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Overpressure preventing quartz cementation? - A reply.

机译:防止石英胶结的超压? - 回答。

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摘要

Chemical compaction and the relative importance of the pressure dissolution and illite-mica induced dissolution (IMID) models have remained a contentious issue, as is the role played by stress in chemical compaction. This paper offers further support and evidence as discussed in Stricker et al. (2016b), focusing on the reservoir quality of the Triassic Skagerrak Formation sandstones in the high pressure high temperature (HPHT) Central Graben, North Sea. The reply discusses alterative reservoir quality interpretations and comments as raised by Maast (2016). A series of theoretical and experimental studies, as well as field based evidence is presented providing strong support to the important role of stress (e.g. vertical effective stress) during chemical compaction. The evidence leads to the conclusion that the process of chemical compaction is stress and temperature driven and significantly enhanced by clay minerals, playing a catalytic role by increasing the width of diffusion pathway or by modifying the kinetics of the dissolution process.
机译:化学压实以及压力溶解和伊利石-云母诱导溶解(IMID)模型的相对重要性仍然是一个有争议的问题,应力在化学压实中的作用也是如此。如Stricker等人所述,本文提供了进一步的支持和证据。 (2016b),重点研究了北海中部格拉本高压(HPHT)地区三叠纪Skagerrak组砂岩的储层质量。答复讨论了Maast(2016)提出的替代性储层质量解释和评论。提出了一系列理论和实验研究,以及基于现场的证据,为化学压实过程中应力(例如垂直有效应力)的重要作用提供了有力的支持。有证据表明,化学压实过程受应力和温度驱动,并由粘土矿物显着增强,通过增加扩散途径的宽度或改变溶解过程的动力学发挥催化作用。

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