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Numerical simulations of shear dependent viscoelastic flows with a combined finite element-finite volume method

机译:有限元-有限体积法结合剪切相关粘弹性流的数值模拟

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A hybrid combined finite element-finite volume method has been developed for the numerical simulation of shear-dependent viscoelastic flow problems governed by a generalized Oldroyd-B model with a non-constant viscosity function. The method is applied to the 4:1 planar contraction benchmark problem, to investigate the influence of the viscosity effects on the flow and results are compared with those found in the literature for creeping Oldroyd-B flows, for a range of Weissenberg numbers. The method is also applied to flow in a smooth stenosed channel. It is shown that the qualitative behavior of the flow is influenced by the rheological properties of the fluid, namely its viscoelastic and inertial effects, as well as the shear-thinning viscosity. These results appear in the framework of a preliminary study of the numerical simulation of steady and pulsatile blood flows in two-dimensional stenotic vessels, using this hybrid finite element-finite volume method.
机译:已经开发了一种混合有限元-有限体积混合方法,用于由具有非恒定粘度函数的广义Oldroyd-B模型控制的与剪切有关的粘弹性流动问题的数值模拟。将该方法应用于4:1平面收缩基准问题,以研究粘度效应对流动的影响,并将结果与​​文献中发现的关于蠕变Oldroyd-B流动的Weissenberg数进行比较。该方法还适用于在平滑的狭窄通道中流动。结果表明,流体的定性行为受流体的流变特性的影响,即流体的粘弹性和惯性效应,以及剪切稀化粘度。这些结果出现在使用这种混合有限元-有限体积方法对二维狭窄血管中稳定和搏动血流进行数值模拟的初步研究框架中。

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