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Influence of thixotropic parameters on a non-Newtonian fluid flow

机译:触变参数对非牛顿流体流动的影响

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摘要

Non-Newtonian fluids exhibiting complex rheological characteristics, such as yield stress and thixotropy, are frequently encountered in nature and industries. Thixotropy is a time-dependent shear thinning property, associated with the microstructural evolution of materials. During a flowing process, two microstructure transition mechanisms are considered to take place simultaneously: the recovery and the breakdown; the former makes the materials more solid, while the latter makes them more liquid. The microstructure is characterized by a dimensionless structural parameter, whose evolution is modeled by a rate equation consisting of two terms representing the rate of the two mechanisms. A brief review on thixotropic models for different materials is first carried out. It is then assumed that the recovery rate depends linearly on the structural parameter, and the breakdown one is a complex function of it and the shear rate. This work aims at investigating the influence of the parameters that control the recovery and breakdown rates on the flow of a thixotropic fluid past a circular cylinder. In addition, the Bingham and/or Herschel–Bulkley model with Papanastasiou’s regularization is utilized. Various flow characteristics, such as the microstructure evolution and the flow field including the yielded and unyielded zones, are analyzed and discussed in detail. The simulation results show that the size and shape of both static and moving unyielded zones are considerably affected by the thixotropic parameters.
机译:在自然和行业中经常遇到表现复杂流变学特征的非牛顿液体,例如产量应激和触变性。触变性是一种时间依赖性剪切稀疏性质,与材料的微观结构演变相关联。在流动过程中,认为两个微结构转变机制被同时进行:恢复和击穿;前者使材料更加坚固,而后者使它们更加液体。微结构的特征在于,无量纲结构参数,其演进由由表示两个机构速率的两个术语组成的速率方程来建模。首先进行关于不同材料的触变模型的简要审查。然后假设回收率在结构参数上线性取决于结构参数,并且击穿一个是它的复杂功能和剪切速率。这项工作旨在调查控制恢复和击穿速率对通过圆柱体的触变性流体的流动的影响的影响。此外,利用了宾厄姆和/或Herschel-Bulkley模型与Papanastasiou的正规化。分析并详细地分析各种流动特性,例如微观结构演化和包括所产生和未粘土区域的流场。仿真结果表明,静电和移动的未粘连区域的尺寸和形状受到触变参数的显着影响。

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