徐家围子断陷沙河子组主干断裂形成演化与地层剥蚀特征Formation and evolution of main faults and formation denudation characteristics of Shahezi Formation in Xujiaweizi Rift
贾文昊,关晓巍,张大智,谢昭涵,孙剑桥,于振宇
JIA Wenhao,GUAN Xiaowei,ZHANG Dazhi,XIE Zhaohan,SUN Jianqiao,YU Zhenyu
摘要(Abstract):
主干断裂的活动控制着徐家围子断陷沙河子组的建造与改造。为了明确断裂活动,运用位移距离曲线方法系统分析了徐家围子断陷主干断裂的生长活动特征,通过不整合面下的同向轴特征分析了徐家围子断陷沙河子组沉积末期的剥蚀改造作用。结果表明:徐家围子断陷主干断裂分段特征明显,徐西断裂与宋西断裂在火石岭组沉积时期分别是数条分段的小断裂,在沙河子组沉积时期连通为整条断裂并持续控陷活动;徐中断裂在沙河子组沉积时期弱伸展弱控陷,在沙河子组沉积末期作为薄弱带发生压扭反转;徐东断裂带中的徐东正断层在沙河子组沉积时期弱控陷,徐东逆断层在营城组一段沉积末期的反转作用下形成;沙河子组沉积末期的反转作用对沙河子组厚度与构造格局产生明显改变,沿徐西断裂与宋西断裂存在较强的剥蚀,徐西断裂北端升平凸起尤为强烈,徐中断裂压扭反转产生一定的走滑分量并遭受剥蚀,徐东逆断层在营城组一段沉积末期的反转中形成,对沙河子组厚度无明显改变,但对徐东构造带构造格局产生明显影响。研究成果可为徐家围子断陷古构造恢复与进一步勘探提供理论参考。
Main faults activity controls the architecture and reworking of Shahezi Formation in Xujiaweizi Rift. In order to clarify faults activity, the growth activity characteristics of main faults in Xujiaweizi Rift are analyzed sys-tematically by displacement-distance curve method, and the denudation and reworking of Shahezi Formation at sedi-mentary end of Xujiaweizi Rift is analyzed by the characteristics of events under unconformity. The results shows that the main faults of Xujiaweizi Rift have obvious segmentation characteristics. Xuxi fault and Songxi fault were several sub-faults respectively during sedimentary period of Huoshiling Formation, and connected to whole faults during sedimentary period of Shahezi Formation with continuous activities controlling rifting. Xuzhong fault was weakly extensional and weakly controlled rifting during sedimentary period of Shahezi Formation, and with transpressional reverse occurred as weak zone at the end sedimentary period of Shahezi Formation. Xudong normal fault in Xudong fault zone weakly controlled rifting during sedimentary period of Shahezi Formation, and Xudong re-verse fault was formed by reversal effect at the end sedimentary period of the first member of Yingcheng Formation. The reversal effect at the end sedimentary period of Shahezi Formation significantly changed the thickness and struc-tural framework of Shahezi Formation. There was strong denudation along Xuxi fault and Songxi fault, especially the budge at the north end of Xuxi fault. The transpression reversal of Xuzhong fault produced certain strike-slip compo-nent and suffered denudation. Xudong reverse fault was formed by reversal effect at the end sedimentary period of the first member of Yingcheng Formation, with no obvious changing on thickness of Shahezi Formation, but has ob-vious influence on structural framework of Xudong structural belt. The research provides theoretical reference for pa-leostructure restoration and further exploration of Xujiaweizi Rift.
关键词(KeyWords):
徐家围子断陷;沙河子组;断裂活动;剥蚀特征;构造演化
Xujiaweizi Rift;Shahezi Formation;fault activity;denudation characteristics;structural evolution
基金项目(Foundation):
作者(Author):
贾文昊,关晓巍,张大智,谢昭涵,孙剑桥,于振宇
JIA Wenhao,GUAN Xiaowei,ZHANG Dazhi,XIE Zhaohan,SUN Jianqiao,YU Zhenyu
DOI: 10.19597/J.ISSN.1000-3754.202304048
参考文献(References):
- [1]张尔华,姜传金,张元高,等.徐家围子断陷深层结构形成与演化的探讨[J].岩石学报,2010,26(1):149-157.ZHANG Erhua,JIANG Chuanjin,ZHANG Yuangao,et al.Study on the formation and evolution of deep structure of Xujiaweizi fault depression[J].Acta Petrologica Sinica,2010,26(1):149-157.
