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水平管气液两相弹状流液弹频率的水动力学新模型

机译:水平管气液两相弹状流液弹频率的水动力学新模型

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The prediction of slug frequency has important significance on gas-liquid two-phase flow. A hydrodynamic model was put forward to evaluate slug frequency for horizontal two-phase flow, based on the dependence of slug frequency on the frequency of unstable interfacial wave. Using air and water, experimental verification of the model was carried out in a large range of flow parameters. Six electrical probes were installed at different positions of a horizontal plexiglass pipe to detect slug frequency development. The pipe is 30 m long and its inner diameter is 24 mm. It is observed experimentally that the interfacial wave frequency at the inlet is about 1 to 3 times the frequency of stable slug. The slug frequencies predicted by the model fit well with Tronconi (1990) model and the experimental data. The combination of the hydrodynamic model and the experimental data results in a conclusion that the frequency of equilibrium liquid slug is approximately half the minimum frequency of interfacial wave.
机译:Slul频率的预测对气液两相流具有重要意义。提出了一种流体动力学模型,以评估水平两相流的SLUX频率,基于摆锤频率对不稳定界面波的频率的依赖性。使用空气和水,在大量的流量参数中进行模型的实验验证。六个电气探头安装在水平有机玻璃管道的不同位置,以检测SLUX频率开发。管道长30米,内径为24毫米。实验观察到入口处的界面波频率约为稳定槽频率的约1至3倍。模型预测的SLUS频率适用于TronConi(1990)模型和实验数据。流体动力学模型和实验数据的组合导致了结论,即平衡液体槽的频率大约是界面波的最小频率的一半。

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