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首页> 外文期刊>The Korean journal of chemical engineering >Effect of geometric parameters of liquid-gas separator units on phase separation performance
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Effect of geometric parameters of liquid-gas separator units on phase separation performance

机译:液气分离器几何参数对相分离性能的影响

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摘要

Five liquid-gas separator units were designed and constructed based on a new concept of a validated high-performance condenser. Each separator unit consiss of two united T-junctions and an apertured baffle. The separator units have different header diameters or different baffles with different diameters of the liquid-gas separation hole. The phase separation characteristics of the units were investigated at inlet air superficial velocities from 1.0 m/s to 33.0m/s and water superficial velocities from 0.0015 m/s to 0.50 m/s. The experimental results showed that the liquid height, liquid flow rate through the separation hole, and liquid separation efficiency increased with increased header diameter and decreased diameter of the separation hole. The geometric structures of the separator units affected the phase separation characteristics by influencing the liquid height in the header and the liquid flow rate through the separation hole.
机译:基于经过验证的高性能冷凝器的新概念,设计和构造了五个液气分离器单元。每个分离器单元由两个组合的T型接头和一个带孔的挡板组成。分离器单元具有不同的集管直径或具有不同直径的液-气分离孔的挡板。在入口空气表观速度从1.0 m / s到33.0m / s和水表观速度从0.0015 m / s到0.50 m / s的条件下研究了单元的相分离特性。实验结果表明,随着集管直径的增加和分离孔直径的减小,液体高度,通过分离孔的液体流速和液体分离效率均增加。分离器单元的几何结构通过影响集管中的液体高度和通过分离孔的液体流速来影响相分离特性。

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