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Eulerian simulation of sedimentation flows in vertical and inclined vessels

机译:垂直和倾斜容器中沉积流的欧拉模拟

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Sedimentation of particles in inclined and vertical vessels in numerically simulated using a finite volume method where the Eulerian multiphase model is applied. The particulate phase as well as the fluid phase is regarded as a continuum while the viscosity and solid stress of the particulate phase are modelled by the kinetic theory of granular flows. The numerical results show an interesting phenomenon of the emergence of two circulation vortices of the sedimentation flow in a vertical vessel but only one in the inclined vessel. Several sensitivity tests are simulated to understand the factors that influence the dual-vortex flow structure in vertical sedimentation. Result show that a larger fluid viscosity makes the two vortex centres much closer to each other and the boundary layer effect at lateral walls is the key factor to induce this phenomenon. In the fluid boundary layer particles settle down more rapidly and drag the local carrier fluid to flow downward near the lateral walls and thus form the dual-vortex flow pattern.
机译:使用欧拉多相模型,采用有限体积法对倾斜和垂直容器中的颗粒进行了数值模拟。颗粒相和流体相被视为连续体,而颗粒相的粘度和固体应力则通过颗粒流动的动力学理论进行建模。数值结果表明,一个有趣的现象是在垂直容器中出现了两个沉降流的循环涡流,而在倾斜容器中只有一个。模拟了几个灵敏度测试,以了解影响垂直沉降中双涡流结构的因素。结果表明,较大的流体粘度使两个涡旋中心彼此更接近,侧壁的边界层效应是引起这种现象的关键因素。在流体边界层中,颗粒更快地沉降并拖动局部载流体在侧壁附近向下流动,从而形成双涡流模式。

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