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Numerical Investigation of Mixed Convective Williamson Fluid Flow Over an Exponentially Stretching Permeable Curved Surface

机译:混合对流威廉姆森流体在指数拉伸可渗透弯曲表面上流动的数值研究

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摘要

The present investigation aims to examine the heat flux mechanism in the hagnetohydrodynamic (MHD) mixed convective flow of Williamson-type fluid across an exponential stretching porous curved surface. The significant role of thermal conductivity (variable), non-linear thermal radiation, unequal source-sink, and Joules heating is considered. The governing problems are obtained using the Navier–Stokes theory, and the appropriate similarity transformation is applied to write the partial differential equations in the form of single-variable differential equations. The solutions are obtained by using a MATLAB-based built-in bvp4c package. The vital aspect of this analysis is to observe the effects of the curvature parameter, magnetic number, suction/injection parameter, permeability parameter, Prandtl factor, Eckert factor, non-linear radiation parameter, buoyancy parameter, temperature ratio parameter, Williamson fluid parameter, and thermal conductivity (variable) parameter on the velocity field, thermal distribution, and pressure profile which are discussed in detail using a graphical approach. The correlation with the literature reveals a satisfactory improvement in the existing results on permeability factors in Williamson fluids.
机译:本研究旨在检测HAGNETOMOTOM动力学(MHD)混合对流流动的热通量机制在威廉姆森型流体上穿过指数拉伸多孔曲面的威廉森型流体。考虑导热率(可变),非线性热辐射,不等源水槽和焦耳加热的显着作用。使用Navier-Stokes理论获得管理问题,并且应用了适当的相似性转换以以单可变微分方程的形式写入局部微分方程。通过使用基于MATLAB的内置BVP4C封装获得的解决方案。该分析的重要方面是观察曲率参数,磁性数,抽吸/注射参数,渗透性参数,Prandtl因子,Eckert因子,非线性辐射参数,浮力参数,温度比参数,威廉森流体参数的影响,在速度场,热分布和压力分布上,使用图形方法详细讨论的热传导率(可变)参数。与文献的相关性揭示了威廉森流体渗透因子的现有结果令人满意的改善。

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