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Application of generalized Fourier heat conduction law on MHD viscoinelastic fluid flow over stretching surface

机译:广义傅里叶导热法在拉伸表面上的MHD粘弹性流体流动中的应用

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Purpose - The purpose of current flow configuration is to spotlights the thermophysical aspects of magnetohydrodynamics (MHD) viscoinelastic fluid flow over a stretching surface. Design/methodology/approach - The fluid momentum problem is mathematically formulated by using the Prandtl-Eyring constitutive law. Also, the non-Fourier heat flux model is considered to disclose the heat transfer characteristics. The governing problem contains the nonlinear partial differential equations with appropriate boundary conditions. To facilitate the computation process, the governing problem is transmuted into dimensionless form via appropriate group of scaling transforms. The numerical technique shooting method is used to solve dimensionless boundary value problem. Findings - The expressions for dimensionless velocity and temperature are found and investigated under different parametric conditions. The important features of fluid flow near the wall, i.e. wall friction factor and wall heat flux, are deliberated by altering the pertinent parameters. The impacts of governing parameters are highlighted in graphical as well as tabular manner against focused physical quantities (velocity, temperature, wall friction factor and wall heat flux). A comparison is presented to justify the computed results, it can be noticed that present results have quite resemblance with previous literature which led to confidence on the present computations. Originality/value The computed results are quite useful for researchers working in theoretical physics. Additionally, computed results are very useful in industry and daily-use processes.
机译:目的 - 流动配置的目的是分散在拉伸表面上磁性动力学(MHD)粘弹性流体流动的热物理方面。设计/方法/方法 - 流体动量问题是通过使用Prandtl-eycing本构法在数学制定的。而且,认为非傅里叶热通量模型被认为是公开了传热特性。管理问题包含具有适当边界条件的非线性偏微分方程。为了便于计算过程,管理问题通过适当的缩放变换组被传送入无量纲形式。数值技术拍摄方法用于解决无量纲边值问题。研究结果 - 在不同的参数条件下发现并研究了无量纲速度和温度的表达。墙壁附近的流体流动的重要特征,即壁摩擦系数和壁热通量,通过改变相关参数刻探。控制参数的影响是以图形的,以及针对聚焦物理量(速度,温度,壁摩擦系数和壁热通量)的表格方式突出显示。提出了比较以证明计算结果证明,可以注意到当前结果与先前的文献相比相似,这导致了对当前计算的信心。原创性/值计算结果对于在理论物理学中工作的研究人员非常有用。此外,计算结果在工业和每日使用过程中非常有用。

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