Integrated one-dimensional modeling of asphaltene deposition in wellbores/pipelines

Q. Guan, Y. Yap, A. Goharzadeh, J. Chai, F. Vargas, W. Chapman, M. Zhang
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引用次数: 4

Abstract

Asphaltene deposition in wellbores/pipelines causes serious production losses in the oil and gas industry. This work presents a numerical model to predict asphaltene deposition in wellbores/pipelines. This model consists of two modules: a Thermodynamic Module and a Transport Module. The Thermodynamic Module models asphaltene precipitation using the Peng-Robinson Equation of State with Peneloux volume translation (PR-Peneloux EOS). The Transport Module covers the modeling of fluid transport, asphaltene particle transport and asphaltene deposition. These modules are combined via a thermodynamic properties lookup-table generated by the Thermodynamic Module prior to simulation. In this work, the Transport Module and the Thermodynamic Module are first verified and validated separately. Then, the integrated model is applied to an oilfield case with asphaltene deposition problem where a reasonably accurate prediction of asphaltene deposit profile is achieved.
井筒/管道沥青质沉积的一体化一维建模
在油气行业,沥青质在井筒/管道中的沉积会造成严重的生产损失。本文提出了一种预测井筒/管道沥青质沉积的数值模型。该模型由两个模块组成:热力学模块和传输模块。热力学模块使用Peneloux体积平移的Peng-Robinson状态方程(PR-Peneloux EOS)来模拟沥青质沉淀。传输模块包括流体传输、沥青质颗粒传输和沥青质沉积的建模。这些模块在模拟之前通过热力学模块生成的热力学属性查询表进行组合。在这项工作中,首先对传输模块和热力学模块分别进行了验证和验证。然后,将该综合模型应用于沥青质沉积问题的油田实例,对沥青质沉积剖面进行了较为准确的预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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