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Compaction model for quartzose sandstones application to the Garn Formation, Haltenbanken, Mid-Norwegian Continental Shelf

机译:挪威中部大陆架Galn组Galn组石英岩砂岩的压实模型

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The compaction of quartzose sandstones is described by a macroscopical visco—elasto—plastic model, derived from microscopical considerations. This model considers that the reduction of total porosity (the relative pore volume) is related to the changes in the relative cemented volume and the relative intergrain volume. Furthermore, we consider that the variations of these two petrophysical parameters result from two physical mechanisms, mechanical compaction and closed system chemical compaction.The model has been calibrated for the Middle Jurassic Gain Formation from the Haltenbanken area of the Mid-Norwegian Continental Shelf. Around 300 data points from 17 wells have been used in this study. The viscous parameters have been optimised against the present day data. With total porosity data the best fit is obtained for an activation enerev between 14 and 16 kJ/mole and a macroscoptcal viscostty at 15 deg C between 39 and 46 Gpa ·Ma (l.2l0~(24)-l.410~(24) Pa.s.) If quartz cement data are used. the best fit is obtained for an activation energy between 16 and 18 kJ/mole and a macroscopical viscosity at l5~C between 47 and 56 Gpa ·Ma (1.510~(24)-17.l0~(24) Pa.s.)The visco—elasto—plastic compaction model has been tested in the Haltenbanken area of Mid Norway. with the result that observed porosity trends and pore pressures can be modelled. Using multiple 2-D basin modelling simulations the results of this model and its implications for fluid flow and petroleum systems analysis can be seen. The compaction method has significant impact on the simulated fluid flow and petroleum migration pattern.
机译:石英砂岩的压实作用是由宏观的粘弹-塑性模型描述的,该模型是从微观考虑出发的。该模型认为总孔隙率(相对孔隙体积)的减少与相对胶结体积和相对粒间体积的变化有关。此外,我们认为这两个岩石物理参数的变化是由机械压实和封闭系统化学压实这两个物理机制引起的。该模型已针对挪威中部大陆架哈尔滕班肯地区中侏罗统增层形成进行了校准。这项研究使用了来自17口井的约300个数据点。粘性参数已针对当前数据进行了优化。利用总孔隙率数据,在14至16 kJ / mole的活化能和15摄氏度下39至46 Gpa·Ma(l.2l0〜(24)-l.410〜(24 )Pa.s.)如果使用石英水泥数据。活化能在16至18 kJ / mol之间,l5〜C的宏观粘度在47至56 Gpa·Ma(1.510〜(24)-17.10〜(24)Pa.s.)粘弹塑性压缩模型已经在挪威中部的Haltenbanken地区进行了测试。结果是可以模拟观察到的孔隙率趋势和孔隙压力。使用多个二维盆地建模模拟,可以看到该模型的结果及其对流体流动和石油系统分析的意义。压实方法对模拟的流体流动和石油运移模式具有重大影响。

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