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Gravity-driven flow of continuous thin liquid films on non-porous substrates with topography

机译:连续薄液膜在具有形貌的无孔基材上的重力驱动流动

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摘要

A range of two- and three-dimensional problems is explored featuring the gravity-driven flow of a continuous thin liquid film over a non-porous inclined flat surface containing well-defined topography. These are analysed principally within the framework of the lubrication approximation, where accurate numerical solution of the governing nonlinear equations is achieved using an efficient multigrid solver.ududResults for flow over one-dimensional steep-sided topographies are shown to be in very good agreement with previously reported data. The accuracy of the lubrication approximation in the context of such topographies is assessed and quantified by comparison with finite element solutions of the full Navier–Stokes equations, and results support the consensus that lubrication theory provides an accurate description of these flows even when its inherent assumptions are not strictly satisfied. The Navier–Stokes solutions also illustrate the effect of inertia on the capillary ridge/trough and the two-dimensional flow structures caused by steep topography.ududSolutions obtained for flow over localized topography are shown to be in excellent agreement with the recent experimental results of Decré & Baret (2003) for the motion of thin water films over finite trenches. The spread of the ‘bow wave’, as measured by the positions of spanwise local extrema in free-surface height, is shown to be well-represented both upstream and downstream of the topography by an inverse hyperbolic cosine function.ududAn explanation, in terms of local flow rate, is given for the presence of the ‘downstream surge’ following square trenches, and its evolution as trench aspect ratio is increased is discussed. Unlike the upstream capillary ridge, this feature cannot be completely suppressed by increasing the normal component of gravity. The linearity of free-surface response to topographies is explored by superposition of the free surfaces corresponding to two ‘equal-but-opposite’ topographies. Results confirm the findings of Decré & Baret (2003) that, under the conditions considered, the responses behave in a near-linear fashion.ud
机译:探索了一系列二维和三维问题,其特征是连续的液体薄膜在重力作用下流过无孔倾斜平面且表面轮廓清晰。这些主要是在润滑近似的框架内进行分析的,其中使用高效的多网格求解器可以实现对控制非线性方程式的精确数值解。 ud ud一维陡峭侧面地形的流动结果非常好与先前报告的数据一致。通过与完整的Navier–Stokes方程的有限元解进行比较,可以评估和量化这种地形下润滑近似的准确性,结果支持这样的共识,即润滑理论即使对它们的固有假设也能提供对这些流动的准确描述。并不完全满意。 Navier–Stokes解决方案还说明了惯性对陡峭地形引起的毛细管脊/槽和二维流动结构的影响。 ud ud显示的在局部地形上流动的解决方案与最近的实验非常吻合Decré&Baret(2003)的研究结果表明水膜在有限沟槽上的运动。通过反双曲余弦函数,由跨度局部极值在自由表面高度中的位置测得的“弓形波”的展宽在地形的上游和下游都得到了很好的表示。就局部流速而言,给出了方形沟槽之后“下游涌流”的存在,并讨论了随着沟槽纵横比的增加其演变。与上游毛细管不同,无法通过增加重力的法向分量来完全抑制此功能。自由表面对地形的响应的线性度是通过与两个“等而对置”地形相对应的自由表面的叠加来探索的。结果证实了Decré&Baret(2003)的发现,即在考虑的条件下,响应以接近线性的方式表现。

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