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Experimental and theoretical study of crude oil pretreatment using low-frequency ultrasonic waves

机译:低频超声波原油预处理的实验与理论研究

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In this work, an ultrasound experimental setup was designed to investigate the feasibility of using low-frequency ultrasonic waves as a substitute to reduce the consumption of chemical demulsifiers in the pretreatment of crude oil. The experiments were planned to study the effects of irradiation time, ultrasonic field intensity and initial water content on the efficiency of separation. The results of experiments showed that by selecting a proper irradiation time and field intensity, it is possible to decrease the usage of demulsifiers by 50%. Moreover, a population balance model was proposed to explicate the experimental data. A hybrid coalescence model was developed to determine the frequency of aggregation. The parameters of the model were estimated by linear regression. The parameter estimation was performed using a parallel execution of the particle swarm optimization algorithm. The results of the model showed a decent agreement with the experimental data.
机译:在这项工作中,旨在研究使用低频超声波作为替代物的可行性,以减少原油预处理中化学破坏剂的消耗。 计划进行实验,以研究辐照时间,超声波电场强度和初始水含量对分离效率的影响。 实验结果表明,通过选择适当的照射时间和场强度,可以将破乳剂的用法降低50%。 此外,提出了一种人口平衡模型来阐明实验数据。 开发了一种混合聚结型模型以确定聚集频率。 通过线性回归估计模型的参数。 使用粒子群优化算法的并行执行执行参数估计。 该模型的结果显示了与实验数据的体面协议。

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