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A study of the structural controls on oil recovery from shallow-marine reservoirs

机译:浅海油藏采油结构控制研究

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摘要

The differences in oil production are examined for a simulated waterflood of faulted and unfaulted versions of synthetic shallow-marine reservoir models with a range of structural and sedimentological characteristics. Fault juxtaposition can reduce the economic value of the reservoirs by up to 30%, with the greatest losses observed in models with lower sedimentological aggradation angles and faults striking parallel to waterflood direction. Fault rock has a greater effect than fault juxtaposition on lowering the economic value of the reservoir models in the compartmentalized cases only – and only when the fault rock permeability model is based on the least permeable published laboratory data. Moderately sealing faults can increase the economic value of reservoirs except when the main flow direction is parallel to the faults. These results arise from the dependence of economic value on both sweep efficiency and production rate. Simple predictors of fault juxtaposition and fault-rock heterogeneity have been established and combined with two-dimensional considerations from streamline theory in an attempt to capture quantitatively the change in economic reservoir value arising from faults. Despite limitations associated with the three-dimensional role of juxtaposition, the results are encouraging and represent a step towards establishing a rapid transportable predictor of the effects of faults on production.
机译:对于模拟的 断层和非断层版本的合成浅海 储层模型具有模拟的水驱,该模型具有一定范围的构造和沉积学 特征。断层并置可以使储层的经济价值降低多达30%,在沉积沉积角较小的模型中观察到的损失最大,并且断层与注水方向平行。断层 岩石比断层并置在降低隔层 的情况下降低储层模型的经济价值具有更大的作用-仅在断层发生时岩石渗透率 模型基于已公开的渗透性最低的实验室数据。 适度的密封性断层可以增加 储层的经济价值,除非在主要流动方向上。与 错误平行。这些结果来自经济 值对清扫效率和生产率的依赖。已经建立了断层并置和断层岩石异质性的简单预测变量 ,并结合流线理论中的二维考虑因素 试图定量捕获 由故障引起的经济储值的变化。 尽管并列的三维作用 受到限制,但结果令人鼓舞,并代表了< sup> 迈出建立故障对生产影响的快速可预测变量 的一步。

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  • 来源
    《Petroleum Geoscience 》 |2008年第1期| 55-70| 共16页
  • 作者单位

    Fault Analysis Group, UCD School of Geological Sciences, University College Dublin, Dublin 4, Ireland(tom@fag.ucd.ie);

    Department of Earth Science and Engineering, Imperial College, London SW7 2BP, UK;

    Fault Analysis Group, UCD School of Geological Sciences, University College Dublin, Dublin 4, Ireland(tom@fag.ucd.ie)|Current address: CSIRO Petroleum, PO Box 1130, Bentley, WA6102, Australia;

    Department of Earth Science and Engineering, Imperial College, London SW7 2BP, UK;

    Norwegian Computing Center, PO Box 114 Blindern, N-0314 Oslo, Norway;

    Department of Earth Science/Centre for Integrated Petroleum Research, University of Bergen, Allegt. N-5007 Bergen, Norway;

    Institute of Petroleum Engineering, Heriot-Watt University, Edinburgh EH9 9NX, UK;

    Fault Analysis Group, UCD School of Geological Sciences, University College Dublin, Dublin 4, Ireland(tom@fag.ucd.ie);

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