高速率油井脱蜡加热电缆效率的数值研究

N. Kostarev, N. Trufanova
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引用次数: 0

摘要

考虑加热电缆对油液流动的加热,研究了沥青-树脂-石蜡复合沉积物中油井传热传质过程的数值模拟。基于质量、能量和动量守恒定律,考虑井的多层结构和传热传质现象,建立了三维轴对称数学模型,得到了数值实验结果。在ANSYS Fluent有限元分析环境下,采用有限体积法进行数值研究。用现有的工程方法来确定生产井的温度和蜡结晶开始的深度,对所得结果的充分性进行了评估。在不同的井流量下,这种方法作为加热电缆对抗石蜡沉积的有效性已经进行了研究。在不同的流量下,得到了沿整个井长在管壁上的温度分布。
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Numerical Study of the Efficiency of a Heating Cable in the Dewaxing of High-Rate Wells
The paper considers the numerical modeling of heat and mass transfer processes in an oil well complicated by asphalt-resin-paraffin deposits, taking into account the heating of the oil fluid flow by a heating cable. The results of numerical experiments were obtained by implementing a three-dimensional axisymmetric mathematical model based on the laws of conservation of mass, energy and momentum vector, and taking into account the multilayer structure of the well and the phenomenon of heat and mass transfer. The numerical study was carried out in the ANSYS Fluent finite element analysis environment, using the finite volume method. An assessment of the adequacy of the results obtained with the existing engineering methods for determining the temperature in production wells and the depth of the onset of wax crystallization has been carried out. The effectiveness of such a method of combating paraffin deposits as a heating cable at various well flow rates has been investigated. Temperature distributions were obtained along the entire length of the well on the tubing wall at different flow rates.
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