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Experimental investigations of single-phase and two-phase flow resistance in narrow rectangular duct under rolling condition

机译:轧制条件下窄矩形管道中单相和两相流动阻力的实验研究

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Effects of rolling motion on single-phase and two-phase flow resistance were compared experimentally under ambient temperature and pressure. In the single-phase flow experiments, the different pump head was obtained by a variable speed electromotor, and the flow rate was adjusted combining with a regulating valve. However, for the two-phase pressure drop measurements, the pump delivering water operated with an invariable pressure head of 48m, in order to neglect the effect of pump head on flow fluctuation. The results indicated that effects of rolling motion on single-phase flow resistance depend on the pump head. The fluctuation amplitude of flow rate and frictional pressure drop decreases rapidly as the pump head increases, finally, the flow will tend to be steady if the pump head dramatically exceeds the additional pressure drop. Different from the case of single-phase flow, transient frictional pressure drop of two-phase flow fluctuates synchronously with the rolling motion when liquid Reynolds number is less than 1400, whereas keeps a stable steady state without obvious oscillation for other cases. The fluctuation amplitude is independent of rolling period and amplitude and decreases with the increase of flow rate. The inclination angle and phase interface distribution is taken into account in analyzing the influence of rolling motion on two-phase flow resistance. Comparing with the vertical condition, rolling motion nearly has no effects on time-averaged frictional resistance for both the single-phase and two-phase flow.
机译:在环境温度和压力下实验比较滚动运动对单相和两相流抗性的影响。在单相流实验中,通过可变速度电动机获得不同的泵头,并调节流速与调节阀组合。然而,对于两相压降测量,泵输送水的不变压头48米,以忽略泵头对流动波动的影响。结果表明,轧制运动对单相流阻力的影响取决于泵头。随着泵头的增加,流量和摩擦压降的波动幅度迅速降低,最后,如果泵头急剧超过额外的压降,则流动趋于稳定。与单相流的情况不同,当液体雷诺数小于1400时,两相流量的瞬态摩擦压降与滚动运动同步波动,而保持稳定的稳态,而不明显振荡以进行其他情况。波动幅度与滚动周期和幅度无关,并且随着流速的增加而降低。考虑到分析轧制运动对两相流阻力的影响,考虑倾斜角度和相位接口分布。与垂直条件相比,轧制运动几乎对单相和两相流动的时间平均摩擦阻几乎没有影响。

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