Illustration of thermal radiation on the mixed convection of Williamson nanofluid over an inclined cylindrical surface

Ram Prakash Sharma, S. Baag, S. Mishra, Parshuram Sahoo
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Abstract

This study emphasizes the two-dimensional incompressible flow of Williamson nanofluid caused by an inclined, infinite, expanding/contracting cylinder that is inclined at an angle with the horizontal axis. The focus is on the behavior of non-Newtonian fluid on the flow, heat, and mass transfer during the process. The properties of the fluid are modeled using a set of partial differential equations in association with the characterizing parameters obtained during the presentation of non-dimensional form. The problem is solved numerically using the shooting-based Runge–Kutta fourth-order technique. The results are shown graphically for the behavior of the several contributing parameters. The effect of various pertaining parameters is analyzed henceforth. The physical quantities of interest are also discussed in the tables. The study provides useful insight into the behavior of the fluid, i.e. suction/injection shows opposite behavior on the fluid velocity profiles where suction decelerates the profile and injection enhances it significantly.
热辐射对威廉姆森纳米流体在倾斜圆柱表面上混合对流的影响说明
本研究强调威廉姆森纳米流体在与水平轴成一定角度倾斜的无限膨胀/收缩圆柱体中的二维不可压缩流动。重点是非牛顿流体在此过程中的流动、传热和传质行为。流体的特性是通过一组偏微分方程,结合在呈现非尺寸形式时获得的特征参数来模拟的。采用基于射击的 Runge-Kutta 四阶技术对问题进行数值求解。结果以图表形式显示了几个相关参数的行为。接下来将分析各种相关参数的影响。表格中还讨论了相关的物理量。研究对流体的行为提供了有用的见解,即吸入/注入对流体速度剖面显示出相反的行为,吸入会使剖面减速,而注入会显著增强剖面。
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