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Cross flow and heat transfer past a permeable stretching/shrinking sheet in a hybrid nanofluid

机译:交叉流动和传热通过杂交纳米流体中的可渗透拉伸/收缩片

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Purpose - The purpose of this paper is to study the laminar boundary layer cross flow and heat transfer on a rotational stagnation-point flow over either a stretching or shrinking porous wall submerged in hybrid nanofluids. The involved boundary layers are of stream-wise type with stretching/shrinking process along the surface. Design/methodology/approach - Using appropriate similarity variables the partial differential equations are reduced to ordinary (similarity) differential equations. The reduced system of equations is solved analytically (by high-order perturbed field propagation for small to moderate stretching/shrinking parameter and low-order perturbation for large stretching/shrinking parameter) and numerically using the function bvp4c from MATLAB for different values of the governing parameters. Findings - It was found that the basic similarity equations admit dual (upper and lower branch) solutions for both stretching/shrinking surfaces. Moreover, performing a linear stability analysis, it was confirmed that the upper branch solution is realistic (physically realizable), while the lower branch solution is not physically realizable in practice. These dual solutions will be studied in the present paper. Originality/value - The authors believe that all numerical results are new and original and have not been published before for the present problem.
机译:目的 - 本文的目的是研究层边界层交叉流量和传热在旋转或收缩的多孔壁上流过杂交纳米流体的拉伸或收缩的多孔壁。所涉及的边界层具有沿着表面的拉伸/收缩过程的流式型。设计/方法/方法 - 使用适当的相似变量,部分微分方程减少到普通(相似度)差分方程。分析(通过高阶扰动场传播的分析(通过高型拉伸/收缩参数和大的拉伸/收缩参数的低阶扰动)和大量的扰动/收缩参数的低阶扰动)和数量的等式的减少的扰动场传播),并使用来自MATLAB的功能BVP4C进行控制的不同值参数。结果 - 发现基本相似性方程承认用于拉伸/收缩表面的双(上部和下部分支)解决方案。此外,进行线性稳定性分析,证实了上部分支溶液是现实的(物理可实现的),而下部分支解决方案在实践中没有物理可实现。这些双溶液将在本文中进行研究。原创性/值 - 作者认为,所有数值结果都是新的,原创的,并且在目前的问题之前尚未公布。

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