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首页> 外文期刊>International Communications in Heat and Mass Transfer >A study on magneto-hydrodynamic non-Newtonian thermally radiative fluid considering mixed convection impact towards convective stratified surface
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A study on magneto-hydrodynamic non-Newtonian thermally radiative fluid considering mixed convection impact towards convective stratified surface

机译:考虑混合对流影响对对流分层表面的磁力流体动力非牛顿热辐射液的研究

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摘要

Enhancement of heat transportation is an immensely vital topic in industrial and engineering utilizations these days. Cooling liquids like water, propylene glycol (PG) and ethylene glycol (EG) having lower conductivity are utilized as unadulterated liquids in various applications, therefore rationing the heat transportation enhancement. Nonetheless, state-of-the-art fluids (nanoliquids) were recommended with a view to procure enhancement in thermal efficacy. Therefore the Buongiorno nanoliquid model highlighting better thermal efficacy in comparison to aforesaid standard cooling liquids is considered to formulate and analyze the non-Newtonian Casson liquid considering stretchable cylindrical surface. Flow is stratified and mixed convected due to consideration of thermo-solutal stratifications and thermo-solutal buoyancy forces respectively. In addition, Robin conditions, magnetic field and radiation effects are accounted. Differential form is obtained by introducing relevant variables. Homotopy procedure leads to convergent solutions of strong non-linear systems. The plots of significant factors are divulged through graphs.
机译:这些天在工业和工程利用中的增强是一种大量重要的主题。在各种应用中使用具有较低导电性的水,丙二醇(PG)和具有较低导电率的乙二醇(例如)的冷却液体,因此配给热量运输增强。尽管如此,建议使用最先进的液体(纳米喹硫体),以便采取热效的增强。因此,与上述标准冷却液相比,突出了更好的热功效的Buongiorno纳米喹氢喹突模型被认为是考虑伸缩圆柱形表面的非牛顿鲫鱼液体。由于考虑了热源性分层和热源性浮力力,流动分层并混合。此外,核对罗宾条件,磁场和辐射效应。通过引入相关变量来获得差异形式。同型过程导致强非线性系统的收敛溶液。重要因素的曲线通过图泄露。

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