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Gravitational extension of a fluid cylinder with internal structure

机译:具有内部结构的液压缸的引力扩展

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Motivated by the fabrication of microstructured optical fibres, a model is presented for the extension under gravity of a slender fluid cylinder with internal structure, It is shown that the general problem decouples into a two-dimensional surface-tension-driven Stokes flow that governs the transverse shape and an axial problem that depends upon the transverse flow. The problem and its solution differ from those obtained for fibre drawing, because the problem is unsteady and the fibre tension depends on axial position. Solutions both with and without surface tension are developed and compared, which show that the relative importance of surface tension depends upon both the parameter values and the geometry under consideration. The model is compared with experimental data and is shown to he in good agreement, These results also show that surface-tension effects are essential to accurately describing the cross-sectional shape.
机译:通过微结构化光纤的制造,提出了一个具有内部结构的细长流体圆柱体在重力作用下的扩展模型,结果表明,一般问题解耦为控制表面张力的二维斯托克斯流。横向形状以及取决于横向流的轴向问题。该问题及其解决方案与通过纤维拉伸获得的解决方案不同,因为该问题不稳定,并且纤维张力取决于轴向位置。开发并比较了具有和没有表面张力的解决方案,这表明表面张力的相对重要性取决于所考虑的参数值和几何形状。该模型与实验数据进行了比较,并显示出很好的一致性。这些结果还表明,表面张力效应对于准确描述横截面形状至关重要。

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