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Experimental study on the separation performance of combined gas-liquid separator

机译:组合气液分离器分离性能的实验研究

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In order to evaluate the separation efficiency of each module in this type of novel combined separator, by PDPA(Phase Doppler Particle Analyzer)we find that under different conditions in 6 combinations, combination 6 (including cyclone + stabilizer + blade+ baffler)has the highest separation efficiency, and there are relatively efficiency valley region in all the 6 combinations. Under the same conditions, the average separation efficiency of the baffler is higher than the blade, and then the blade and baffler have their own advantages in different flowrate. To use stabilizer can effectively improve the flow field inside the separator, restrain and reduce vortex and back-mixing, more conductive to the gas-liquid separation.
机译:为了评估这种类型的新型组合分离器中每个模块的分离效率,通过PDPA(相位多普勒粒子分析仪),我们发现在6种组合的不同条件下,组合6(包括旋风+稳定剂+刀片+挡板)具有最高的分离效率,所有6种组合中都有相对效率的谷地区。在相同的条件下,挡板的平均分离效率高于刀片,然后刀片和挡板具有不同流量的优点。使用稳定器可以有效地改善隔板内的流场,抑制和减少涡流和背部混合,更导致的气液分离。

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