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首页> 外文期刊>Physics of fluids >Analysis of the Casson and Carreau-Yasuda non-Newtonian blood models in steady and oscillatory flows using the lattice Boltzmann method
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Analysis of the Casson and Carreau-Yasuda non-Newtonian blood models in steady and oscillatory flows using the lattice Boltzmann method

机译:使用格子Boltzmann方法分析稳定流和振荡流中的Casson和Carreau-Yasuda非牛顿血液模型

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The lattice Boltzmann method is modified to allow the simulation of non-Newtonian shear-dependent viscosity models. Casson and Carreau-Yasuda non-Newtonian blood viscosity models are implemented and are used to compare two-dimensional Newtonian and non-Newtonian flows in the context of simple steady flow and oscillatory flow in straight and curved pipe geometries. It is found that compared to analogous Newtonian flows, both the Casson and Carreau-Yasuda flows exhibit significant differences in the steady flow situation. In the straight pipe oscillatory flows, both models exhibit differences in velocity and shear, with the largest differences occurring at low Reynolds and Womersley numbers. Larger differences occur for the Casson model. In the curved pipe Carreau-Yasuda model, moderate differences are observed in the velocities in the central regions of the geometries, and the largest shear rate differences are observed near the geometry walls. These differences may be important for the study of atherosclerotic progression. (c) 2007 American Institute of Physics.
机译:修改了格子Boltzmann方法,可以模拟非牛顿剪切相关的粘度模型。实施了Casson和Carreau-Yasuda非牛顿血液粘度模型,并用于在直管和弯管几何形状中简单稳定流和振荡流的情况下比较二维牛顿流和非牛顿流。研究发现,与类似的牛顿流相比,Casson流和Carreau-Yasuda流在稳定流情况下均表现出显着差异。在直管振荡流中,两个模型都表现出速度和剪切力的差异,其中最大的差异发生在低雷诺数和Womersley数下。对于Casson模型,差异更大。在弯曲管Carreau-Yasuda模型中,在几何体中心区域的速度观察到中等差异,在几何体壁附近观察到最大的剪切速率差异。这些差异可能对研究动脉粥样硬化的进展很重要。 (c)2007年美国物理研究所。

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