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Using relations between stress and fluid pressure for improved compaction modelling in flow simulation and increased efficiency in coupled rock mechanics simulation

机译:利用应力和流体压力之间的关系在流动模拟中改善压实模型,在耦合岩石力学模拟中提高效率

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摘要

The conventional compaction model used in reservoir simulators defines compaction as a function of fluid pressure, whereas, in reality, it is a function of effective stress. The interrelationship between fluid pressure, effective stress and reservoir parameters (materials distribution, geometry, production scheme) is investigated. By modifying the conventional concept of flow simulator compaction a predictor is constructed for the rock mechanics computations in a coupled flow–rock mechanics simulation. This predictor reduces the time to converge the stress computations by reducing or eliminating the number of pore volume iterations in the coupling scheme. Overall computing time is thereby reduced considerably, while maintaining accuracy in the stress computations. Additionally, the compaction state in the flow simulator will be more accurate than in a conventional iterative coupling scheme.
机译:油藏模拟器中使用的常规压实模型 将压实定义为流体压力的函数,而实际上 则是有效应力的函数。研究了流体压力,有效应力与储层参数(sup> (材料分布,几何形状,生产方案)之间的相互关系。 通过修改常规概念流动模拟器压实 构造了一个预测器,用于耦合流-岩力学模拟中的岩石力学计算 。该预测变量 通过减少 或消除耦合 方案中的孔体积迭代次数,减少了收敛应力计算的时间。因此,总体计算时间大大减少, ,同时保持了应力计算的准确性。此外,与常规的迭代耦合方案相比, 在流量模拟器中的压实状态将更准确。

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  • 来源
    《Petroleum Geoscience》 |2008年第4期|399-409|共11页
  • 作者

    ?ystein Pettersen;

  • 作者单位

    Centre for Integrated Petroleum Research PO Box 7800, NO-5020 Bergen, Norway;

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  • 正文语种 eng
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