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首页> 外文期刊>Computers & Chemical Engineering >Numerical investigation of Herschel-Bulkley fluid flows in 2D porous media: Yielding behaviour and tortuosity
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Numerical investigation of Herschel-Bulkley fluid flows in 2D porous media: Yielding behaviour and tortuosity

机译:2D多孔介质中Herschel-Bulkley流体流动的数值调查:产生行为和曲折

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摘要

Hydraulic tortuosity is commonly used as an input to macroscopic flow models in porous media, accounting for the sinuosity of the streamlines. It is well known that hydraulic tortuosity does not depend on the applied pressure gradient for Newtonian creeping flows. Nevertheless, this is not necessarily the case for yield stress fluids flows, given the directional nature of both yielding and shear-thinning behaviour. This study aims at a breakthrough on the relationship between the hydraulic tortuosity and the level of yielding. To do so, the hydraulic tortuosity of the flow paths is evaluated in 2D porous media by means of direct numerical simulations and subsequently put in relation with the morphological information of the medium provided by pore-network modelling. Moreover, the effects of pore dimensions, spatial disorder and Theological parameters on yielding behaviour are examined. In most situations, the reported tortuosity values are lower than those obtained for Newtonian fluids.
机译:液压曲折通常用作多孔介质中宏观流模型的输入,占流线的血清。众所周知,液压曲折不依赖于牛顿爬行流的施加压力梯度。然而,鉴于屈服和剪切稀疏行为的定向性,这不一定是屈服应力流体流动的情况。本研究旨在突破液压曲折与屈服水平之间的关系。为此,通过直接数值模拟在2D多孔介质中评估流动路径的液压曲折,随后与孔网建模提供的介质的形态信息相关。此外,研究了孔径,空间障碍和神学参数对产行为的影响。在大多数情况下,报告的曲折值低于对牛顿流体获得的曲折值。

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  • 来源
    《Computers & Chemical Engineering》 |2020年第2期|106922.1-106922.15|共15页
  • 作者单位

    Arts et Metiers Institute of Technology MSMP HESAM Universite F-51006 Chalons-en-Champagne France;

    Department of Chemical Engineering University of Waterloo 200 University Avenue West Waterloo N2L 3G1 ON Canada;

    Arts et Metiers Institute of Technology Universite de Bordeaux CNRS INRA INP HESAM Universite F-33405 Talence France;

    I2M Bordeaux-INP CNRS Esplanade des Arts et Metiers 33405 Talence Cedex France;

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