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UNSTEADY MHD THREE-DIMENSIONAL CASSON NANOFLUID FLOW OVER A POROUS LINEAR STRETCHING SHEET WITH SLIP CONDITION

机译:带有滑移条件的多孔线性拉伸板上非定常的MHD三维卡森纳米流体流动

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In this paper we study the effects of thermal radiation, heat and mass transfer on the unsteady magnetohydrodynamic(MHD) flow of a three dimensional Casson nanofluid. The flow is subject to partial slip and convective conditions. The traditional model which includes the effects of Brownian motion and thermophoresis is revised so that the nanofluid particle volume fraction on the boundary is not actively controlled. In this respect the problem is more realistic. The dimensionless governing equations were solved using the spectral quasi-linearisation method. This work aims to fill the gap in existing literature by showing the effects of porosity, magnetic field and stretching ratio parameter on the flow of the Casson Nanofluid model over a porous linearly stretching sheet with the incorporation of the nanoparticles on the concentration boundary condition. It is observed that increase in the unsteadiness of the flow tends to decrease the momentum, thermal and nanoparticles volume fraction profiles. The results are benchmarked with previously published results. Full Text: PDF DOI: http://dx.doi.org/10.5098/hmt.8.37 ISSN: 2151-8629 About Us | Contact Us | Terms of Use | Privacy Policy | Disclaimer
机译:在本文中,我们研究了热辐射,传热和传质对三维卡森纳米流体非稳态磁流体动力学(MHD)流动的影响。流动受到部分滑移和对流条件的影响。修改了包括布朗运动和热泳效应的传统模型,以使边界上的纳米流体颗粒体积分数无法得到主动控制。在这方面,问题更为现实。使用频谱准线性化方法求解无量纲控制方程。这项工作旨在通过显示孔隙度,磁场和拉伸比参数对多孔线性拉伸片上的Casson纳米流体模型流动的影响,并在浓度边界条件下掺入纳米粒子,从而填补现有文献中的空白。观察到,流动不稳定的增加倾向于降低动量,热和纳米颗粒体积分数分布。结果以以前发布的结果为基准。全文:PDF DOI:http://dx.doi.org/10.5098/hmt.8.37 ISSN:2151-8629关于我们|联系我们|使用条款|隐私政策|免责声明

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