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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Mixed convection boundary layer flow past a vertical flat plate embedded in a non-Darcy porous medium saturated by a nanofluid
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Mixed convection boundary layer flow past a vertical flat plate embedded in a non-Darcy porous medium saturated by a nanofluid

机译:混合对流边界层流过垂直平板,该平板嵌入纳米流体饱和的非达西多孔介质中

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Purpose - The purpose of this paper is to numerically solve the problem of steady mixed convection boundary layer flow past a vertical flat plate embedded in a fluid-saturated porous medium filled by a nanofluid. The non-Darcy equation model along with the mathematical nanofluid model proposed by Tiwari and Das (2007) has been used. Design/methodology/approach - Using appropriate similarity transformations, the basic partial differential equations are transformed into ordinary differential equations. These equations have been solved numerically for different values of the nanoparticle volume fraction, the mixed convection and the non-Darcy parameters using the bvp4c function from Matlab. A stability analysis has been also performed Findings - Numerical results are obtained for the reduced skin-friction, heat transfer and for the velocity and temperature profiles. The results indicate that dual solutions exist for the opposing flow case (λ<0). The stability analysis indicates that for the opposing flow case, the lower solution branch is unstable, while the upper solution branch is stable. In addition, it is shown that for a regular fluid (φ = 0) a very good agreement exists between the present numerical results and those reported in the open literature. Research limitations/implications - The problem is formulated for three types of nanoparticles, namely, copper (Cu), alumina (Al_2O_3) and titania (TiO_2). However, the paper present results here only for the Cu nanoparticles. The analysis reveals that the boundary layer separates from the plate. Beyond the turning point it is not possible to get the solution based on the boundary-layer approximations. To obtain further solutions, the full basic partial differential equations have to be solved. Practical implications - Nanofluids have many practical applications, for example, the production of nanostructured materials, engineering of complex fluids, for cleaning oil from surfaces due to their excellent wetting and spreading behavior, etc. Social implications - Nanofluids could be applied to almost any disease treatment techniques by reengineering the nanoparticle properties. Originality/value - The present results are original and new for the boundary-layer flow and heat transfer past a vertical flat plate embedded in a porous medium saturated by a nanofluid. Therefore, this study would be important for the researchers working in porous media in order to become familiar with the flow behavior and properties of such nanofluids.
机译:目的-本文的目的是从数值上解决稳定的混合对流边界层流过垂直平板的问题,该垂直平板埋在由纳米流体填充的流体饱和多孔介质中。使用了非达西方程模型以及Tiwari和Das(2007)提出的数学纳米流体模型。设计/方法/方法-使用适当的相似性转换,基本的偏微分方程被转换为常微分方程。这些方程已使用Matlab的bvp4c函数通过数值求解了纳米粒子体积分数,混合对流和非达西参数的不同值。还进行了稳定性分析。结果-获得了减少皮肤摩擦,传热以及速度和温度曲线的数值结果。结果表明,对流情况(λ<0)存在双重解。稳定性分析表明,在逆流情况下,下部溶液支路是不稳定的,而上部溶液支路是稳定的。此外,表明对于常规流体(φ= 0),当前数值结果与公开文献中报道的结果之间存在很好的一致性。研究局限/意义-针对三种类型的纳米粒子提出了该问题,即铜(Cu),氧化铝(Al_2O_3)和二氧化钛(TiO_2)。但是,本文仅在此处针对铜纳米颗粒提供结果。分析表明边界层与板分离。超过转折点,不可能基于边界层近似值获得解。为了获得进一步的解,必须解决全部基本的偏微分方程。实际意义-纳米流体具有许多实际应用,例如,纳米结构材料的生产,复杂流体的工程设计,由于其优异的润湿和铺展性能而用于清洁表面油等。社会意义-纳米流体可以应用于几乎任何疾病通过重新设计纳米粒子的特性来改进处理技术。原创性/价值-对于边界层流和传热的最新结果是新颖的,这些传热和传热是通过垂直平板嵌入埋入纳米流体的多孔介质中进行的。因此,这项研究对于在多孔介质中工作的研究人员至关重要,以便熟悉此类纳米流体的流动行为和特性。

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