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首页> 外文期刊>Computers & Fluids >Unsteady boundary layer flow of a nanofluid past a moving surface in an external uniform free stream using Buongiorno's model
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Unsteady boundary layer flow of a nanofluid past a moving surface in an external uniform free stream using Buongiorno's model

机译:使用Buongiorno模型在外部均匀自由流中通过运动表面的纳米流体的非稳定边界层流

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摘要

The unsteady boundary-layer flow and heat transfer of a nanofluid past a moving surface in an external uniform free stream with leading edge accretion or ablation is studied theoretically. The model used for the nanofluid incorporates the effects of Brownian motion and thermophoresis. A similarity solution of the flow, heat transfer and nanoparticle volume fraction involving steady-state rates is presented. The non-linear coupled differential (similarity) equations are solved numerically using the function bvp4c from Matlab for different values of the governing parameters. It is found that dual, upper and lower branch solutions exist of the similarity equations, and these solutions depend on the leading edge accretion/ablation parameter. It results in from the stability analysis that the upper branch solutions are stable (physically realizable), while the lower branch solutions are not stable (not physically realizable). It is also found that there is a qualitative change in this boundary layer solution compared with the Rayleigh and Blasius problems for nanofluids.
机译:从理论上研究了纳米流体在外部均匀自由流中不稳定流动的边界层流和传热,该流体在外部均匀的自由流中经过移动表面,并具有前缘积聚或烧蚀。用于纳米流体的模型结合了布朗运动和热泳的影响。提出了涉及稳态速率的流动,传热和纳米颗粒体积分数的相似性解决方案。对于不同的控制参数值,使用Matlab的函数bvp4c对非线性耦合的差分(相似性)方程进行数值求解。发现相似方程存在对偶,上下分支解,这些解取决于前沿的积聚/消融参数。从稳定性分析中得出,上分支解决方案是稳定的(可物理实现的),而下分支解决方案是不稳定的(物理上无法实现的)。还发现与纳米流体的Rayleigh和Blasius问题相比,该边界层解决方案存在质的变化。

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