- [2]张元高,陈树民,张尔华,等.徐家围子断陷构造地质特征研究新进展[J].岩石学报,2010,26(1):142-148.ZHANG Yuangao,CHEN Shumin,ZHANG Erhua,et al.The new progress of Xujiaweizi fault depression characteristics of structural geology research[J].Acta Petrologica Sinica,2010,26(1):142-148.
- [3]于丹,吕延防,付晓飞,等.松辽盆地北部徐家围子断陷断裂构造特征及对深层天然气的控制作用[J].地质论评,2010,56(2):237-245.YU Dan,LüYanfang,FU Xiaofei,et al.Characteristics of fault structure and its control on deep gas reservoir in Xujiaweizi Fault depression,Songliao Basin[J].Geological Review,2010,56(2):237-245.
- [4]李钰玮,陈均亮,张莹,等.徐家围子断陷徐中断裂特征及形成机制[J].大庆石油地质与开发,2018,37(2):34-39.LI Yuwei,CHEN Junliang,ZHANG Ying,et al.Characteristics and generating mechanism of Xuzhong fault in Xujiaweizi fault depressiom[J].Petroleum Geology&Oilfield Development in Daqing,2018,37(2):34-39.
- [5]方立敏,李玉喜,殷进垠,等.松辽盆地断陷末期反转构造特征与形成机制[J].石油地球物理勘探,2003,38(2):190-193.FANG Limin,LI Yuxi,YIN Jinyin,et al.Characters of reverse and its forming mechanism in late of fault depression in Songliao Basin[J].Oil Geophysical Prospecting,2003,38(2):190-193.
- [6]李娟,舒良树.松辽盆地中、新生代构造特征及其演化[J].南京大学学报(自然科学版),2002,38(4):525-531.LI Juan,SHU Liangshu.Mesozoic-Cenozoic tectonic features and evolution of the Songliao Basin,NE China[J].Journal of Nanjing University(Natural Sciences),2002,38(4):525-531.
- [7]刘伟,唐大卿,陈明月,等.松辽盆地南部孤店断陷断裂构造特征及演化[J].断块油气田,2022,29(6):816-823.LIU Wei,TANG Daqing,CHEN Mingyue,et al.Fault structure characteristics and evolution in the Gudian fault depression,southern Songliao Basin[J].Fault-Block Oil&Gas Field,2022,29(6):816-823.
- [8]李忠诚,鲍志东,魏兆胜,等.箕状断陷湖盆初始裂陷期层序地层与沉积充填特征:以松辽盆地梨南洼槽下白垩统火石岭组二段为例[J].石油与天然气地质,2022,43(3):670-681.LI Zhongcheng,BAO Zhidong,WEI Zhaosheng,et al.Sequence stratigraphy and sedimentary filling characteristics of a half-graben rift lake basin during the initial rifting period:A case study of the 2nd member of Lower Cretaceous Huoshiling Formation,Linan Sag,Songliao Basin[J].Oil&Gas Geology,2022,43(3):670-681.
- [9]殷进垠,刘和甫,迟海江.松辽盆地徐家围子断陷构造演化[J].石油学报,2002,23(2):26-29.YIN Jinyin,LIU Hefu,CHI Haijiang.Evolution and gas-accumulation of Xujiaweizi Depression in Songliao Basin[J].Acta Petrolei Sinica,2002,23(2):26-29.
- [10]刘学锋,钟广法,王正允,等.松辽盆地北部徐家围子断陷构造格局及其成因[J].西安石油大学学报(自然科学版),2006,21(4):6-10.LIU Xuefeng,ZHONG Guangfa,WANG Zhengyun,et al.Tectonic framework of Xujiaweizi fault depression in northern Songliao Basin and its origin[J].Journal of Xi’an Shiyou University(Natural Science Edition),2006,21(4):6-10.
