论文标题
关于边界振动对粘液动员的影响
On the effect of boundary vibration on Mucus Mobilization
论文作者
论文摘要
在这项研究中,我们研究了粘液在恒定横截面的圆柱管中动员粘液,该圆形横截面受到小振幅振荡剪切(SAOS),假设粘液的粘弹性行为由Oldroyd-B组成型方程描述。采用拉普拉斯变换方法来得出速度曲线,平均速度,瞬时流量和平均流量(即动员)粘液内粘液中的表达式。此外,使用COMSOL多物理学软件开发了2D有限元模型(FEM),以验证考虑牛顿和Oldroyd-B流体的衍生分析解决方案的准确性。此外,还进行了灵敏度研究,以评估振动频率,振动幅度,平均松弛时间和零剪切粘度对粘液动员的影响。结果证明,分析结果和数值结果在可接受的误差耐性之内,因此具有良好的一致性。此外,参数研究表明,当平均松弛时间,振动振幅和振动频率分别增加6倍时,粘液动员的48%,57%和343%提高了6。相反,粘液动员的粘液动机降低了25%。增加振动幅度和振动频率的大小。同样,粘液平均松弛时间的幅度越大,当试管受到边界振动时,粘液动员越好。最后,随着粘液粘度的大小增加,粘液动员减少。
In this study, we investigate the mobilization of mucus in a cylindrical tube of constant cross-section subjected to a Small Amplitude Oscillatory Shear (SAOS) assuming the viscoelastic behavior of mucus is described by the Oldroyd-B constitutive equation. The Laplace transform method was adopted to derive expressions for the velocity profile, average velocity, instantaneous flowrate and mean flowrate (i.e., mobilization) of the mucus within the tube. Additionally, a 2D finite element model (FEM) was developed using COMSOL Multiphysics software to verify the accuracy of the derived analytical solution considering both a Newtonian and an Oldroyd-B fluid. Furthermore, sensitivity studies were performed to evaluate the influence of the vibration frequency, vibration amplitude, mean relaxation time, and zero-shear viscosity on mucus mobilization. Results prove that the analytical and numerical results are within acceptable error tolerance and thus in excellent agreement. Besides, the parametric studies indicate a 48%, 57%, and 343% improvement in mucus mobilization when the mean relaxation time, vibration amplitude, and vibration frequency, respectively were increased by a factor of 6. Conversely, the mucus mobilization decreased by 25% when the zero-shear viscosity was increased by a factor of 6. In general, this study confirms that mucus mobilization in a tube can be improved by increasing the magnitude of vibration amplitude and vibration frequency. Similarly, the larger the magnitude of mucus mean relaxation time the better the mucus mobilization when the tube is subjected to boundary vibrations. Finally, mucus mobilization decreases as the magnitude of mucus viscosity increases.