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首页> 外文期刊>Journal of Nanofluids >Dual Solutions Analysis of Melting Phenomenon with Mixed Convection in a Nanofluid Flow and Heat Transfer Past a Permeable Stretching/Shrinking Sheet
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Dual Solutions Analysis of Melting Phenomenon with Mixed Convection in a Nanofluid Flow and Heat Transfer Past a Permeable Stretching/Shrinking Sheet

机译:双重融化现象的解决方案分析Nanofluid流中的混合对流和热转移过去的透水拉伸/收缩表

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摘要

The 2-D MHD nanofluid with mixed convection above a stretching/shrinking plate has been investigated. Melting heat transfer near surface is contemplated. Consider the saline water as base fluid with containing single SWCNTs as well as MWCNTs. Suitable similarity variables are employed to transform the governing PDEs into ODEs. These transformed equations which are coupled, and of high nonlinearity, have been solved through applying the bvp4c solver. The consequences of the relevant parameters like, the MHD parameter, mixed convection parameter, melting parameter, volume fraction on the flow field along with the skin friction and heat transfer rate are displayed in graphical form. Results show that the thin layer thickness diminishes as magnetic parameter enhances and at the same time temperature increases with magnetic parameter. It is also demonstrated that the melting parameter leads to a reduction in the thin layer thickness as well as dimensionless temperature. Obtain dual solutions for flow fields which delineates to identify the stable solution.
机译:上面的二维磁流体动力nanofluid混合对流拉伸/收缩板调查。是考虑。基液包含单一SWCNTs热合。用来改变执政pde常微分方程。耦合、高非线性的通过应用解决bvp4c解算器。后果的相关参数,磁流体动力参数、混合对流参数,融化的参数,体积分数在流场与皮肤摩擦和热量传输速率显示在图形的形式。结果表明,薄层厚度减少磁参数提高和同时温度增加而磁性参数。参数会导致减少融化薄层厚度以及无量纲温度。领域,描绘了确定稳定解决方案。

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