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首页> 外文期刊>JP journal of heat and mass transfer >THE IMPACT OF MARANGONI CONVECTION, MAGNETIC FIELD AND VISCOUS DISSIPATION ON THE THIN FILM UNSTEADY FLOW OF GO-EG/GO-W NANOFLUIDS OVER AN EXTENDING SHEET
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THE IMPACT OF MARANGONI CONVECTION, MAGNETIC FIELD AND VISCOUS DISSIPATION ON THE THIN FILM UNSTEADY FLOW OF GO-EG/GO-W NANOFLUIDS OVER AN EXTENDING SHEET

机译:Marangoni对流,磁场和粘性耗散对延伸薄片上的薄膜不稳定流动的薄膜不稳定流动

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摘要

The Marangoni stream generated due to the gradient of surface temperature and plays an important role in silicon melt, spray, atomic reactors and the thin fluid film. The Marangoni convection liquid film graphene oxide water (GO-W) and ethylene glycol (GO-EG) nanofluid over an unsteady extending sheet are addressed in this work. The two sorts of (GO-W) and (GO-EG) water-based nanofluids have been utilized for the thermal spray analysis. The thickness of the nanoliquid film kept variable for the stable spray rate. The transformed equations of the flow problem have been solved using the optimal homotopy analysis method (OHAM). The impact of the physical parameters versus velocity, and temperature pitches under the influence of the Marangoni convection has been obtained and discussed.
机译:由于表面温度的梯度而产生的Marangoni流,在硅熔体,喷雾,原子反应器和薄的流体膜中起着重要作用。 在这项工作中解决了Marangoni对流液体薄膜石墨烯氧化物水(GO-W)和乙二醇(GO-EG)纳米流体在该工作中得到解决。 已经利用了两种(GO-W)和(GO-)水基纳米流体用于热喷涂分析。 纳米替代膜的厚度保持稳定的喷射速率变化。 使用最优同型分析方法(OHAM)解决了流动问题的变换方程。 已经获得并讨论了物理参数与速度的影响,并讨论了Marangoni对流的影响下的温度间距。

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