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Sub-grid drag models for horizontal cylinder arrays immersed in gas-particle multiphase flows

机译:浸入气态多相流中的水平圆柱阵列的亚网格阻力模型

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Immersed cylindrical tube arrays often are used as heat exchangers in gas-particle fluidized beds. In multiphase computational fluid dynamics (CFD) simulations of large fluidized beds, explicit resolution of small cylinders is computationally infeasible. Instead, the cylinder array may be viewed as an effective porous medium in coarse-grid simulations. The cylinders' influence on the suspension as a whole, manifested as an effective drag force, and on the relative motion between gas and particles, manifested as a correction to the gas-particle drag, must be modeled via suitable sub-grid constitutive relationships. In this work, highly-resolved unit-cell simulations of flow around an array of horizontal cylinders, arranged in a staggered configuration, are filtered to construct sub-grid, or 'filtered', drag models, which can be implemented in coarse-grid simulations. The force on the suspension exerted by the cylinders is composed of, as expected, a buoyancy contribution, and a kinetic component analogous to fluid drag on a single cylinder. Furthermore, the introduction of tubes also is found to enhance segregation at the scale of the cylinder size, which, in turn, leads to a reduction in the filtered gas-particle drag.
机译:浸入式圆柱管阵列通常用作气态颗粒流化床中的热交换器。在大型流化床的多相计算流体动力学(CFD)模拟中,小圆柱体的显式分辨率在计算上是不可行的。相反,在粗网格模拟中,圆柱阵列可被视为有效的多孔介质。必须通过合适的子网格本构关系来模拟圆柱体对悬浮液的整体影响,表现为有效的阻力,以及对气体与颗粒之间的相对运动的影响,表现为对气体颗粒阻力的修正。在这项工作中,对交错排列的水平圆柱体阵列周围流的高分辨率单元格模拟进行过滤,以构建子网格或“过滤”阻力模型,该模型可以在粗网格中实现模拟。如所期望的,由气缸施加在悬架上的力由浮力贡献和类似于单个气缸上的流体阻力的动力学分量组成。此外,还发现引入管子可增强气瓶尺寸的偏析,进而减少了过滤后的气体颗粒阻力。

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