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g-Jitter Induced MHD Mixed Convection Flow of Nanofluids past a Vertical Stretching Sheet

机译:G-抖动诱导纳米流体的MHD混合对流流过垂直拉伸板

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The unsteady two dimensional convective boundary layer flow of nanofluids past a vertical permeable stretching sheet associated with the effect of g-jitter is studied in this paper. Two different types of water based nanofluids are considered which are copper (Cu) and aluminium oxide (Al_2O_3). The governing boundary layer equations in the form of partial differential equations are transformed into nonlinear coupled ordinary differential equations and solved numerically using an implicit finite-difference scheme known as the Keller-box method. The effects of amplitude of modulation, frequency of oscillation and solid nanoparticle volume fraction parameters on the reduced skin friction and Nusselt number are presented and discussed. An excellent agreement was observed between the current and earlier published results for some special cases. Numerical results show that, the values of reduced skin friction increase with the increasing of solid nanoparticle volume fraction but produce the opposite behaviour for the values of heat transfer coefficient.
机译:本文研究了纳米流体的不稳定两维对流边界层流动经过垂直透水拉伸板。认为两种不同类型的水基纳米流体是铜(Cu)和氧化铝(Al_2O_3)。局部微分方程形式的控制边界层方程被转换为非线性耦合的常微分方程,并使用称为Keller-Box方法的隐式有限差分方案进行数字解决。提出和讨论了调节幅度,振荡频率,振荡频率和固体纳米颗粒体积分数参数的影响。对某些特殊案件的当前及早发布结果观察了一个很好的协议。数值结果表明,随着固体纳米颗粒体积分数的增加,肌摩擦降低的值增加,但产生了传热系数值的相反行为。

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