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On unsteady MHD mixed convection in a nanofluid due to a stretching/shrinking surface with suction/injection using the spectral relaxation method

机译:使用谱弛豫法,通过拉伸/收缩表面的吸/注,纳米流体中不稳定的MHD混合对流

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In this study we investigate heat and mass transfer in magnetohydrodynamic mixed convection flow of a nanofluid over an unsteady stretching/shrinking sheet. The flow is subject to a heat source, viscous dissipation and Soret and Dufour effects are assumed to be significant. We have further assumed that the nanoparticle volume fraction at the wall may be actively controlled. The physical problem is modeled using systems of nonlinear differential equations which we have solved numerically using the recent spectral relaxation method. In addition to the discussion on physical heat and mass transfer processes, we also show that the spectral relaxation technique is an accurate technique for solving nonlinear boundary value problems.
机译:在这项研究中,我们研究了纳米流体在非稳态拉伸/收缩片材上的磁流体动力混合对流中的传热和传质。流动受热源的影响,粘性耗散,并且Soret和Dufour效应被认为是重要的。我们进一步假设可以主动控制壁上的纳米颗粒体积分数。物理问题是使用非线性微分方程组建模的,我们已经使用最新的频谱松弛方法在数值上进行了求解。除了讨论物理传热和传质过程外,我们还表明,光谱弛豫技术是解决非线性边值问题的准确技术。

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