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Dynamics of fibres in a turbulent flow field - A particle-level simulation technique

机译:湍流场中纤维的动力学-粒子级模拟技术

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摘要

A particle-level simulation technique has been developed for modelling the flow of fibres in a turbulent flow field. A single fibre is conceived here as a chain of segments, thus enabling the model fibre to have all the degrees of freedom (translation, rotation, bending and twisting) needed to realistically reproduce the dynamics of real fibres. Equations of motion are solved for each segment, accounting for the interaction forces with the fluid, the contact forces with other fibres and the forces that maintain integrity of the fibre. The motion of the fluid is resolved as a combination of 3D mean flow velocities obtained from a CFD code and fluctuating turbulent velocities derived from the Langevin equation. A case of homogeneous turbulence is treated in this paper. The results obtained show that fibre floes in air-fibre flows can be created even when attractive forces are not present. In such a case, contacts between fibres, properties of an individual fibre (such as flexibility and equilibrium shapes) and properties of the flow of the carrying fluid are shown to govern the physics behind formation and breaking up of fibre floes. Highly irregular fibre shapes and stiff fibres lead to strong flocculation. The modelling framework applied in this work aims at making possible a numerical model applicable for designing processes involving transport of fibres by air at industrial scale.
机译:已经开发了一种粒子级模拟技术,用于对湍流场中纤维的流动进行建模。此处将一根光纤设想为段链,从而使模型光纤具有实际再现真实纤维动力学所需的所有自由度(平移,旋转,弯曲和扭曲)。求解每个部分的运动方程,考虑与流体的相互作用力,与其他纤维的接触力以及保持纤维完整性的力。流体的运动通过从CFD代码获得的3D平均流速和从Langevin方程得出的脉动湍流速度的组合来解析。本文讨论了均匀湍流的情况。所得结果表明,即使不存在吸引力,也可以在空气流中形成纤维絮凝物。在这种情况下,显示出纤维之间的接触,单个纤维的性质(例如柔韧性和平衡形状)以及载流的流动性质决定着纤维絮凝物形成和破裂的物理原理。高度不规则的纤维形状和坚硬的纤维会导致强烈的絮凝。在这项工作中使用的建模框架旨在使数值模型适用于设计涉及工业规模的空气中纤维运输过程的数值模型。

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