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Time-Dependent Second-Order Viscoelastic Fluid Flow on Rotating Cone with Heat Generation and Chemical Reaction

机译:具有生热和化学反应的旋转锥上随时间变化的二阶粘弹性流体流动

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摘要

The present analysis deals with the study of time-dependent flow of a second-order fluid on a rotating cone in the presence of chemical reaction and heat generation or absorption effects under prescribed heat flux conditions. The boundary-layer nonlinear partial differential equations of second grade fluid are first reduced into a system of ordinary differential equations with the help of transformations and nondimensional similar and nonsimilar quantities, and then solved analytically by optimal homotopy analysis method (OHAM). The effects of relevant parameters such as chemical reaction, heat generation, or absorption on local skin friction coefficients, local Nusselt number, and local Sherwood number are discussed. These effects are illustrated graphically as well as in tabular form to describe special features of the solutions.
机译:本分析研究了在规定的热通量条件下,在存在化学反应和生热或吸收效应的情况下,二阶流体在旋转锥上的时间依赖性流动的研究。首先借助变换和无量纲相似和不相似量,将二阶流体的边界层非线性偏微分方程简化为常微分方程组,然后通过最佳同伦分析法(OHAM)进行解析求解。讨论了相关参数(例如化学反应,生热或吸收)对局部皮肤摩擦系数,局部Nusselt数和局部Sherwood数的影响。这些效果以图形形式以及表格形式进行了说明,以描述解决方案的特殊功能。

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