首页> 外文期刊>Journal of Nanofluids >Three-Dimensional Rotating Flow of an Oldroyd-B Nanofluid with Relaxation-Retardation Viscous Dissipation
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Three-Dimensional Rotating Flow of an Oldroyd-B Nanofluid with Relaxation-Retardation Viscous Dissipation

机译:三维旋转Oldroyd-B的流与Relaxation-Retardation Nanofluid粘性耗散

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摘要

The principal aim of this study is to explore the impact of relaxation-retardation viscous dissipation, nonlinear convection, variable chemical reaction, and nonlinear thermal radiation on the three-dimensional rotating flow of an Oldroyd-B nanofluid over an exponentially extended surface. The Buongiorno model that takes into account the Brownian movement and thermophoresis responsible for nanoparticle motion. Exponentially varying temperature and concentration associated with convective heat transfer coefficients are assumed in the boundary conditions. The system of dimensionless ODEs is solved by the spectral quasi-linearization method. The results of the analysis show, among other results that the relaxation time parameter opposes the momentum transport while assisting heat transportation. The retardation time parameter acts to support momentum growth while reducing and resists heat transport. The present study focused on the investigation the effect of relaxation and retardation viscous dissipation on rotating flow of a non-Newtonian fluid (Oldroyd B fluid) past an exponential stretching sheet.
机译:本研究的主要目的是探索relaxation-retardation粘性的影响耗散,非线性对流,变量化学反应和非线性热辐射对三维旋转流的Oldroyd-B nanofluid在成倍增长扩展的表面。考虑到布朗运动热泳负责纳米颗粒运动。浓度与对流热有关转移系数假设的边界条件。通过光谱拟线性化来解决方法。其他结果,弛豫时间参数反对动量传输,同时协助热运输。参数行为来支持增长势头减少和拒绝热传输。研究调查的影响放松和迟钝粘性耗散旋转的非牛顿流体流动奥尔德罗伊德(B流体)过去一个指数拉伸板。

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