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Upscaling Study of Vapor Extraction Process Through Numerical Simulation

机译:数值模拟的蒸气提取工艺升级研究

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摘要

Vapor extraction (VAPEX) is a process to recover heavy oil by injecting vaporized solvent into a reservoir. Reliable prediction of VAPEX performance is crucial to ensure successful commercial application of VAPEX process. The current practice for VAPEX performance prediction is using analytical scale-up methods which translate the laboratory result to field application. However, the drawbacks associated with the analytical scale-up methods are they only consider about the single phase flow and gravity drainage, and cannot take reservoir heterogeneity into account, which limit the application for the real field cases. In this study, an effort was made to investigate the capability of predicting up-scaled VAPEX performance through numerical simulation method. 2D test was conducted under the same conditions as those for the 3D test, and a numerical model was established to simulate the 2D test. History match of the 2D test was conducted by tuning the uncertainties such as relative permeability and capillary pressure. Then the tuned parameters were applied to predict the 3D test performance. Through comparison of the predicted and experimental results in the 3D test, the capability of predicting up-scaled VAPEX processes through numerical simulation was examined. The results show that numerical simulation, compared to analytical method, has more potential to be used as scale-up method because of the improved prediction results. The initial waterflooding performance can be successfully predicted, whereas the uncertainty in upscaling the VAPEX process is large. The difference between the predicted and measured oil recovery factors was in the range of 0.75-25.14 %, depending on the different combinations of uncertain parameters.
机译:蒸汽萃取(VAPEX)是通过将汽化溶剂注入储层中来回收重油的过程。对VAPEX性能的可靠预测对于确保VAPEX工艺的成功商业应用至关重要。 VAPEX性能预测的当前做法是使用分析放大方法,将实验室结果转换为现场应用。但是,与分析放大方法相关的缺点是它们仅考虑单相流和重力排水,而不能考虑储层的非均质性,这限制了在实际情况下的应用。在这项研究中,我们努力通过数值模拟方法研究预测高端VAPEX性能的能力。在与3D测试相同的条件下进行2D测试,并建立了一个数值模型来模拟2D测试。通过调整不确定性(例如相对渗透率和毛细管压力)进行2D测试的历史匹配。然后,将调整后的参数应用于预测3D测试性能。通过比较3D测试中的预测结果和实验结果,检验了通过数值模拟预测放大的VAPEX过程的能力。结果表明,与改进的预测方法相比,与解析方法相比,数值模拟具有更大的发展潜力。可以成功地预测初始注水性能,而提升VAPEX工艺的不确定性很大。根据不确定参数的不同组合,预测的采油率和测得的采油率之间的差异在0.75-25.14%的范围内。

著录项

  • 来源
    《Transport in Porous Media》 |2012年第3期|p.697-715|共19页
  • 作者

    S. Xu; F. Zeng; Y. Gu; K. D. Knorr;

  • 作者单位

    Petroleum Systems Engineering, University of Regina, Regina, SK S4S 0A2, Canada;

    Petroleum Systems Engineering, University of Regina, Regina, SK S4S 0A2, Canada;

    Petroleum Systems Engineering, University of Regina, Regina, SK S4S 0A2, Canada;

    Saskatchewan Research Council, Regina, SK S4S 7J7, Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    vapor extraction; upscale; numerical simulation; history match;

    机译:蒸气萃取;高档数值模拟历史比赛;

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