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DEM-CFD STUDY ON FLUID FLOW THROUGH RADIAL LAYERED COMPOSITE PACKED BEDS

机译:径向层状复合袋流的DEM-CFD研究

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The radial porosity generally have a higher value at the container wall than that in the core part. Consequently, the fluid flows are mal-distributed in packed bed with significant bypass flow at the wall, which lowers the convective heat transfer performance inside the packed bed. To overcome this drawback of packed bed, we developed an effective way to construct the radial layered composite packed bed, which can easily realize placing small particle at the near wall region and large spheres in the core region. Therefore, smaller pores forms close to the container wall and larger channels presented in the core part. This could result in a much homogenous radial porosity distribution, which is benefit to restrain the bypass flow near the wall. In present paper, the packing procedure is simulated by the discrete element method (DEM). Radial layered composite packed bed and traditional packed bed with uniform spheres are compared on radial porosity distribution. By altering the size of spheres ratios in the near wall region, different radial layered packings are also generated and compared. Then, the geometries of these packed bed are imported into the computational fluid dynamics (CFD) simulation. The fluid flow inside the packed bed is investigated. It finds that the radial layered packed bed has a lower pressure drop with the ordered packing structure. And a much homogenous fluid flow distribution is obtained than the traditional, which is benefit for the heat removal inside the packed bed. This would be useful for the optimum design of packed bed in industry applications.
机译:通常,在容器壁处的径向孔隙率比在芯部处的径向孔隙率高。因此,流体流在填充床中分布不均,在壁处有明显的旁路流动,这降低了填充床内部的对流传热性能。为了克服填充床的这一缺点,我们开发了一种构造径向分层复合填充床的有效方法,该方法可以轻松实现将小颗粒放置在壁附近区域和将大球放置在核心区域中。因此,较小的孔在靠近容器壁的位置形成,而较大的通道出现在核心部分。这可能导致径向孔隙率分布非常均匀,这有利于限制壁附近的旁路流量。在本文中,包装过程是通过离散元方法(DEM)进行模拟的。比较了径向层状复合填料床和均匀球体的传统填料床的径向孔隙率分布。通过改变近壁区域中球体比例的大小,还生成并比较了不同的径向分层填料。然后,将这些填充床的几何形状导入到计算流体动力学(CFD)模拟中。研究填充床内部的流体流动。结果发现,径向分层填充床具有有序的填充结构,具有较低的压降。与传统方法相比,获得了非常均匀的流体流分布,这有利于填充床内部的散热。这对于工业应用中填充床的最佳设计将是有用的。

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