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Experimental and mathematical modeling of wax deposition and propagation in pipes transporting crude oil

机译:原油输送管道中蜡沉积和扩散的实验和数学模型

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摘要

One of the problems faced by the petroleum industry is the wax deposition in pipelines during transportation of waxy crude oil. Oil companies dealing with waxy crude often spend millions of dollars in remedial procedures. An ideal design should use an accurate mathematical model that would include all salient features of wax deposition and waxy crude transport to predict wax deposition during crude oil transportation. In this article, a comprehensive mathematical model, both in laminar and turbulent flow regimes, is developed. The model couples energy equation with deposition and removal kinetics model and thermodynamic model.The k-epsilon turbulent flow model and energy equation were used to predict velocity and temperature distributions in the turbulent flow regime. Molecular diffusion of wax, as a mechanism of deposition and sloughing effect due to the hydrodynamic forces of fluid on deposited wax, have been considered. Parametric studies on the variation of the amount of wax deposition were performed for a mixture of toluene and oil wax cut in an experimental setup. Overall predictive ability of the proposed model is excellent for the laminar flow. For the turbulent flow regime, no necessary complete experimental data for model were available. Consequently, qualitative results were presented and discussed.
机译:石油工业面临的问题之一是在蜡质原油运输期间管道中的蜡沉积。与蜡质原油打交道的石油公司经常花费数百万美元进行补救程序。理想的设计应使用准确的数学模型,该模型应包括蜡沉积和蜡质原油运输的所有显着特征,以预测原油运输过程中的蜡沉积。在本文中,开发了层流和湍流状态下的综合数学模型。该模型将能量方程式与沉积和去除动力学模型以及热力学模型相结合。使用k-ε湍流模型和能量方程式来预测湍流状态下的速度和温度分布。已经考虑到蜡的分子扩散,这是由于流体对沉积的蜡的流体动力而产生的沉积和脱落的机理。在实验装置中对甲苯和油蜡混合物的蜡沉积量变化进行了参数研究。所提出的模型的整体预测能力对于层流是极好的。对于湍流状态,没有必要的完整的模型实验数据。因此,提出并讨论了定性结果。

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