首页> 外文期刊>Applied Mathematical Modelling >Direct numerical simulation of turbulent non-Newtonian flow using OpenFOAM
【24h】

Direct numerical simulation of turbulent non-Newtonian flow using OpenFOAM

机译:开放式湍流非牛顿流动的直接数值模拟

获取原文
获取原文并翻译 | 示例
       

摘要

Understanding transition and turbulence in the flow of shear-thinning non-Newtonian fluids remains substantially unresolved and additional research is required to develop better computational methods for wall-bounded turbulent flows of these fluids. Previous DNS studies of shear-thinning fluids mainly use purpose-built codes and simple geometries such as pipes and channels. However in practical application, the geometry of mixing vessels, pumps and other process equipment is far more complex, and more flexible computational methods are required. In this paper a general-purpose DNS approach for shear-thinning fluids is undertaken using the OpenFOAM CFD library. DNS of turbulent Newtonian and non-Newtonian flow in a pipe flow are conducted and the accuracy and efficiency of OpenFOAM are assessed against a validated high-order spectral element-Fourier DNS code - Semtex. The results show that OpenFOAM predicts the flow of shear-thinning fluids to be a little more transitional than the predictions from Semtex, with lower radial and azimuthal turbulence intensities and higher axial intensity. Despite this, the first and second order turbulence statistics differ by at most 16%, and usually much less. An assessment of the parallel scaling of OpenFOAM indicates that OpenFOAM scales very well for the CPUs from 8 to 512, but the intranode scalability is poor for less than 8CPUs. The present work shows that OpenFOAM can be used for DNS of shear-thinning fluids in the simple case of pipe flow, and suggests that more complex flows, where flow separation is often important, are likely to be simulated with accuracies that are acceptably good for engineering application. (C) 2019 Elsevier Inc. All rights reserved.
机译:了解剪切稀疏非牛顿流体流动中的过渡和湍流仍然基本上未解决,并且需要额外的研究来开发这些流体的壁有限湍流流动的更好的计算方法。以前的剪切变薄流体的DNS研究主要使用目的地守则和简单的几何形状,如管道和通道。然而,在实际应用中,混合容器,泵和其他工艺设备的几何形状更复杂,需要更灵活的计算方法。本文采用OppoFoam CFD文库进行了一种用于剪切薄液的通用DNS方法。对管道流动中的湍流牛顿和非牛顿流动的DNS进行了,并评估了OpenFoam的准确性和效率,用于验证的高阶频谱元素 - 傅立叶DNS代码 - SEMTEX。结果表明,OpenFoam预测剪切变薄流体的流动比来自Semtex的预测更长的过渡,具有较低的径向和方位湍流强度和更高的轴向强度。尽管如此,第一个和二阶湍流统计数据最多为16%,通常更少。对OpenFoam的并行缩放的评估表明,OpenFoam为CPU为8到512的尺度非常好,但Intranode可伸缩性差低于8cpus。目前的工作表明,在管道流动的简单情况下,OpenFoam可以用于剪切变薄流体的DNS,并表明流动分离通常很重要的流量更复杂,可以用可接受的准确性模拟工程应用。 (c)2019 Elsevier Inc.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号