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Diagenetic modeling to assess the relative timing of quartz cementation and brittle grain processes during compaction

机译:通过成岩模型评估压实过程中石英胶结和脆性晶粒过程的相对时间

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This study describes porosity reduction by brittle deformation and the application of Touchstone~(TM) sandstone diagenesis modeling software to assess the relative timing and interactions between grain fracturing and cement formation during burial compaction.Two examples from a previous study of compactional fracturing are used: the Oligocene Frio Formation,Gulf of Mexico Basin,and the Cambrian Mount Simon Formation,Illinois Basin,United States.Grain fracturing during compaction creates intragranular fracture surfaces that are favorable sites for quartz nucleation compared to external grain surfaces that may bear coatings that inhibit the nucleation and growth of quartz cement.Thus,the progress of brittle fracture processes during diagenesis affects quartz cementation.In turn,modeling of the quartz cementation process can serve to place fracturing into its proper context in burial history.In the Mount Simon Formation,the extent of brittle deformation of quartz grains correlates with reconstructed effective stress at the onset of quartz cementation.For Frio Froamtion samples,however,the extent of brittle deformation does not correlate well with model that uses compaction disequilibrium as the dominant mechanism for overpressure generation.Judging from the observed degree of grain fracturing,significant fluid overpressures in the Frio may not have developed at the shallow depths indicated by our basin models.The degree of compactional fracturing in sandstones constitutes observable evidence that can be used to decipher the complexities of pressure history.
机译:这项研究描述了脆性变形引起的孔隙度降低以及Touchstone〜(TM)砂岩成岩建模软件在埋藏压实过程中评估颗粒破裂与水泥形成之间的相对时间和相互作用的应用,其中使用了先前压实破裂研究中的两个例子:美国墨西哥湾盆地的渐新世Frio组和美国伊利诺伊盆地的寒武纪西蒙组因此,成岩过程中的脆性破裂过程的进展会影响石英胶结作用。反过来,石英胶结作用过程的模型可以将压裂作用置于埋藏历史中。在西蒙山组中,石英颗粒的脆性变形程度与稀土相关但是,对于Frio Froamtion样品,脆性变形的程度与以压实不平衡为主导的超压产生模型的模型没有很好的相关性。从观察到的晶粒破裂程度来看,显着在我们的盆地模型所指示的浅深度处,弗里奥区的流体超压可能尚未形成。砂岩的压实压裂程度构成了可观察的证据,可用于解释压力历史的复杂性。

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