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首页> 外文期刊>Results in Physics >Modified Fourier heat flux on MHD flow over stretched cylinder filled with dust, Graphene and silver nanoparticles
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Modified Fourier heat flux on MHD flow over stretched cylinder filled with dust, Graphene and silver nanoparticles

机译:MHD在充满灰尘,石墨烯和纳米银颗粒的拉伸圆柱体上流动时的修正傅里叶热通量

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摘要

A Comprehensive study on laminar, magnetohydrodynamic (MHD) boundary layer flow of nanofluid (water?+?Silver, water?+?Graphene) embedded with conducting micrometer sized dust particles over a stretching cylinder with the incorporation of Cattaneo-Christov heat flux model is conducted. Appropriate similarity variables are employed to the flow governing equations and the resulting ordinary differential equations are solved by employing Runge-Kutta-Fehlberg method. The results for varied controlling parameters for both dusty nano fluid and dust phase are shown through graphs, table and discussed in detail. Authentication of the obtained results is provided by comparing with published results. Results indicate that Graphene?+?water dusty nanofluid shows better heat transfer performance compared with Silver?+?water dusty nanofluid. Improvement in thermal relaxation boosts temperature distribution in both fluid and dust phase.
机译:结合Cattaneo-Christov热通量模型,对纳米流体(水+ +银,水-+石墨烯)的层流,磁流体动力学(MHD)边界层流动进行了综合研究,该纳米流体内嵌有微米级的导电尘埃颗粒。进行。将适当的相似变量应用于流量控制方程,并使用Runge-Kutta-Fehlberg方法求解所得的常微分方程。通过图表,表格显示并详细讨论了粉尘纳米流体和粉尘相的各种控制参数的结果。通过与发布的结果进行比较来提供对所获得结果的认证。结果表明,石墨烯+ +水多尘纳米流体比银+ +水多尘纳米流体表现出更好的传热性能。热弛豫的改善促进了流体相和粉尘相的温度分布。

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