参数Kp和磁性力,而增强的变化摩擦系数。毕奥数Bi、热源Q和埃克特数分别Ec提高能源配置文件。此外,质量转化率降低thermophoretic参数的变化和施密特数。

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