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首页> 外文期刊>International Communications in Heat and Mass Transfer >Non-magnetized mixed convective viscous flow submerged in titanium oxide and aluminum titanium oxide hybrid nanoparticles towards a surface of cylinder
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Non-magnetized mixed convective viscous flow submerged in titanium oxide and aluminum titanium oxide hybrid nanoparticles towards a surface of cylinder

机译:浸没在氧化钛中氧化钛和氧化钛杂交纳米粒子朝向圆柱表面的非磁化混合对流粘性流动

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摘要

Hybrid nanofluids are novel fluids created by suspending two or more dissimilar nano sized particles in base fluids. Thermal conductivity of hybrid nanofluids is more than nanofluids. Now a day, due to high thermal conductivity and applications in engineering and industry, hybrid nanofluids have become attractive area of research for scientist and researchers. The main objective of current communication is to study the stagnation point flow and heat transfer in viscous hybrid nanofluid towards a stretched cylinder. Flow characteristics are examined under the effect of magnetic field and mixed convention. Furthermore, energy communication is constructed considering thermal radiation, uniform heat source and viscous dissipation. The obtained governing dimensional model is transformed into ordinary ones using suitable transformations. ND-solve code is used to tackle the ordinary differential equations. Results are discussed and compared subject to nanofluid and hybrid nanofluid and plotted graphically. Moreover, Nusselt number and skin friction coefficient are studied numerically. Key outcomes are highlighted at the end.
机译:杂交纳米流体是通过悬浮在基础流体中的两个或更多个异种纳米尺寸颗粒而产生的新型液体。杂化纳米流体的导热率大于纳米流体。现在,一天,由于高热导电性和工程和工业应用,杂交纳米流体已成为科学家和研究人员的有吸引力的研究领域。目前通信的主要目的是研究粘性杂交纳米流体朝向拉伸圆筒的停滞点流量和传热。在磁场和混合惯例的影响下检查流动特性。此外,考虑热辐射,均匀的热源和粘性耗散来构造能量通信。使用合适的转化将获得的控制尺寸模型转化为普通的模型。 ND-SOUPT代码用于解决常规方程。讨论并将结果与​​纳米流体和杂交纳米流体进行了讨论并进行了比较并以图形为绘制。此外,数值研究了NUSERET数和皮肤摩擦系数。重点结果在最后突出显示。

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