关于这个题目-地下砂的再活化和注入

Special Publications Pub Date : 2021-06-23 DOI:10.1144/sp493
S. Silcock, M. Huuse, M. Bowman, A. Hurst, S. Cobain
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引用次数: 0

摘要

砂注入形成于地壳浅层变形。区域性的孔隙流体压力短期升高,触发了水力裂缝网络的形成,有时会向其中注入砂粒。注砂复合体保存了这一过程的记录,砂岩侵入体是许多含油气系统中重要的储层。大多数已知的地下注砂复合体来自欧洲西北部近海,与古近系地层有关。露头分布是全球性的。非常规储集岩(包括花岗岩、变质基底和煤层)的注砂,提高了人们对可能发生注砂的地质环境的认识。砂岩侵入体与沉积宿主之间的不一致性发生在毫米到公里的尺度上,是对侵入体的基本诊断。微观结构表征为建立可能的附加标准以区分侵入体与沉积砂岩提供了新的机会。注砂复合体在浅层地壳演化中的重要意义体现在本卷记录的广泛的岩性寄主和不同的构造地层环境中。原创性研究的潜力仍然存在。
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About this title - Subsurface Sand Remobilization and Injection
Sand injectites form during shallow-crustal deformation. Short periods of elevated pore-fluid pressure, which developed regionally, triggered formation of hydrofracture networks into which sand was sometimes injected. Sand injection complexes preserve a record of this process and sandstone intrusions are significant reservoirs in many petroleum systems. Most known subsurface sand injection complexes are from offshore NW Europe and associated with Paleogene strata. Outcrop occurrence is global. Sand injection into unconventional host rocks, including granitoid and metamorphic basement and coal seams, raises awareness of the breadth of geological environments in which sand injection may occur. Discordance between sandstone intrusions and sedimentary hosts occurs on a scale from millimetres to kilometres and is a fundamental diagnostic of intrusions. Microscale textural characterization provides new opportunities to establish possible additional criteria for differentiating intrusions from depositional sandstone. The significance of sand injection complexes in shallow crustal evolution is exemplified by the wide range of lithological hosts and diverse tectonostratigraphic settings documented in this volume. Potential for original research still remains.
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