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The cell-based smoothed finite element method for viscoelastic fluid flows using fractional-step schemes

机译:分数步法求解粘弹性流体的基于单元的平滑有限元方法

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This paper generalizes the cell-based smoothed finite element method (CS-FEM) to viscoelastic fluid flows under the fractional-step umbrella. The characteristic-based split (CBS) scheme is employed to decouple the Navier-Stokes equations and the Oldroyd-B constitutive model. Moreover, the discrete elastic-viscous-split-stress (DEVSS) procedure and stabilized pressure gradient projection (SPGP) are introduced into a second-order CBS framework. The projections of velocity and pressure gradients therein combine to form the DEVSS-G/CBS(B)-SPGP algorithm that further stabilizes the discretized model. Both proposed schemes are suitable for use in CS-FEM because they accept equal low-order interpolations for primitive variables. The spatial discretization is based upon bilinear four-node quadrilateral elements where all gradient-related items are smoothed without any methodological difficulties. In particular, the cell-based smoothing concept enables accurate evaluation of viscoelastic fluid force. The developed methods are validated against previously published data for several benchmark problems. A satisfactory agreement exists between the present and earlier results. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文将基于单元的平滑有限元方法(CS-FEM)推广到分数步伞下的粘弹性流体流动。基于特征的分裂(CBS)方案用于解耦Navier-Stokes方程和Oldroyd-B本构模型。此外,离散弹性-粘弹性-分离应力(DEVSS)过程和稳定压力梯度投影(SPGP)被引入到二阶CBS框架中。其中速度和压力梯度的投影组合在一起,形成了DEVSS-G / CBS(B)-SPGP算法,该算法进一步稳定了离散模型。两种提议的方案都适合在CS-FEM中使用,因为它们接受原始变量的相等低阶插值。空间离散化基于双线性四节点四边形元素,其中所有与梯度相关的项都得到平滑处理而没有任何方法上的困难。尤其是,基于单元的平滑概念可以对粘弹性流体力进行精确评估。已针对先前发布的数据针对几种基准问题验证了开发的方法。当前结果与早期结果之间存在令人满意的协议。 (C)2019 Elsevier Ltd.保留所有权利。

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