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首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Stochastic particle level set simulations of buoyancy-driven droplets in non-Newtonian fluids
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Stochastic particle level set simulations of buoyancy-driven droplets in non-Newtonian fluids

机译:非牛顿流体中浮力驱动液滴的随机粒子能级集模拟

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The aim of this paper is to present stochastic, micro-macro simulations of droplets rising in non-Newtonian fluids by means of a particle level set method implemented using the Finite Element Method (FEM) and semi-Lagrangian schemes. A set of dumbbells scattered throughout the domain conveys the molecular information from the microscopic scale to the macroscopic scale, first by integrating the stochastic-equivalent of the Fokker-Planck equations, then by taking second moments from the internal configurations to produce the polymer stress tensor to be incorporated into the macroscopic momentum equation. The kinetic models considered in this work are the simpler Hooke (Oldroyd-B constitutive) model, and the more realistic 'Finitely Extensible Nonlinear Elastic' (FENE) model. First, we carry out microscopic and macroscopic convergence analyses to validate the numerical calculations of 2D rising droplets, obtaining satisfactory results for grids of size 1/h = {40, 80, 160}, and a number of particles ranging from N-d = 10(5) up to 1.75.10(8), making use of both kinetic models along with mildly viscoelastic effects in solutions with relatively low polymeric concentrations and relaxation times (De = 1, c = 1). We then perform a series of increasingly elastic simulations that ends up with the arrival of two purely non-Newtonian features: the onset of a cusp-like tail and the appearance of downward velocities at a certain distance of the droplet (negative wake). (C) 2015 Elsevier B.V. All rights reserved.
机译:本文的目的是通过使用有限元方法(FEM)和半拉格朗日方案实现的粒子级设置方法,对非牛顿流体中上升的液滴进行随机的,宏观的宏观模拟。散布在整个域中的一组哑铃将分子信息从微观尺度传递到宏观尺度,首先是通过积分Fokker-Planck方程的随机等价物,然后是从内部构型中提取第二个矩来产生聚合物应力张量被纳入宏观动量方程。在这项工作中考虑的动力学模型是更简单的Hooke(Oldroyd-B本构模型)模型和更现实的“有限可扩展非线性弹性”(FENE)模型。首先,我们进行微观和宏观收敛分析,以验证二维上升液滴的数值计算,对于尺寸为1 / h = {40,80,160}的网格以及许多Nd = 10( 5)高达1.75.10(8),同时使用了两种动力学模型以及在聚合物浓度和弛豫时间相对较低(De = 1,c = 1)的溶液中的轻度粘弹性效应。然后,我们执行一系列逐渐增加的弹性模拟,最终得到两个纯非牛顿特征的出现:尖头状尾部的出现和在液滴一定距离处的速度下降(负尾流)。 (C)2015 Elsevier B.V.保留所有权利。

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