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A finite element model for dynamic wetting on flexible solids using arbitrary Lagrangian Eulerian (ALE) mesh motion

机译:采用任意拉格朗日欧拉(ALE)网格运动的柔性固体动态润湿有限元模型

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Dynamic Wetting is an important phenomena observed in many industrial applications. Computational techniques for tracking the location of a contact line on rigid solids are well established. A viscous stress singularity can arise at a dynamic contact line due to a double-valued velocity at the contact line in the liquid domain. This viscous stress singularity is often relieved using the Navier slip condition. Tracking the location of a contact line on a flexible solid is more challenging because the substrate deformation changes as the contact line slides across the solid surface. Also, an additional singularity can arise in the elastic stress singularity due to surface tension acting as a line force at the contact line. Arbitrary Lagrangian Eulerian (ALE) mesh motion enables tracking the motion of a contact line on a flexible solid by decoupling the mesh motion and the motion of the underlying solid or liquid. This paper will present a Finite Element formulation for solving for fluid structural interactions between a viscous liquid and an elastic solid with dynamic wetting on the elastic solid surface. Boundary conditions have been developed to conserve mass and momentum along the fluid-solid interface and in the vicinity of the dynamic contact line. The elastic stress singularity is relieved by distributing the line force over a finite contact region; to ensure that the deformation near the contact line is insensitive to motion of the contact line, the size of elements adjacent to the contact line are fixed. This model has been used to predict meniscus location in the upstream gap of a slot coaler as a prototype flow for modeling dynamic wetting on flexible solids. The results show that, generally, higher substrate flexibility leads to less displacement of the meniscus from its static location.
机译:动态润湿是许多工业应用中观察到的重要现象。用于跟踪刚性固体上的接触线位置的计算技术是很好的。由于液域接触线处的双值速度,粘性应力奇点可以在动态接触线处产生。这种粘性应力奇点通常使用Navier Spl条件进行缓解。跟踪柔性固体上的接触线的位置更具挑战性,因为基板变形随着接触线滑过固体表面而变化。而且,由于在接触线处的线力的表面张力,在弹性应力奇点中可以出现附加的奇点性。任意拉格朗日欧拉(ALE)网格运动通过去耦网运动和底层固体或液体的运动来跟踪柔性固体上的接触线的运动。本文将呈现用于求解粘性液体和弹性固体之间的流体结构相互作用的有限元配方,其动态润湿在弹性固体表面上。已经开发了边界条件以节省沿流体固体界面和动态接触线附近的质量和动量。通过在有限的接触区域上分配线力来减轻弹性应力奇异性;为了确保接触线附近的变形对接触线的运动不敏感,邻近接触线的元件的尺寸是固定的。该模型已被用于预测槽煤机上游间隙中的弯月面定位,作为用于对柔性固体上的动态润湿建模的原型流动。结果表明,通常,较高的衬底柔性导致椎间盘突出的静态位置较少。

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