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Influence of water level on oil-water separation by residence time distribution curves investigations

机译:通过停留时间分布曲线研究水位对油水分离的影响

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The separation of crude oil and water mixtures is an important process in the oil and chemical industries. This work studied the flow behavior of crude oil and water in a pilot scale oil-water separator. This gravity separator (diameter of 1.2 m and length of 5.2 m) was operated by Drood oil of the Iranian Offshore Oil Company (IOOC) located in Kharg Island (Iran). The residence time distribution (RTD) curves were acquired in this separator by radioactive tracer (~(131)I) injection. Experimental results showed that the separator operational performance increased with the water level in the vessel. Perfect mixing tanks-in-series (with a dead zone) have been used to describe the liquid behavior, and the experimental results were in good agreement with this model. Increasing the water level in the vessel from 0.5 m to 0.9 m increases the number of mixing tanks-in-series of both organic and aqueous phases, from 9.0 to 9.1 and from 8 to 8.3, respectively. The dead volume of the organic phase path decreased with water level, but this trend was reversed for the aqueous phase path. Less than 3% of the volume of the separator is active. The separator's optimum efficiency occurred when the water level in the separator was about 0.7 m.
机译:原油和水混合物的分离是石油和化学工业中的重要过程。这项工作研究了中试规模的油水分离器中原油和水的流动行为。该重力分离器(直径为1.2 m,长度为5.2 m)由位于伊朗Kharg岛的伊朗海洋石油公司(IOOC)的Drood油操作。通过放射性示踪剂(〜(131)I)注入在该分离器中获得了停留时间分布(RTD)曲线。实验结果表明,分离器的运行性能随着容器中水位的升高而提高。完美的串联混合罐(带有死区)已被用来描述液体行为,并且实验结果与该模型非常吻合。将容器中的水位从0.5 m增加到0.9 m,可将有机相和水相的串联混合槽数分别从9.0增至9.1和8增至8.3。有机相路径的死体积随着水位的升高而降低,但是水相路径的这一趋势却相反。少于3%的分离器有效。当分离器中的水位约为0.7 m时,会发生分离器的最佳效率。

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