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Statistical analysis of stagnation-point heat flow in Williamson fluid with viscous dissipation and exponential heat source effects

机译:具有粘性耗散和指数热源效应的威廉森液中停滞点热流统计分析

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摘要

This analysis explores the effect of the novel exponential space-dependent heat generation factor on the stagnation-point Williamson fluid flow over a stretchable surface. The heat transport phenomenon is carried out by the addition of viscous and Ohmic dissipations. Similarity transformations are applied to the nonlinear system of partial differential expressions that arise by the flow. The nonlinear ordinary differential system hence obtained is solved to visualize the role of different constraints graphically. Statistical methods such as correlation, probable error, and regression are utilized. The probable error is evaluated to calculate the reliability of the computed correlation factors. The study reveals that the velocity phenomenon is reduced by incrementing the Weis-senberg parameter. The velocity of the hydro-magnetic liquid is lesser than the velocity of magnetohydrodynamic fluid flow. Also, the higher heat generation factor gives a boost to the temperature of the flowing material.
机译:该分析探索了新颖的指数依赖性的空间发热因子的超过可拉伸的表面滞流点威廉森流体流动的影响。热输送现象通过加入粘性和欧姆耗散的情况下进行。相似变换被应用于通过流量产生偏微分表达式的非线性系统。因此所获得的非线性微分方程系统被求解以图形方式可视化的不同约束的作用。统计方法,如相关性,可能的错误,以及回归被使用。可能的误差进行评估,以计算所计算的相关因素的可靠性。该研究表明,速度现象通过递增韦斯-senberg参数降低。加氢磁性液体的速度比磁流体动力流体流的速度较小。此外,较高的热生成因子给出了一个升压到流动的材料的温度。

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