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首页> 外文期刊>International Journal for Numerical Methods in Fluids >FINITE ELEMENT MODELLING OF FREE SURFACE VISCOELASTIC FLOWS WITH PARTICULAR APPLICATION TO RUBBER MIXING
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FINITE ELEMENT MODELLING OF FREE SURFACE VISCOELASTIC FLOWS WITH PARTICULAR APPLICATION TO RUBBER MIXING

机译:自由表面粘弹性流的有限元建模及其在橡胶混合中的特殊应用

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摘要

Internal mixers are used extensively in industry for mixing the components of rubber compounds. In these operations, in order to achieve effective mixing, the mixer chamber is always partially filled. This inevitably results in the appearance of multiple free surfaces in flow fields inside rubber mixer chambers. Mathematical modelling of such a flow regime is not a simple task and requires a great deal of effort. Traditional free surface flow-modelling techniques, which are mainly based on the use of volume-of-fluid or pseudo-density approaches in an Eulerian framework, are not flexible enough to cope with this problem. In this paper we describe a new method for the numerical modelling of free surface flows. In this method the pseudo-density approach is extended to a special Lagrangian framework along the trajectories of the fluid particles. We show that the developed scheme can very effectively simulate viscoelastic free surface flows encountered in rubber-mixing processes.
机译:内部混合器在工业中广泛用于混合橡胶混合物的组分。在这些操作中,为了实现有效的混合,混合室始终要部分填充。这不可避免地导致在橡胶混合器腔室内的流场中出现多个自由表面。这样的流动状态的数学建模不是简单的任务,需要大量的努力。传统的自由表面流动建模技术主要基于在欧拉框架中使用流体体积或伪密度方法,因此不够灵活,无法解决此问题。在本文中,我们描述了一种用于自由表面流数值模拟的新方法。在这种方法中,伪密度方法沿流体粒子的轨迹扩展到特殊的拉格朗日框架。我们表明,开发的方案可以非常有效地模拟橡胶混合过程中遇到的粘弹性自由表面流动。

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