论文标题
振荡剪切流中柔性丝的动力学
Dynamics of flexible filaments in oscillatory shear flows
论文作者
论文摘要
柔性纤维和粘性流之间的流体结构相互作用在各种生物学现象,医疗问题和工业过程中起着至关重要的作用。特别感兴趣的是粒子在时间依赖性流中自由运输的情况。这项工作阐明了通过结合微流体实验,数值模拟和理论建模的振荡剪切流下肌动蛋白丝的动力学和形态。我们的工作表明,与稳定的剪切流相反,稳定的剪切流相反,在流动对准状态的较小的方向波动会引发和变形,周期性的流动逆转使细丝可以在每个循环开始时探索许多不同的构型。在振荡半个时间期间对细丝运动的研究突出了初始细丝取向在紧急动力学上的关键作用。在稳定的剪切流中,这种定向和变形之间的这种强耦合导致新的变形方案和新型的高阶屈曲模式。我们分析的主要结果是抑制屈曲不稳定性的可能性即使在非常强的流动中,振荡频率和初始细丝取向的某些组合也可能。我们通过弱非线性的野兽理论来解释这种异常的行为,在这种情况下,我们将细丝视为不可延迟的Brownian Euler-Bernoulli杆,其流体动力学由局部细长体型理论描述。
The fluid-structure interactions between flexible fibers and viscous flows play an essential role in various biological phenomena, medical problems, and industrial processes. Of particular interest is the case of particles freely transported in time-dependent flows. This work elucidates the dynamics and morphologies of actin filaments under oscillatory shear flows by combining microfluidic experiments, numerical simulations, and theoretical modeling. Our work reveals that, in contrast to steady shear flows, in which small orientational fluctuations from a flow-aligned state initiate tumbling and deformations, the periodic flow reversal allows the filament to explore many different configurations at the beginning of each cycle. Investigation of filament motion during half time periods of oscillation highlights the critical role of the initial filament orientation on the emergent dynamics. This strong coupling between orientation and deformation results in new deformation regimes and novel higher-order buckling modes absent in steady shear flows. The primary outcome of our analysis is the possibility of suppression of buckling instabilities for certain combinations of the oscillation frequency and initial filament orientation, even in very strong flows. We explain this unusual behavior through a weakly nonlinear Landau theory of buckling, in which we treat the filaments as inextensible Brownian Euler-Bernoulli rods whose hydrodynamics are described by local slender-body theory.