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Mechanical compaction behaviour of natural clays and implications for pore pressure estimation

机译:天然粘土的机械压实特性及其对孔隙压力估算的意义

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摘要

In pore pressure estimation and in basin modelling programs it is often assumed that porosity in clay-rich sediments depends on the vertical effective stress. An alternative assumption is that porosity depends on the mean effective stress. Yet triaxial test data on natural clays have shown that porosity depends on both the mean effective stress and the differential stress. Triaxial test data for Winnipeg clay are re-plotted here to quantify the errors in estimated pore pressures that would result if it is assumed that porosity depends on either vertical or mean effective stress. The assumption that porosity depends on vertical effective stress may result in gross underestimates of pore pressures in compressional basins, where horizontal stresses in overpressured zones at depth are greater than the vertical stress. Sections through the yield surface of Winnipeg clay are consistent with a generalized yield locus for clays, normalized for composition as well as volume, based on data from several natural clays. Consequently, a refined equivalent depth method of pore pressure estimation that accounts for porosity dependence on both mean and effective stress could, in principle, be implemented. The method would require some knowledge of yield properties and of all three principal stresses in the subsurface.
机译:在孔隙压力估算和盆地建模程序中,通常假设富粘土沉积物中的孔隙度取决于垂直有效应力。另一种假设 是孔隙率取决于平均有效应力。然而,天然粘土的三轴 测试数据表明,孔隙度取决于平均有效应力和微分应力。 温尼伯粘土的三轴测试数据如果假设孔隙度取决于垂直或 平均值,则在此处重新绘制以 量化估计孔隙压力中的误差,该误差将导致 强调。孔隙度 取决于垂直有效应力的假设可能导致压缩盆地中孔隙压力的总低估 ,而深部超压区的水平应力 大于 垂直应力。温尼伯 粘土的屈服面截面与粘土的广义屈服轨迹一致, 根据数据 归一化成分和体积来自几种天然粘土。因此,原则上可以实现一种精简的等效于孔隙度估计的 深度方法,该方法考虑了孔隙度 对平均应力和有效应力的依赖关系。 。该方法需要了解屈服 属性以及地下所有三个主应力的知识。

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  • 来源
    《Petroleum Geoscience》 |2004年第1期|00000073-00000079|共7页
  • 作者

    N. R. Goulty;

  • 作者单位

    Department of Earth Sciences, University of Durham, South Road, Durham DH1 3LE, UK(e-mail: n.r.goulty@dur.ac.uk);

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