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Effects of Thermal Radiation and Slip on Unsteady Stagnation-Point Flow and Heat Transfer past a Permeable Shrinking Sheet: A Stability Analysis

机译:热辐射和滑动对不稳定的滞留点流量的影响,传热过去渗透性收缩片:稳定性分析

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This paper solves the problem of unsteady viscous fluid flow and heat transfer near the stagnation-point over a permeable stretching/shrinking surface. The effects of thermal radiation, velocity and thermal slip conditions are considered in this study. The problem modelled in the form of partial differential equations, subjected to the respective boundary conditions, and transformed to a system of nonlinear ordinary differential equations by applying the right similarity transformations. The MATLAB solver bvp4c function produces every numerical solution with the variation in pertinent parameters. Excellent agreement in comparison with previous literature is presented. The presences of dual solutions are noticeable when the permeable sheet is stretching or shrinking. Stability of the dual solutions is checked by obtaining the lowest eigenvalues of the governing linearized boundary value problem. The effects of the governing parameters on the reduced skin friction coefficients, reduced local Nusselt number, dimensionless velocity and temperature profiles are given in the form of graphs and discussed in detail. Results from the stability analysis proved that the upper branch solution is stable and physically realizable whereas the lower branch solution is unstable.
机译:本文解决了不透水拉伸/收缩表面上停滞点附近的不稳定粘性流体流动和传热的问题。在该研究中考虑了热辐射,速度和热滑移条件的影响。以偏微分方程的形式建模的问题经受各自的边界条件,并通过应用正确的相似性转换来转换为非线性常微分方程的系统。 MATLAB求解器BVP4C功能通过相关参数的变化产生每个数字解决方案。展示了与以前文学相比的良好协议。当可渗透片材拉伸或缩小时,双溶液的存在是明显的。通过获得控制线性化边值问题的最低特征值来检查双解的稳定性。控制参数对减少皮肤摩擦系数,降低的局部露珠数,无量纲速度和温度曲线的影响是以图的形式给出的,并详细讨论。稳定性分析的结果证明,上部分支溶液是稳定和物理可实现的,而下部分支溶液是不稳定的。

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