- [11]侯启军.松辽盆地北部深层断陷地质结构及演化研究[D].广州:中国科学院广州地球化学研究所,2006.HOU Qijun.Study on the geological structure and evolution of the fault-depressions in the deep in north Songliao Basin[D].Guangzhou:Guangzhou Institute of Geochemistry,Chinese Academy of Sciences,2006.
- [12]李晶.松辽盆地大庆长垣形成机制的讨论[J].大庆石油地质与开发,1995,14(2):1-3.LI Jing.Petroleum geologyforming mechanism of Daqing Placanticline in Songliao Basin[J].Petroleum Geology&Oilfield Development in Daqing,1995,14(2):1-3.
- [13]胡望水.松辽盆地北部正反转构造与油气聚集[J].天然气工业,1996,16(5):20-24.HU Wangshui.Positive inverted structures and oilgas accumulation in northern Songliao Basin[J].Natural Gas Industry,1996,16(5):20-24.
- [14]朱焕来,陈岩,王卫学,等.油源断裂伴生圈闭形成时期厘定方法及其应用[J].特种油气藏,2022,29(4):30-37.ZHU Huanlai,CHEN Yan,WANG Weixue,et al.Method for determining formation period of associated traps of oil source faults and its application[J].Special Oil&Gas Reserviors,2022,29(4):30-37.
- [15]胡望水,吕炳全,张文军,等.松辽盆地构造演化及成盆动力学探讨[J].地质科学,2005,40(1):16-31.HU Wangshui,LüBingquan,ZHANG Wenjun,et al.An approach to tectonic evolution and dynamics of the Songliao Basin[J].Chinese Journal of Geology,2005,40(1):16-31.
- [16]张文婧,任延广,陈均亮,等.松辽盆地徐家围子断陷挤压变形特征[J].大庆石油地质与开发,2008,27(4):21-25.ZHANG Wenjing,REN Yanguang,CHEN Junliang,et al.Characteristic of compression deformation of Xujiaweizi Rift in Songliao Basin[J].Petroleum Geology&Oilfield Development in Daqing,2008,27(4):21-25.
- [17]陈均亮,蔡希源,林春华,等.松辽盆地北部断陷盆地构造特征与幕式演化[J].石油学报,1999,20(4):14-18.CHEN Junliang,CAI Xiyuan,LIN Chunhua,et al.Tectonic characteristics and episodic evolution of the northern fault depression in Songliao Basin[J].Acta Petrolei Sinica,1999,20(4):14-18.
- [18]蒙赵红,陈均亮,张晓东,等.徐家围子断陷断层相关褶皱类型及演化模式[J].大庆石油地质与开发,2015,34(1):7-10.MENG Zhaohong,CHEN Junliang,ZHANG Xiaodong,et al.Types and evolutionary models of the fault-related folds in Xujiaweizi Fault Depression[J].Petroleum Geology&Oilfield Development in Daqing,2015,34(1):7-10.
- [19]陈均亮,林春华,杭文艳.大庆长垣构造体系的变形序列及形成机制[J].大庆石油地质与开发,2015,34(5):1-6.CHEN Junliang,LIN Chunhua,HANG Wenyan.Deformation sequence and forming mechanism of the structural system for Daqing Placanticline[J].Petroleum Geology&Oilfield Development in Daqing,2015,34(5):1-6.
- [20]葛荣峰,张庆龙,王良书,等.松辽盆地构造演化与中国东部构造体制转换[J].地质论评,2010,56(2):180-195.GE Rongfeng,ZHANG Qinglong,WANG Liangshu,et al.Tectonic evolution of Songliao Basin and the prominent tectonic regime transition in eastern China[J].Geological Review,2010,56(2):180-195.
- 徐家围子断陷
- 沙河子组
- 断裂活动
- 剥蚀特征
- 构造演化
Xujiaweizi Rift - Shahezi Formation
- fault activity
- denudation characteristics
- structural evolution