Khan Masood, Saleh Alshomrani Ali
Department of Mathematics, Quaid-i-Azam University, 44000, Islamabad, Pakistan.
Department of Mathematics, Faculty of Science, King Abdul-Aziz University, Jeddah, Saudi Arabia.
Eur Phys J E Soft Matter. 2017 Jan;40(1):8. doi: 10.1140/epje/i2017-11495-6. Epub 2017 Jan 25.
This article provides a comprehensive analysis of the energy transportation by virtue of the melting process of high-temperature phase change materials. We have developed a two-dimensional model for the boundary layer flow of non-Newtonian Carreau fluid. It is assumed that flow is caused by stretching of a cylinder in the axial direction by means of a linear velocity. Adequate local similarity transformations are employed to determine a set of non-linear ordinary differential equations which govern the flow problem. Numerical solutions to the resultant non-dimensional boundary value problem are computed via the fifth-order Runge-Kutta Fehlberg integration scheme. The solutions are captured for both zero and non-zero curvature parameters, i.e., for flow over a flat plate or flow over a cylinder. The flow and heat transfer attributes are witnessed to be prompted in an intricate manner by the melting parameter, the curvature parameter, the Weissenberg number, the power law index and the Prandtl number. We determined that one of the possible ways to boost the fluid velocity is to increase the melting parameter. Additionally, both the velocity of the fluid and the momentum boundary layer thickness are higher in the case of flow over a stretching cylinder. As expected, the magnitude of the skin friction and the rate of heat transfer decrease by raising the values of the melting parameter and the Weissenberg number.
本文通过高温相变材料的熔化过程对能量传输进行了全面分析。我们针对非牛顿卡雷奥流体的边界层流动建立了二维模型。假设流动是由圆柱体沿轴向以线性速度拉伸引起的。采用适当的局部相似变换来确定一组控制流动问题的非线性常微分方程。通过五阶龙格 - 库塔 - 费尔贝格积分方案计算所得无量纲边值问题的数值解。针对零曲率参数和非零曲率参数(即平板上的流动或圆柱体上的流动)均获取了解。流动和传热特性被证明会受到熔化参数、曲率参数、魏森贝格数、幂律指数和普朗特数的复杂影响。我们确定提高流体速度的一种可能方法是增加熔化参数。此外,在拉伸圆柱体上流动的情况下,流体速度和动量边界层厚度都更高。正如预期的那样,通过提高熔化参数和魏森贝格数的值,表面摩擦力的大小和传热速率会降低。