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The Performance of Toluene and Naphtha as Viscosity and Drag Reducing Solvents for the Pipeline Transportation of Heavy Crude Oil

机译:甲苯和石脑油作为稠油和减阻溶剂在重质原油管道输送中的性能

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摘要

Heavy crude oil shows high viscosity combined with low mobility, which affects the efficient transportation through pipelines. Drag has long been identified as the main reason for the loss of energy in pipeline fluid transmission and other similar transportation channels. The main contributor to this drag is the viscosity as well as friction against pipe walls, which will result in more pumping power consumption. Various methods such as heating, upgrading, dilution, core annular flow, and emulsification in water have been used for their transportation. The influence of toluene and naphtha as a viscosity and drag reducing solvent on flow of Iraqi crude oil in pipelines was investigated in the present work. The effect of additive type, concentration, pipe diameter, solution flow rate, and heating on the percentage of drag reduction (% Dr) and percentage flow increase (% FI) were the variables of study. The maximum drag reduction was observed to be 40.48% and 34.32% using heavy oil flowing in pipeline diameter of 0.0508 m I.D. at 27 degrees C containing 10 wt% naphtha and toluene, respectively. Also, the dimensional analysis is used for grouping the significant quantities into dimension less group to reduce the number of variables.
机译:重质原油显示出高粘度和低流动性,这影响了通过管道的有效运输。长期以来,阻力一直被认为是管道流体传输和其他类似运输渠道中能量损失的主要原因。造成这种阻力的主要因素是粘度以及与管壁的摩擦,这将导致更多的泵送功率消耗。运输中使用了各种方法,例如加热,升级,稀释,堆芯环流和水中乳化。在本工作中,研究了甲苯和石脑油作为粘度和减阻溶剂对伊拉克原油在管道中流动的影响。添加剂类型,浓度,管道直径,溶液流速和加热对减阻百分比(%Dr)和流量增加百分比(%FI)的影响是研究变量。在管道直径为0.0508 m I.D的重油中观察到最大减阻为40.48%和34.32%。在27℃下分别含有10wt%的石脑油和甲苯。同样,维度分析用于将有效量分组为较少维度的组,以减少变量的数量。

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