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Numerical investigation of the onset of axisymmetric and wavy Taylor-Couette flows between combinations of cylinders and spherocylinders

机译:轴对称和波状泰勒 - 汤芯片组合与球形和球形胶囊组合的数值研究

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摘要

The Taylor-Couette flow, which is the flow that occurs between two rotating bodies, has become fundamental to the study of instability and nonlinear behaviour. Many modifications can be made to the Taylor-Couette flow resulting in much more complex flow structures, either by geometrical changes, or by combining different geometries. The main goal of this work is to numerically investigate the effect of the cylinders-spheres combinations on the onset of different instabilities of a fluid confined between two concentric bodies. The modelling strategy was developed by studying three types of flow configurations: cylindrical Taylor-Couette flow (with fixed endcaps), flow between two concentric cylinders with hemispheres on the lower end wall, and flow between two coaxial spherocylinders (cylinders with hemispheres on the upper and lower end surfaces). The inner element rotates while the outer one is at rest. The numerical calculations were carried out to determine the transition zone from a laminar Couette flow to the onset of Taylor vortices and wavy vortex flow. The parameter that determines the flow regimes is the Reynolds number based on the angular velocity of the inner element. The fluid dynamic behaviours for different flow configurations are characterized by the wall shear stress and the skin friction coefficient. Laminar, axisymmetric and wavy Taylor-Couette flows are predicted for different configurations. It is established that the different combinations deeply affect the flow behaviour and the appearance of the instabilities. The transition from LCF to TVF and then to WVF in the combined flow systems is substantially retarded compared to the cylindrical Taylor-Couette flow system.
机译:泰勒 - 汤流动,这是两个旋转体之间发生的流动,这一直是对不稳定性和非线性行为的研究的基础。可以通过几何变化,或通过组合不同的几何形状,对泰勒 - 耦合的流量进行许多修改产生更复杂的流动结构。这项工作的主要目的是在数值上研究气缸 - 球体组合对狭窄在两个同心体之间的不同不稳定性的效果。通过研究三种类型的流动配置开发了建模策略:圆柱形泰勒 - 圆锥(用固定终端),在下端壁上的两个同心圆柱体之间流动,在两个同轴球胶质器(上部有半球缸之间流动和下端表面)。内部元件在外部静置时旋转。进行数值计算以确定从层流沟槽流到泰勒涡流的发作和波浪涡流的过渡区。确定流动状态的参数是基于内部元件的角速度的雷诺数。不同流动配置的流体动力学行为的特征在于壁剪切应力和皮肤摩擦系数。对于不同的配置,预测了层流,轴对称和波浪泰勒 - 耦合流。建立不同的组合深深影响流动行为和不稳定性的外观。与圆柱形泰勒 - 圆圆形流动系统相比,从LCF到电视电视中的从LCF到TVF和WVF的转变基本上延迟。

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