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Laminar flow in radial flow cell with small aspect ratios: Numerical and experimental study

机译:小长径比的径向流通池中的层流:数值和实验研究

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Studies on the effect of wall shear stress on soil and biofilm attachment and removal from a surface are one of the many applications of radial axisymmetrical flow. The particular nature of this flow allows taking advantage of a wide range of wall shear Stress applied at the analyzed surface in a single experiment. This type of experiments provides a critical radius up to which soil removal occurs. Good models are, however, still needed to convert the experimental data into critical wall shear stress. Analytical models are already available for creeping flow but Computational Fluid Dynamics must be applied for experiments performed at higher Reynolds numbers. The present study is a numerical analysis of the radial axisymmetrical flow for aspect ratios of 0.125, 0.25, 0.5 and 1 with inlet pipe Reynolds numbers varying from 0 to 2000, aiming at computing the wall shear stress distribution at any distance from the center. The simulations provided a thorough description of the complex flow pattern encountered close to the inlet section, which were validated for the laminar regime by dye injection. A total of up to four recirculation zones were identified in both numerical and experimental investigations. The experimental positions of these recirculation zones corresponded well to the numerical predictions. Based on this work, a map of the flow for the different aspect ratios was developed, which can be particularly interesting for the design of experimental devices involving axisymmetrical flow. (c) 2008 Elsevier Ltd. All rights reserved.
机译:研究壁面剪应力对土壤和生物膜的附着以及从表面去除的影响是径向轴对称流的众多应用之一。这种流动的特殊性质允许在单个实验中充分利用施加在被分析表面上的各种壁剪应力。这种类型的实验提供了达到去除污垢的临界半径。但是,仍然需要良好的模型将实验数据转换为临界壁切应力。分析模型已经可以用于蠕变流动,但是对于更高雷诺数进行的实验,必须应用计算流体动力学。本研究是对纵横比为0.125、0.25、0.5和1的径向轴对称流的数值分析,其中进口管的雷诺数在0到2000之间变化,目的是计算在距中心任意距离处的壁面剪应力分布。该仿真提供了入口段附近遇到的复杂流型的详尽描述,这些流型已通过染料注入验证为层流状态。在数值和实验研究中总共确定了多达四个再循环区。这些再循环区的实验位置与数值预测非常吻合。基于这项工作,开发了不同纵横比的流动图,这对于涉及轴对称流动的实验设备的设计可能特别有趣。 (c)2008 Elsevier Ltd.保留所有权利。

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