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首页> 外文期刊>Canadian Journal of Physics >Analysis on flow features of unsteady Williamson fluid inaugurated by melted wedge in the presence of heat generation-absorption: an extensive computational study
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Analysis on flow features of unsteady Williamson fluid inaugurated by melted wedge in the presence of heat generation-absorption: an extensive computational study

机译:熔化楔形在发热吸收的情况下未经熔融楔形的流动特征分析:广泛的计算研究

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After various thought-provoking experimental and theoretical investigations on heat transfer characteristics of usual liquids, researchers recommended the idea of inclusion of nano-sized structures into host liquid. This idea yielded a tremendous revolution in the world of fluid mechanics and brought researchers' and scientists' attention in this direction. The present paper is addresses enhancing the unique flow features of Williamson fluid by the inclusion of nano-sized particles. The Williamson fluid model along with prominent factors like magnetic field, heat generation-absorption, stagnation point, and active heat-mass flux are considered over a wedge. The mathematical formulation for the concerned problem is addressed in the form of a system of ordinary differential equations under acceptable governing laws. The attained system of coupled equations is hard to solve analytically. Therefore, a self-coded algorithm known as the shooting method is executed to report a numerical solution. A graphical representation of pertinent profiles and the parameters that affect them are included. Tabular and graphical trends present the influence of involved variables on Williamson momentum conservation and thermal and mass fields. In addition, the physical quantities at the surface of the wedge are also examined. In addition, reliability of the current work is established by constructing a comparison for skin friction values with the published literature. Our result indicates that increment in unsteadiness parameter causes temperature and concentration drop of flowing fluid over the wedge, whereas a positive effect on momentum profile is manifested. Furthermore, viscosity ratio parameter tends to follow the temperature and increase the velocity field. Magnetic field controls the turbulence by decreasing the velocity and increases the temperature. Accelerating behavior in velocity field and diminishing pattern in velocity is portrayed.
机译:经过各种思想挑衅的实验和理论研究常用液体的传热特性,研究人员建议将纳米大小结构纳入宿主液体的思想。这个想法在流体力学世界的巨大革命中,在这个方向上带来了研究人员和科学家的注意。本文通过包含纳米尺寸的颗粒来提高威廉森流体的独特流动特征的地址。威廉森流体模型与磁场,发热吸收,停滞点和主动热质量通量等突出因素一起考虑在楔形上。有关问题的数学制定以普通微分方程的形式解决了可接受的管理法律。达到的耦合方程系统很难分析解决。因此,执行称为拍摄方法的自编码算法以报告数字解决方案。包括相关简档的图形表示和影响它们的参数。表格和图形趋势呈现了涉及变量对威廉姆森势利保守和热和质量田的影响。另外,还检查了楔形表面的物理量。此外,通过构建与公开文献的皮肤摩擦值的比较来建立当前工作的可靠性。我们的结果表明,不稳定参数中的增量导致楔形流体的温度和浓度下降,而表现出对动量曲线的积极作用。此外,粘度比参数倾向于遵循温度并增加速度场。磁场通过降低速度来控制湍流并增加温度。描绘了速度场中的加速行为和速度下的变化模式。

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