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Investigation of structural parameters of dilute polymer solutions using velocity measurements

机译:使用速度测量研究稀聚合物溶液的结构参数

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The most widely adopted constitutive model of viscoelastic flows based on the kinetic theory is the FENE (Finitely Extensible Nonlinear Elastic) model. This model represents a polymer molecule by a dumbbell which consists of two beads connected by a spring. The direction and elongation of the spring are described by the Fokker-Planck equation. The two important parameters in the Fokker-Planck equation, which represent the relaxation time and the maximum extensibility of the dumbbell, determine the viscoelasticity of flows and affect the velocity fields. In the present work, we devise a method of estimating these two parameters using velocity measurements. The relevant inverse problem is solved by converting it to a minimization problem of a performance function employing a conjugate gradient method. The present scheme is shown to estimate these structural parameters even with noisy velocity measurements.
机译:基于动力学理论,最广泛采用的粘弹性流本构模型是FENE(有限可扩展非线性弹性)模型。该模型通过哑铃表示聚合物分子,该哑铃由通过弹簧连接的两个小珠组成。弹簧的方向和伸长率由Fokker-Planck方程描述。 Fokker-Planck方程中的两个重要参数分别代表松弛时间和哑铃的最大伸长率,它们决定了流体的粘弹性并影响速度场。在当前的工作中,我们设计了一种使用速度测量来估计这两个参数的方法。通过使用共轭梯度法将其转换为性能函数的最小化问题,可以解决相关的逆问题。示出了本方案以甚至在噪声速度测量的情况下估计这些结构参数。

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