论文标题

粘膜液体涂层圆柱管的内部的表面张力驱动的演变

Surface-tension-driven evolution of a viscoplastic liquid coating the interior of a cylindrical tube

论文作者

Shemilt, James, Horsley, Alexander, Jensen, Oliver, Thompson, Alice, Whitfield, Carl

论文摘要

肺中气道闭合的一种机制是粘液层的表面张力驱动的不稳定,该粘液层排列了气道壁。我们研究了粘膜液体液体覆盖刚性管的内部的轴对称层的不稳定性,这是一个简单的气道模型,考虑了粘液的屈服应力。使用长波理论得出了液态厚度的进化方程,我们还从中得出了更简单的薄膜进化方程。在薄膜的情况下,我们表明,进化方程的边缘收益的静态溶液的两个分支可用于预测触发不稳定性所需的初始扰动的大小,并量化了如何增加毛细血管宾汉数(参数测量的屈服应力相对于表面张力)减少层的最终变形。使用长波演化方程的数值溶液,我们量化了如何随着毛细管Bingham数量增加而形成液体插头所需的临界层厚度如何增加。我们讨论了这些发现对于在阻塞条件(例如囊性纤维化)中建模气道闭合的重要性,在囊性纤维化中,粘液层通常更厚,并且屈服应力更高。

One mechanism for airway closure in the lung is the surface-tension-driven instability of the mucus layer which lines the airway wall. We study the instability of an axisymmetric layer of viscoplastic Bingham liquid coating the interior of a rigid tube, which is a simple model for an airway that takes into account the yield stress of mucus. An evolution equation for the thickness of the liquid layer is derived using long-wave theory, from which we also derive a simpler thin-film evolution equation. In the thin-film case, we show that two branches of marginally-yielded static solutions of the evolution equation can be used to both predict the size of initial perturbation required to trigger instability and quantify how increasing the capillary Bingham number (a parameter measuring yield stress relative to surface tension) reduces the final deformation of the layer. Using numerical solutions of the long-wave evolution equation, we quantify how the critical layer thickness required to form a liquid plug in the tube increases as the capillary Bingham number is increased. We discuss the significance of these findings for modelling airway closure in obstructive conditions such as cystic fibrosis, where the mucus layer is often thicker and has a higher yield stress.

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