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Inlet and wall effects on fluid flow in doubly-periodic arrays of spacer-filled passages

机译:间隔物填充通道的双周期阵列中入口和壁对流体流动的影响

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摘要

A numerical investigation has been carried out to study the effect of the sidewalls and the number of cells in arrays of spacer-filled channels on the local flow distribution, for Reynolds number, Re = 100, for a spacer-configuration typically employed in process industries. It was found that the channel sidewalls have a significant effect on the velocity profile near the walls. Numerically calculated values of velocity are compared with those measured experimentally, with good agreement being obtained; a maximum deviation of 4.5% was observed. Particle traces emitted from a cell at the channel entrance revealed that, unexpectedly, the flow moves parallel to the spacer filaments within each channel layer and changes 90 degrees direction mostly at the cell adjacent to the channel side walls. The effects of the number of cells and the type of boundary condition imposed on the channel transverse sidewalls on the pressure drop and friction factor are considered.
机译:已经进行了数值研究,以研究侧壁和间隔物填充的通道阵列中的孔数对局部流动分布的影响,对于雷诺数,Re = 100,对于通常在加工行业中使用的间隔物构型。发现通道侧壁对壁附近的速度分布有显着影响。将数值计算的速度值与实验测量的值进行比较,获得了很好的一致性;观察到最大偏差为4.5%。从通道入口处的一个单元发出的颗粒痕迹表明,出乎意料的是,该流平行于每个通道层内的间隔细丝移动,并在与通道侧壁相邻的单元处大部分改变了90度方向。考虑了孔的数量和施加在通道横向侧壁上的边界条件类型对压降和摩擦系数的影响。

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