首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Numerical simulations of non-stationary flows of non-Newtonian fluids between concentric and eccentric cylinders by stream-tube method and domain decomposition
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Numerical simulations of non-stationary flows of non-Newtonian fluids between concentric and eccentric cylinders by stream-tube method and domain decomposition

机译:非牛顿流体在同心圆柱和偏心圆柱之间非平稳流动的流管法和域分解数值模拟

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摘要

This study involves a theoretical formulation of the stream-tube method in non-stationary flows. Initially, this approach allowed flow computations by determining an unknown transformation between the physical domain and a mapped domain where the streamlines are rectilinear and parallel. To take into account vortex zones, we define local transformations of subregions of the physical domain that are mapped into rectangular domains where the transformed streamlines are still parallel and straight. The local functions must be determined numerically from the governing equations and boundary conditions put together with compatibility equations. The method enables to compute streamlines and flow data at every time, using distinguishing properties, as verification of mass conservation and definition of rectangular meshes allowing to adopt finite-difference schemes. The numerical simulations concern different non-Newtonian fluids under various geometrical and kinematic specifications related to flows between concentric and eccentric cylinders, leading to comparisons with literature data. The results also highlight the influence of the rheological properties on the flow characteristics in unsteady conditions.
机译:这项研究涉及非平稳流中流管法的理论公式。最初,这种方法通过确定物理域和映射域之间的未知转换来进行流量计算,流线是直线和平行的。为了考虑涡流区,我们定义了物理域子区域的局部变换,这些局部区域映射到矩形域中,在这些矩形域中,变换后的流线仍然平行且笔直。局部函数必须从控制方程式和边界条件以及相容性方程式以数值方式确定。该方法能够使用区分属性来每次计算流线和流量数据,作为质量守恒的验证和矩形网格的定义,从而允许采用有限差分方案。数值模拟涉及与同心和偏心圆柱体之间的流动有关的各种几何和运动学规范下的不同非牛顿流体,从而与文献数据进行了比较。结果还突出了流变性质对不稳定条件下流动特性的影响。

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