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Numerical simulation of reactive flow in liquid composite molding using flux-corrected transport (FCT) based finite element/control volume (FE/CV) method

机译:基于基于流量校正输运(FCT)的有限元/控制体积(FE / CV)方法的液体复合材料成型反应流的数值模拟

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摘要

The mold-filling simulation of liquid composite molding (LCM) is of great importance in optimizing this cost-effective polymer-composites manufacturing process. The flow in LCM is a convection-dominated reactive, non-isothermal flow involving a moving boundary, so the Calerkin finite element method (FEM) has to be adapted with stabilization techniques to solve such problems. The streamline-upwind Petrov-Galerkin (SUPG) method is one of the most popular stabilized methods. However, the use of SUPG still leads to localized numerical wiggles in the vicinity of sharp solution gradients, which is often encountered in the 3D mold-filling simulation of LCM for thick parts. In this study, we propose to use the flux-corrected transport (FCT) based FEM to solve a set of highly convective transport equations. The numerical examples presented in this paper demonstrate the excellent performance of FCT based FEM in suppressing spurious oscillations in the regions of steep solution-gradients as opposed to the numerical instability of SUPG in such regions. For the first time, the FCT based FEM combined with the control-volume method is employed to simulate the non-isothermal mold-filling process in LCM. We have developed a simulation code PORE-FLOW? based on the scheme proposed in the study. Numerical studies have proven the stability of the FCT based FEM while modeling the mold-filling process of LCM.
机译:液体复合材料成型(LCM)的模具填充模拟对于优化这种经济高效的聚合物复合材料制造工艺至关重要。 LCM中的流动是对流主导的反应性非等温流动,涉及移动边界,因此必须采用稳定技术来适应Calerkin有限元方法(FEM),以解决此类问题。流线迎风Petrov-Galerkin(SUPG)方法是最流行的稳定方法之一。但是,SUPG的使用仍然会导致在急剧的溶液梯度附近出现局部数字摆动,这在厚零件的LCM的3D模具填充模拟中经常遇到。在这项研究中,我们建议使用基于通量校正输运(FCT)的FEM来求解一组高对流输运方程。本文提供的数值示例证明了基于FCT的FEM在抑制陡峭梯度区域中的伪振荡方面的出色表现,与SUPG在此类区域中的数值不稳定性相反。首次将基于FCT的FEM与控制量方法相结合,用于模拟LCM中的非等温模具填充过程。我们已经开发了仿真代码PORE-FLOW?根据研究中提出的方案。数值研究已证明,在对LCM的注模过程进行建模时,基于FCT的FEM的稳定性。

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