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Two- and Three-Phase Flow Through a 90 Degree Bend

机译:通过90度弯曲的两相和三相流

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Data are presented for two-phase air/water pipeflow and three-phase air/oil/water in a 0.026 m i.d. pipe and elbow bend (R/d = 0.654) for vertical to horizontal flow. The two-phase results were shown to be dependant on the flow regimes present in the system. The elbow bend acted either to smooth the transition from vertical to horizontal flow when the liquid rate was below the bubble rise velocity in the inlet leg (when negative bend pressure losses were achieved), or to generate droplets and increase the bend pressure drop substantially at higher fluid rates. Three-phase data also showed significant but not such dramatic differences, depending on the combined liquid rate being above or below the bubble rise velocity in the inlet leg. Again the variation of pressure drop for the system could be qualitatively explained by the observed flow regimes. For both two-phase and three-phase systems, the observed bend pressure drop could be correlated using a Lockhart-Martinelli approach based on the single-phase flow data for the bend.
机译:给出了在0.026 m i.d下两相空气/水管道流量和三相空气/油/水数据。垂直弯管和弯管的弯管(R / d = 0.654)。结果表明,两相结果取决于系统中的流动状态。弯头的作用是当液体流速低于进口支路中的气泡上升速度时(达到负弯曲压力损失时),使从垂直流向水平流动的过渡变得平滑,或者产生液滴并显着增加弯曲压力降。更高的流体速率。三相数据还显示出显着差异,但没有显着差异,具体取决于合并的液体流速高于或低于进口支路中的气泡上升速度。同样,系统的压降变化可以通过观察到的流动状态定性地解释。对于两相和三相系统,都可以使用Lockhart-Martinelli方法基于折弯的单相流数据,将观察到的折弯压降关联起来。

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