|
西湖凹陷杭州斜坡带北段断裂系统特征及其对圈闭的控制
|
Abstract:
本文在新三维地震资料解释基础上,分析杭州斜坡带北段断裂系统特征,探讨断裂对圈闭的控制作用。研究结果表明:在斜坡结构上,杭州斜坡带受杭州35古隆起分隔影响,具有“南北分块”特征,其中北段处于古隆起东北缘,受控于迎翠轩主断裂。在断裂系统特征上,北段断裂系统在垂向上可明显的分为下部断陷构造层、中部断拗转换构造层和上部拗陷–反转构造层。在断裂控圈特征上,杭州斜坡带北段构造圈闭主要发育于断–拗转换构造层平湖组地层内,受迎翠轩主断裂活动下的NNE-NE向断裂控制,具有一定的牵引背斜形态,总体定型于平湖组沉积末期的玉泉运动时期。根据断裂及背斜组合样式,区内构造圈闭多与扭动构造样式有关,圈闭类型可划分为断鼻构造圈闭群、帚状构造圈闭群和似花状构造圈闭群。最终,本文综合区域地质条件认为,迎翠轩主断裂后期活化与大规模生烃作用匹配较好,处于迎翠轩主断裂下降盘的帚状、似花状构造圈闭易于俘获油气,是值得进一步勘探的有利目标。
Based on the interpretation of 3D seismic data, this paper analyzes the characteristics of the fault system in the northern part of Hangzhou slope zone, and discusses the controlling effect of faults on traps. The results show that: in the slope structure, the Hangzhou slope zone is affected by the 35 ancient uplift of Hangzhou, which has the characteristics of “North-South block”. The north section which located in the northeast margin of the ancient uplift, is controlled by the main fault of Yingcuixuan. In terms of the characteristics of fault system, the northern fault system can be vertically divided into the lower fault depression structure layer, the middle fault depression transformation structure layer and the upper depression inversion structure layer. The structural traps in the northern part of Hangzhou slope zone are mainly developed in Pinghu Formation of fault depression transition structural layer, controlled by NNE-NE faults under the main fault activity of Yingcuixuan, with certain traction anticline shape, and generally formed in the Yuquan movement period at the end of Pinghu Formation deposition. According to the combination pattern of faults and anticlines, the structural traps in the area are mostly related to the twisting structural pattern. The trap types can be divided into fault nose structural trap group, broom structural trap group and flower like structural trap group. According to the comprehensive regional geological conditions, the late activation of Yingcuixuan main fault is well matched with large-scale hydrocarbon generation, and the broom like and flower like structural traps in the descending plate of Yingcuixuan main fault are easy to capture oil and gas, which are worthy of further exploration.
[1] | 吴孔友, 秦磊, 谭明友, 王玥阳. 构造对东营凹陷深层砂体发育的控制作用[J]. 沉积学报, 2014, 32(5): 893-900. |
[2] | 陈晓红, 何文渊, 冯子辉. 松辽盆地徐家围子断陷主要断裂对气藏的控制作用[J]. 天然气工业, 2012, 32(3): 53-56. |
[3] | 姚超, 焦贵浩, 王同和, 等. 中国含油气构造样式[M]. 北京: 石油工业出版社, 2004. |
[4] | 朱伟林, 王国纯. 中国近海前新生代油气勘探新领域探索[J]. 地学前缘, 2000, 7(3): 215-226. |
[5] | 蒋一鸣. 西湖凹陷平湖斜坡带平湖组碎屑锆石U-Pb年龄及米兰科维奇旋回: 对源–汇系统及沉积演化的约束[J]. 地质科技情报, 2019, 38(6): 133-140. |
[6] | 唐贤君, 蒋一鸣, 张绍亮. 平湖斜坡带火山岩层发育构造环境及油气地质意义[J]. 地质科技情报, 2018, 37(1): 27-36. |
[7] | 沈伟峰, 零克钢. 西湖凹陷断裂系统与油气分布关系[C]//第五次东海石油地质研讨会论文集. 上海: 上海市石油学会, 2004. |
[8] | 杨丽娜, 王丽顺. 西湖凹陷保斜坡断裂特征及与油气成藏的关系[J]. 海洋石油, 2007, 27(1): 19-24. |
[9] | 蔡华, 张建培. 东海西湖凹陷平湖斜坡带断层特征及其封闭性[J]. 海洋地质前沿, 2013, 29(4): 20-26. |
[10] | 蔡华, 张建培, 唐贤君. 西湖凹陷断裂系统特征及其控藏机制[J]. 天然气工业, 2014, 34(10): 18-26. |
[11] | 张建培. 东海西湖凹陷平湖斜坡带断裂系统特征及成因机制探讨[J]. 地质科学, 2013, 48(1): 291-303. |
[12] | 唐贤君, 蒋一鸣, 张建培, 等. 东海盆地西湖凹陷平北区断陷层断裂特征及其对圈闭的控制[J]. 海洋地质前沿, 2019(8): 34-43. |
[13] | 刘金水, 廖宗廷, 贾健谊, 等. 东海陆架盆地地质结构及构造演化[J]. 上海地质, 2003(3): 1-6. |
[14] | 张绍亮, 张建培, 唐贤君, 等. 东海西湖凹陷断裂系统几何学特征及其成因机制[J]. 海洋地质与第四纪地质, 2014, 34(1): 91-98. |
[15] | Zhu, W.L., Zhong, K., Fu, X.W., Chen, C.F., Zhang, M.Q. and Gao, S.L. (2019) The Formation and Evolution of the East China Sea Shelf Basin: A New View. Earth-Science Reviews, 190, 89-111.
https://doi.org/10.1016/j.earscirev.2018.12.009 |
[16] | 周心怀, 蒋一鸣, 唐贤君. 西湖凹陷成盆背景、原型盆地演化及勘探启[J]. 中国海上油气, 2019, 31(3): 1-10. |
[17] | 孟祥君, 张训华. 东海西湖凹陷北部基底构造特征[J]. 海洋地质与第四纪地质, 2008, 28(2): 61-63. |