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A New Method for Predicting Wall Sticking Occurrence Temperature of High Water Cut Crude Oil

机译:一种预测高水平原油壁黏附性能的新方法

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摘要

In crude oil transportation, adhesion of oil on pipe wall can cause partial or total blockage of the pipe. This process is significantly affected by wall sticking occurrence temperature(WSOT). In this work, an efficient approach for estimating WSOT of high water-cut oil, which can agree well with the actual environment of multiphase transportation pipeline, is proposed. Based on the energy dissipation theory, it is possible to make comparison of average shear rates between the stirred vessel and the flow loop. The impacts of water content and shear rate on WSOT are investigated using the stirred vessel and the flow loop. Good agreement has been observed between the stirred vessel and the flow loop results with the maximum and the average absolute deviations equating to 3.30 °C and 2.18 °C, respectively. The development of gathering scheme can enjoy some benefits from this method.

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  • 来源
    《中国炼油与石油化工(英文版)》 |2020年第2期|56-63|共8页
  • 作者单位

    Surface Engineering Pilot Test Center/National Engineering Laboratory for Pipeline Safety/Beijing Key Laboratory of Urban Oil and Gas Distribution Technology China University of Petroleum-Beijing Beijing 102249;

    Surface Engineering Pilot Test Center/National Engineering Laboratory for Pipeline Safety/Beijing Key Laboratory of Urban Oil and Gas Distribution Technology China University of Petroleum-Beijing Beijing 102249;

    Surface Engineering Pilot Test Center/National Engineering Laboratory for Pipeline Safety/Beijing Key Laboratory of Urban Oil and Gas Distribution Technology China University of Petroleum-Beijing Beijing 102249;

    China Huanqiu Contracting & Engineering Co. Ltd. Beijing 100012;

    CNOOC Research Institute Co. Ltd. Beijing 100027;

    Surface Engineering Pilot Test Center/National Engineering Laboratory for Pipeline Safety/Beijing Key Laboratory of Urban Oil and Gas Distribution Technology China University of Petroleum-Beijing Beijing 102249;

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  • 入库时间 2022-08-19 04:46:44
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