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Effects of Thermal Noise on the Transitional Dynamics of an Inextensible Elastic Filament in Stagnation Flow

机译:热噪声对滞流中不可伸长弹性丝的过渡动力学的影响

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摘要

We investigate the dynamics of a single inextensible elastic filament subject to anisotropic friction in a viscous stagnation-point flow, by employing both a continuum model represented by Langevin type stochastic partial differential equations (SPDEs) and a Dissipative Particle Dynamics (DPD) method. Unlike previous works, the filament is free to rotate and the tension along the filament is determined by the local inextensible constraint. The kinematics of the filament is recorded and studied with normal modes analysis. The results show that the filament displays an instability induced by negative tension, which is analogous to Euler buckling of a beam. Symmetry breaking of normal modes dynamics and stretch-coil transitions are observed above the threshold of the buckling instability point. Furthermore, both temporal and spatial noise are amplified resulting from the interaction of thermal fluctuations and nonlinear filament dynamics. Specifically, the spatial noise is amplified with even normal modes being excited due to symmetry breaking, while the temporal noise is amplified with increasing time correlation length and variance.
机译:我们通过使用Langevin型随机偏微分方程(SPDE)表示的连续模型和耗散粒子动力学(DPD)方法,研究在粘性滞止点流中经受各向异性摩擦的单个不可伸长弹性丝的动力学。与以前的作品 不同,细丝可以自由旋转,并且沿着细丝的张力由局部不可扩展的约束条件确定。记录长丝的运动学,并通过正常模式分析进行研究。结果表明,灯丝表现出由负张力引起的不稳定性,这类似于光束的欧拉屈曲。在屈曲不稳定性点的阈值以上,可以观察到正常模式动力学和拉伸线圈过渡的对称破坏。此外,由于热波动和非线性灯丝动力学的相互作用,会放大时间和空间噪声。具体地,由于对称性破坏,甚至在正常模式被激发时,空间噪声也被放大,而时间噪声随着时间相关长度和方差的增加而被放大。

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