李玉星, 王财林, 胡其会, 龚霁昱. 含杂质超临界CO2管道减压波波速的预测模型[J]. 油气储运, 2021, 40(9): 1027-1032. DOI: 10.6047/j.issn.1000-8241.2021.09.008
引用本文: 李玉星, 王财林, 胡其会, 龚霁昱. 含杂质超临界CO2管道减压波波速的预测模型[J]. 油气储运, 2021, 40(9): 1027-1032. DOI: 10.6047/j.issn.1000-8241.2021.09.008
LI Yuxing, WANG Cailin, HU Qihui, GONG Jiyu. Prediction model of decompression wave velocity in supercritical CO2 pipelines containing impurities[J]. Oil & Gas Storage and Transportation, 2021, 40(9): 1027-1032. DOI: 10.6047/j.issn.1000-8241.2021.09.008
Citation: LI Yuxing, WANG Cailin, HU Qihui, GONG Jiyu. Prediction model of decompression wave velocity in supercritical CO2 pipelines containing impurities[J]. Oil & Gas Storage and Transportation, 2021, 40(9): 1027-1032. DOI: 10.6047/j.issn.1000-8241.2021.09.008

含杂质超临界CO2管道减压波波速的预测模型

Prediction model of decompression wave velocity in supercritical CO2 pipelines containing impurities

  • 摘要: 超临界CO2管道断裂会在裂纹两端产生减压波,其波速计算是预测和控制管道断裂的关键。基于GERG-2008状态方程,结合均相流动模型与气液两相流声速计算模型,建立了含杂质超临界CO2管道的减压波波速预测模型,并开发了相应的计算程序,分析了单元非极性杂质、单元极性杂质、多元混合杂质对超临界CO2管道减压波曲线的影响。结果表明,非极性杂质的混入使超临界CO2管道减压波曲线的平台压力升高,更易与管道断裂曲线相交,加剧管道断裂风险;极性杂质的存在能够小幅度降低超临界CO2管道减压波曲线的平台压力,减小管道断裂风险。该模型可为管道止裂及杂质成分控制提供理论依据。

     

    Abstract: Once a supercritical CO2 pipeline fractures, decompression wave will appear at both end of the crack. Hence, the calculation of the decompression wave velocity during the pipeline fracturing is critical for the prediction and control of pipeline fracture. Based on the GERG-2008 equation of state, a decompression wave velocity prediction model for the supercritical CO2 pipelines containing impurities was established with reference to the homogeneous flow model and the sound velocity calculation model for gas-liquid two-phase flow, and a calculation procedure thereof was developed. In addition, the effects of single-component non-polar impurities, single-component polar impurities and multi-component mixed impurities on the decompression wave curve of the supercritical CO2 pipelines were studied. The results show that the addition of non-polar impurities increases the plateau pressure of the decompression wave curve, and thus the decompression wave is more likely to intersect with the pipeline fracture curve, increasing the risk of pipeline fracture. However, the presence of polar impurities can slightly reduce the plateau pressure of the decompression wave curve of the supercritical CO2 pipelines, further reducing the risk of pipeline fracture. Therefore, this model could provide a theoretical basis for pipeline crack arrest and impurity composition control.

     

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