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RESEARCH ON TRANSITIONAL FLOW CHARACTERISTICS OF LABYRINTH- CHANNEL EMITTER

机译:迷宫式发射器过渡流动特性研究

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A physical model for flow characteristics analysis of labyrinth-channel emitter is reconstructed by Reverse Engineering from an injection molded part, and both laminar flow and turbulence models are adopted to simulate the flow state under the condition of low Reynolds numbers. According to the distribution of separation and reattachment points, the onset of transition from laminar to turbulent flow in labyrinth channels occurs at a range of Re=250~300. Furthermore, a visualization system of the flow field inside the labyrinth channels is also established and two kinds of tracers are used in the experiments. The experiment of tracing particles verifies the calculated flow field distribution, and another experiment using dyeing liquor showed the critical Reynolds number characterizing the transition, which is reasonably consistent with numerical simulation results. The critical Reynolds number obtained shows the fact that the flow inside this emitter is turbulent under the pressures of 40~150 kPa.
机译:通过从注塑部件的逆向工程重建迷宫式发射器的流动特性分析的物理模型,采用层流和湍流模型来模拟低雷诺数的条件下的流动状态。根据分离和重新连接点的分布,从层流到迷宫通道中的湍流发生的转变发生在Re = 250〜300的范围内。此外,还建立了迷宫通道内的流场的可视化系统,并且在实验中使用了两种示踪剂。跟踪颗粒的实验验证了计算出的流场分布,并且使用染色液体的另一个实验显示了表征过渡的关键雷诺数,这与数值模拟结果相当一致。所获得的关键雷诺数表明,该发射器内部的流动在40〜150kPa的压力下是湍流的事实。

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