纳米流体中拉伸/收缩薄片上的MHD滞点流动

N. Rahman, N. Bachok, H. Rosali
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引用次数: 3

摘要

在这项研究中,我们研究了纳米流体中线性拉伸/收缩薄片上的稳态二维磁流体动力学(MHD)停滞点流动问题。在普朗特数Pr = 6.2的水基液中选取铜(Cu)、氧化铝(al2o3)和二氧化钛(tio2)三种金属纳米颗粒,考察纳米颗粒体积分数参数φ对纳米流体的影响。利用相似变换将控制非线性偏微分方程转化为非线性常微分方程,然后利用Matlab软件中的边值问题求解器bvp4c进行数值求解。给出了磁场参数M对表面摩擦系数C f、局部努塞尔数Nu以及速度和温度分布的影响,并进行了讨论。结果表明:磁场和纳米颗粒体积分数对速度和温度均有影响;缩板情况下存在对偶解,且解非唯一,不同于拉伸情况。并计算了M=0时的和的数值,结果与前人的研究结果吻合较好。
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MHD Stagnation-point Flow over a Stretching/ Shrinking Sheet in Nanofluids
In this study, we investigated the problem of steady two-dimensional magnetohydrodynamic (MHD) stagnation-point flow over a linearly stretching/shrinking sheet in nanofluids. There are three types of metallic nanoparticles considered such as copper (Cu), alumina (Al 2 O 3 ) and titania (TiO 2 ) in the base fluid of water with the Prandtl number Pr = 6.2 to investigate the effect of the nanoparticles volume fraction parameter φ of the nanofluids. In this problem, the governing nonlinear partial differential equations are transformed into the nonlinear ordinary differential equations by using a similarity transformation and then solved numerically using the boundary value problems solver bvp4c in Matlab software. The influence of magnetic field parameter, M on the skin friction coefficient C f , local Nusselt number Nu and the velocity and temperature profiles are presented graphically and discussed. The results show that the velocity and temperature are influenced by the magnetic field and nanoparticles volume fraction. The dual solutions exist for shrinking sheet case and the solutions are non-unique, different from a stretching sheet. The numerical values of and for M=0 are also computed, which show a favourable agreement with previous work.
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