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Transient two-dimensional natural convection flow of a nanofluid past an isothermal vertical plate using Buongiorno's model

机译:使用Buongiorno模型的纳米流体通过等温垂直平板的瞬态二维自然对流

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Purpose - The purpose of this paper is to present a numerical investigation of the transient two-dimensional natural convective boundary-layer flow of a nanofluid past an isothermal vertical plate by incorporating the effects of Brownian motion and thermophoresis in the mathematical model. Design/methodology/approach - The problem is formulated using the Oberbeck-Boussinesq and the standard boundary-layer approximations. The governing coupled non-linear partial differential equations for conservation of mass, momentum, thermal energy and nanoparticle volume fraction have been solved by using an efficient implicit finite-difference scheme of the Crank-Nicolson type, which is stable and convergent. Numerical computations are performed and the results for velocity, temperature and nanoparticle volume fraction are presented in graphs at different values of system parameters such as Brownian motion parameter, thermophoresis parameter, buoyancy ratio parameter, Prandtl number, Lewis number and dimensionless time. The results for local and average skin-friction and Nusselt number are also presented graphically and discussed thoroughly. Findings - It is found that the velocity, temperature and nanoparticle volume fraction profiles enhance with respect to time and attain steady-state values as time progresses. The local Nusselt number is found to decrease with increasing thermophoresis parameter, while it increases slightly with increasing Brownian motion parameter. To validate the present numerical results, the steady-state local Nusselt number results for the limiting case of a regular fluid have been compared with the existing well-known results at different Prandtl numbers, and the results are found to be in an excellent agreement Research limitations/implications - The present analysis is limited to the transient laminar natural convection flow of a nanofluid past an isothermal semi-infinite vertical plate in the absence of viscous dissipation and thermal radiation. The unsteady natural convection flow of a nanofluid will be investigated for various physical conditions in a future work. Practical implications - Unsteady flow devices offer potential performance improvements as compared with their steady-state counterparts, and the flow fields in the unsteady flow devices are typically transient in nature. The present study provides very useful information for heat transfer engineers to understand the heat transfer enhancement with the nanofiuid flows. The present results have immediate relevance in cooling technologies. Originality/value - The present research work is relatively original and illustrates the transient nature of the natural convective nanofiuid boundary-layer flow in the presence of Brownian motion and thermophoresis.
机译:目的-本文的目的是通过将布朗运动和热泳效应纳入数学模型,对流经等温垂直平板的纳米流体的瞬态二维自然对流边界层流动进行数值研究。设计/方法/方法-问题是使用Oberbeck-Boussinesq和标准边界层近似公式表示的。通过使用稳定且收敛的Crank-Nicolson型有效隐式有限差分方案,已解决了控制质量,动量,热能和纳米颗粒体积分数守恒的耦合非线性偏微分方程。进行了数值计算,并且在不同的系统参数值(例如布朗运动参数,热泳参数,浮力比参数,普朗特数,刘易斯数和无量纲时间)下,以图表形式显示了速度,温度和纳米颗粒体积分数的结果。局部和平均皮肤摩擦和Nusselt数的结果也以图形方式显示并进行了深入讨论。发现-发现速度,温度和纳米颗粒体积分数分布随时间而增强,并随着时间的推移达到稳态值。发现局部努塞尔数随热泳参数的增加而减小,而随布朗运动参数的增加而略有增加。为了验证当前的数值结果,将常规流体极限情况下的稳态局部Nusselt值结果与现有的众所周知的不同Prandtl值的结果进行了比较,发现这些结果具有很好的一致性。局限/含意-当前的分析仅限于在没有粘性耗散和热辐射的情况下,纳米流体通过等温半无限垂直板的瞬态层流自然对流。在未来的工作中,将针对各种物理条件研究纳米流体的非稳态自然对流。实际意义-非稳态流量设备与稳态流量设备相比,可能会提高性能,并且非稳态流量设备中的流场本质上通常是瞬态的。本研究为传热工程师提供了非常有用的信息,帮助他们了解纳米流体流对传热的促进作用。目前的结果与冷却技术有直接关系。原创性/价值-目前的研究工作是相对新颖的,它说明了在布朗运动和热泳的情况下自然对流纳米流体边界层流动的瞬态性质。

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