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Interpretation of the flow characteristics of a primary oil-water separator from the residence time distribution

机译:从停留时间分布解释油水分离器的流动特性

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摘要

The separation of oil and water mixtures is a vital process in the oil and chemical industries.Fluids exiting from oil wells usually consit of gas,oil and water and the primary stage of pahse separation is usually performed by horizontal gravity separators.The performance of these vessels is inferred from in-situ measurements of the Residence Time Distribution(RTD).To relate the features of the RTD totheflow characteristics,a colrimetric tracer technique was used to obtain data from a pilot-scale separator.This separator had a diameter of 0.6 m and length 2.5m.Flow rates of 1.5-3 kg s~(-1) dkerosene,and 1-2.5 kg s~(-1) water,were used and different internal baffles were installed to mimic conditions in existing field separators.Differences in the Mean Residence Time (MRT) obtained from the experiments compared with the estimated MRT (based on dividing the volume through put of each phase by the volumeit occupies)leads to differences of approximately +/-60%.These differences were found to be more sensitive to flowrate than the internal configurations used in the vessel.When significant changes were observed due to internals,these were when the internals used (dip baffles) interfered with the location of the oil-water interface.
机译:油水混合物的分离是石油和化学工业中至关重要的过程。从油井中排出的流体通常由气,油和水组成,而帕希斯分离的主要阶段通常是通过水平重力分离器进行的。从停留时间分布(RTD)的现场测量中推断出容器。为了将RTD的特征与流动特性联系起来,使用了一种示踪技术从中试规模的分离器获得数据。该分离器的直径为0.6 m和长度为2.5m。使用1.5-3 kg s〜(-1)煤油的流量和1-2.5 kg s〜(-1)的水,并在现有的现场分离器中安装了不同的内部挡板来模拟条件。从实验中获得的平均停留时间(MRT)与估计的MRT的差异(基于每个相的穿通量除以体积所占的体积)导致大约+/- 60%的差异。当比内部使用的内部构造发生显着变化时,即内部使用的内部构造(浸入式挡板)干扰了油水界面的位置。

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