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Simulating Two-Dimensional Viscoelastic Fluid Flows by Means of the 'Tensor Diffusion' Approach

机译:通过“张量扩散”方法模拟二维粘弹性流体流动

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In this work, the novel "Tensor Diffusion" approach for simulating viscoelastic fluids is proposed, which is based on the idea, that the extra-stress tensor in the momentum equation of the flow model is replaced by a product of the strain-rate tensor and a tensor-valued viscosity. At least for simple flows, this approach offers the possibility to reduce the full nonlinear viscoelastic model to a generalized "Tensor Stokes" problem, avoiding the need of considering a separate stress tensor in the solution process. Besides fully developed channel flows, the "Tensor Diffusion" approach is evaluated as well in the context of general two-dimensional flow configurations, which are simulated by a suitable four-field formulation of the viscoelastic model respecting the "Tensor Diffusion".
机译:在这项工作中,提出了用于模拟粘弹性流体的新型“张量扩散”方法,这是基于这些想法,即流量模型的动量方程中的超应力张量由应变速率张量的产品取代 和张于值粘度。 至少对于简单的流动,这种方法提供了将全部非线性粘弹性模型减少到广义的“张量斯托克斯”问题的可能性,避免了在解决方案过程中考虑单独的应力张量的需要。 除了完全发育的通道流动之外,在一般二维流动配置的上下文中还评估了“张量扩散”方法,这通过致粘弹性模型的合适的四场配方模拟了致密的“张量扩散”。

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