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首页> 外文期刊>Petroleum Geoscience >Sensitivity of fluid flow to fault core architecture and petrophysical properties of fault rocks in siliciclastic reservoirs: a synthetic fault model study
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Sensitivity of fluid flow to fault core architecture and petrophysical properties of fault rocks in siliciclastic reservoirs: a synthetic fault model study

机译:硅质碎屑岩储层中流体对断层岩心构造的敏感性和断层岩石的岩石物性:综合断层模型研究

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摘要

Fluid flow simulation models of faulted reservoirs normally include faults as grid offset in combination with 2D transmissibility multipliers. This approach tends to oversimplify the way effects caused by the actual 3D architecture of fault zones are handled. By representing faults as 3D rock volumes in reservoir models, presently overlooked structural features may be included and potentially yield a more realistic description of structural heterogeneities. This paper investigates how a volumetric fault zone description, will affect fluid flow in simulation models.
机译:断层储集层的流体流动模拟模型通常 包括与二维透射率 乘数组合的断层作为网格偏移断层。这种方法倾向于过分简化由实际3D断层带引起的影响 的处理方式。 通过将断层表示为储层模型中的3D岩石体积, 目前被忽略的结构特征可能会包括在内,并且 可能会更真实地描述结构异质性。本文研究了体积断层 区域描述如何影响模拟模型中的流体流动。

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  • 来源
    《Petroleum Geoscience》 |2007年第4期|305-320|共16页
  • 作者单位

    Centre for Integrated Petroleum Research, University of Bergen, Allégaten 41, N-5007 Bergen, Norway|Present address: StatoilHydro, Exploration and Production, Strandveien 4, N-7501 Stj?rdal, Norway(NICF@statoilhydro.com);

    Centre for Integrated Petroleum Research, University of Bergen, Allégaten 41, N-5007 Bergen, Norway;

    Centre for Integrated Petroleum Research, University of Bergen, Allégaten 41, N-5007 Bergen, Norway;

    Centre for Integrated Petroleum Research, University of Bergen, Allégaten 41, N-5007 Bergen, Norway|Present address: University Centre in Svalbard, 9171 Longyearbyen, Norway;

    Ener Petroleum ASA, PO Box 128, N-1325 Lysaker, Norway;

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