WU Kongyou, WANG Xulong, CUI Dian. Structural characteristics and fluid effects of Nanbaijiantan fault zone[J]. COAL GEOLOGY & EXPLORATION, 2012, 40(4): 5-11. DOI: 10.3969/j.issn.1001-1986.2012.04.002
Citation: WU Kongyou, WANG Xulong, CUI Dian. Structural characteristics and fluid effects of Nanbaijiantan fault zone[J]. COAL GEOLOGY & EXPLORATION, 2012, 40(4): 5-11. DOI: 10.3969/j.issn.1001-1986.2012.04.002

Structural characteristics and fluid effects of Nanbaijiantan fault zone

  • Nanbaijiantan fault zone can be divided into slip damage zone and induced fracture zone. The slip damage zone within the fault core are characterized by fractured breccia such as strong consolidation and densification as well as small thickness, while the induced fracture zone is wide and has developed fractures, intense cementation and filling. The fillings in the induced fracture zone are mainly calcites and analcites with minor silicates and asphalts. A great number of fluid inclusions, both saline water and organic water, occur in the fillings and they are linear distribution along cleavages and micro fractures of calcites. The analysis of saline water inclusions indicates that there are three confidence intervals of homogenization temperature data, which means that three episodes of great fluid activities have been present in the long geological history of Nanbaijiantan fault zone, and this is also supported by three different colors, brown, bright yellow and bluish green, of organic inclusions observed under the fluorescence microscope. Cementation has played an important role in trapping hydrocarbon around Nanbaijiantan fault zone. The initial sealed fault zone would be reactivately triggered by later tectonic movements and more cement deposits for the new episode of fluid flow. Therefore, the sealing property of this fault zone has been strengthened by intense cementation resulting from multiple episodes of fluid activities.
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