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Gas-solids flow structure and prediction of solids concentration distribution inside a novel multi-regime riser

机译:新型多管立管内部气固两相流动结构及固相浓度分布预测

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摘要

In this study, a novel multi-regime riser featured by combination of a dense-phase bottom region operated in turbulent fluidization and a dilute upper region was presented. Systematic research was conducted to investigate both axial and radial solids concentration distributions and the flow development in this riser. Experimental results indicated that high solids concentration and uniform flow structure were achieved in the diameter-enlarged bottom section, and the flow development was comprehensively analyzed in terms of local solids concentration, radial nonuniformity index and one-dimensional slip velocity. An empirical correlation of solids concentration in the turbulent section of various multi-regime risers was also developed. This correlation was further extended to predict axial solids concentration distribution in the diameter-enlarged section of this novel riser. Moreover, Boltzman function was adopted to correlate local solids concentration with cross-sectional averaged solids concentration and radial position in bottom dense region and upper flow developing region of the diameter-enlarged section, respectively. In general, a satisfactory agreement between predictions of these correlations and experimental results was obtained.
机译:在这项研究中,提出了一种新颖的多管立管,其特点是在湍流流化中操作的密相底部区域和上部稀区域相结合。进行了系统研究,以研究轴向和径向固体浓度分布以及立管中的流动发展。实验结果表明,扩径底段固含量高,流动结构均匀,并从局部固含量,径向不均匀指数和一维滑移速度综合分析了流动发展。还建立了各种多区域立管湍流部分中固体浓度的经验相关性。进一步扩展了这种相关性,以预测此新型立管直径增大部分中的轴向固体浓度分布。此外,采用玻尔兹曼函数将局部固体浓度与横截面平均固体浓度和直径增大部分的底部密集区和上部流动发育区中的径向位置分别相关。通常,在这些相关性的预测与实验结果之间获得了令人满意的一致性。

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