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Dissipative particle dynamics simulations for fibre suspensions in newtonian and viscoelastic fluids

机译:牛顿流体和粘弹性流体中纤维悬浮液的耗散粒子动力学模拟

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摘要

A versatile model of fibre suspensions in Newtonian and viscoelastic fluids has been developed using dissipative particle dynamics method. The viscoelastic fluid is modelled by linear chains with linear connector spring force (the Oldroyd-B model), which is known to be a reasonable model for the so-called Boger fluid (a dilute suspension of polymer in a highly viscous solvent). The numerical results are in excellent agreement with the analytical results of the Oldroyd-B model in simple shear flow. An effective meso-scale model of fibre in DPD is proposed and then incorporated with simple Newtonian fluid and our Boger fluid to enable entirely study rheological properties of fibre suspensions in both Newtonian and viscoelastic solvents. The numerical results are well compared with available experimental data and other numerical models.
机译:使用耗散粒子动力学方法开发了牛顿和粘弹性流体中纤维悬浮液的通用模型。粘弹性流体是通过具有线性连接器弹力的线性链建模的(Oldroyd-B模型),这是所谓的Boger流体(聚合物在高粘度溶剂中的稀悬浮液)的合理模型。数值结果与Oldroyd-B模型在简单剪切流中的分析结果非常吻合。提出了一种有效的DPD中纤维的介观模型,然后将其与简单的牛顿流体和我们的Boger流体结合使用,从而能够全面研究牛顿和粘弹性溶剂中纤维悬浮液的流变特性。数值结果与可用的实验数据和其他数值模型进行了很好的比较。

著录项

  • 来源
    《Computer Methods in Applied Mechanics and Engineering》 |2010年第24期|p.1593-1602|共10页
  • 作者单位

    School of Materials Science and Engineering, Nanyang Technological University, N3-B4-W310 Nanyang Avenue, 639798 Singapore, Singapore Abbott Vascular, 3200 Lakeside Dr., Santa Clara, CA 95054, USA;

    rnChemical Engineering and Materials Science, UC Davis, 3014 Bainer Hall, CA 95616, USA;

    rnDepartment of Mechanical Engineering, National University of Singapore, 9 Engineering Drive 1, 117576 Singapore, Singapore;

    rnLIMATB, Universite de Bretagne-Sud, Rue de St-Maude, BP 92116, 56321 Lorient Cedex, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    simulation; fibre suspensions; newtonian; oldroyd-B; DPD method;

    机译:模拟;纤维悬浮液;牛顿oldroyd-B;DPD方法;

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