用位移-电流相层析成像技术研究卧式被动旋流式气液分离器内气-水流动

Joshua N. Sines, Benjamin J. Straiton, Christopher E. Zuccarelli, Q. Marashdeh, F. Teixeira, L. Fan, B. Motil
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引用次数: 3

摘要

被动旋流式气液分离器(pcgls)通常用于微重力条件下难以或不可能进行重力沉降分离的环境。在本研究中,位移-电流相位层析成像(DCPT)用于测量PCGLS内部气液流动的各种特征。研究了液含率、液角速度和气芯尺寸。在模拟PCGLS注入流的气液流动中也测量了液含率。发现当空气中注入水时,气芯以周期性运动收缩和膨胀。随着空气流速的增加,这种运动变得更加明显。在恒定水流量下,液层角速度与空气流量呈线性正相关。导出了液体角速度与空气和水流速的基本线性关系。所有DCPT和电容相位层析成像(ECVT)结果与用于每个流特征的视觉确认方法非常匹配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Gas-Water Flow Inside of a Horizontal Passive Cyclonic Gas-Liquid Phase Separator System Using Displacement-Current Phase Tomography
Abstract Passive cyclonic gas-liquid separators (PCGLSs) are commonly used in microgravity conditions where gravity settling separation is difficult or impossible. In this study, displacement-current phase tomography (DCPT) is used to measure various features of the gas-liquid flow inside of a PCGLS. The liquid holdup, liquid angular velocity, and gas core size are investigated. The liquid holdup is also measured in a gas-liquid flow that simulates the injection flow for a PCGLS. It is found that the gas core contracts and expands in a periodic motion as air is injected with water. This motion becomes more noticeable as the air flow rate is increased. It is also found that the liquid layer angular velocity has a positive linear trend with the air flow rate under constant water flow rates. A basic linear relation is derived to relate the liquid angular velocity to the air and water flow rates. All DCPT and electrical capacitance phase tomography (ECVT) results closely match the visual confirmation methods used for each flow feature.
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