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Emplacement mechanics of sandstone intrusions: Insights from the Panoche Giant Injection Complex, California

机译:砂岩侵入体的侵入机制:加利福尼亚帕诺什巨人注入综合体的见解

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摘要

The Panoche Giant Injection Complex (PGIC; California) constitutes the most complete sandstone intrusion network yet described, and is an excellent analogue for subsurface hydrocarbon reservoirs modified by sand remobilisation. Sandstone dykes and sills were intruded during the Late Palaeocene into slope mudstones of the Great Valley forearc basin, and are exposed for more than 300 km~2. The PGIC consists of dykes and sills and represents upwards infilling of natural hydraulic fractures sourced from highly overpressured Cretaceous sand bodies. Over 1300 orientation measurements show that dykes are almost randomly oriented with only a slight orientation bias trending NE-SW, N-S or NW-SE, suggesting either a horizontally isotropic state of stress during intrusion or modification of stress by newly-formed fractures that override the remote stress. Dykes are segmented in a pattern consistent with radial propagation with fingering towards tips similar to that observed for other mixed mode fractures. Kinematic indicators reveal there was no systematic sense of opening for the intrusions. This is interpreted as the result of short-range mechanical interactions. Cross-cutting relationships between injections imply a diachronous timing and a fluid pressure in the source units that was in excess of the lithostatic load. Finally we document a suite of minor structures within the host section that allowed the strain of the forcefully intruded sand to be accommodated.
机译:Panoche巨型注入综合体(PGIC;加利福尼亚州)构成了迄今描述的最完整的砂岩侵入网络,并且是通过固沙改良的地下油气藏的绝佳模拟物。在古新世晚期,砂岩堤坝和基石被侵入到大谷前陆盆地的斜坡泥岩中,并暴露了300 km〜2以上。 PGIC由堤坝和基石组成,代表了来自高度超压白垩纪砂体的天然水力裂缝的向上填充。 1300多个定向测量结果表明,堤坝几乎是随机定向的,只有轻微的定向偏差,趋势是NE-SW,NS或NW-SE,这表明在侵入过程中应力处于水平各向同性状态,或者是由于新形成的裂缝(覆盖了应力)而改变了应力。远程压力。堤坝以与径向传播相一致的方式进行分段,指尖指向与其他混合模式裂缝类似的尖端。运动学指标表明,没有入侵的系统感。这被解释为短程机械相互作用的结果。注入之间的横切关系意味着源单元中的正时和流体压力超过了岩石静载荷。最后,我们在主机部分记录了一组较小的结构,这些结构允许容纳强力侵入的沙子的应变。

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