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首页> 外文期刊>Rheologica Acta >On the fiber orientation in steady recirculating flows involving short fibers suspensions
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On the fiber orientation in steady recirculating flows involving short fibers suspensions

机译:在涉及短纤维悬浮液的稳定循环流中的纤维取向

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In this work we present a new numerical strategy to treat the 3D Fokker–Planck equation in steady recirculating flows. This strategy combines some ideas of the method of particles, with a more original treatment of the periodicity condition, which characterizes the steady solution of the FP equation in steady recirculating flows, as usually encountered in some rheometric devices. Using this numerical technique the fiber orientation distribution can be computed accurately in any steady recirculating flow. The simulation results can be used to identify some rheological parameters of the suspension, using an inverse technique, as well as to analyze the validity of some simplified models widely used, which require a closure relation. Thus, in this paper several closure relations of the fourth-order orientation tensor will be discussed in the context of a numerical example involving a steady recirculating flow.
机译:在这项工作中,我们提出了一种新的数值策略,用于处理稳定循环流中的3D Fokker-Planck方程。这种策略将粒子方法的一些思想与对周期性条件的更原始处理结合在一起,这种特性表征了在稳定的再循环流中FP方程的稳定解,这在某些流变仪中通常会遇到。使用这种数值技术,可以在任何稳定的循环流中精确地计算出纤维取向分布。仿真结果可用于通过逆向技术识别悬浮液的一些流变参数,以及分析一些广泛使用的,需要封闭关系的简化模型的有效性。因此,在本文中,将在涉及稳定再循环流的数值示例的背景下讨论四阶取向张量的几种闭合关系。

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