纳米流体的Wang拉伸/收缩薄片问题的稳定性分析

Mohamad Mustaqim Junoh, F. Ali, N. Arifin, N. Bachok
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引用次数: 3

摘要

研究了纳米流体在自身平面内拉伸或收缩薄片上的稳态滞点流动。将控制非线性偏微分方程通过相似变换转化为非线性常微分方程,然后利用MATLAB中的bvp4c求解器对其进行数值求解。三种不同类型的纳米颗粒(Cu;氧化铝;本文对水基流体中的TiO2进行了分析。固体体积分数φ对流体流动和传热的影响进行了评估。得到了速度和温度分布的数值结果,并用图形表示了表面摩擦系数和局部努塞尔数。对于一定范围的拉伸/收缩参数,存在对偶解。因此,进行稳定性分析,以确定哪个解决方案是线性稳定和物理上可实现的。从稳定性分析中发现,第一个解是稳定的,而第二个解则不是。
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Stability Analysis of Wang's Stretching/ Shrinking Sheet Problem for Nanofluids
The steady stagnation-point flow of nanofluid over a stretching or shrinking sheet in its own plane is investigated. The governing nonlinear partial differential equations are transformed into a nonlinear ordinary differential equations via the similarity transformation before they are solved numerically using the bvp4c solver in the MATLAB. Three different types of nanoparticles (Cu; Al2O3; TiO2) in the water-based fluid are analyzed in this paper. Effects of the solid volume fraction ϕ on the fluid flow and heat transfer are evaluated. Numerical results are obtained for velocity and temperature distribution, as well as the skin friction coefficient and local Nusselt number are presented graphically. There exist dual solutions for a certain range of stretching/shrinking parameter ϵ. Therefore, a stability analysis is performed to determine which solution is linearly stable and physically realizable. From the stability analysis it is found that the first solution is stable whilst the second solution is not.
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