Source rock distribution pattern in an episodic rifting sag and later stage magmatiic reformation: A case from Panyu 4 sag, Zhu I Depression
-
摘要:
经历裂陷I幕a期强烈裂陷,a期末北部的抬升和岩浆活动,至裂陷I幕b期北洼萎缩、南洼扩大、新形成北西洼,洼陷整体走向从NE-SW转变为NEE-SSW,珠琼运动II幕整体接受抬升剥蚀。在裂陷I幕演化过程中,半深湖-深湖亚相自下而上呈现自 NE向 SW迁移特征。上文昌组烃源岩面积较大,但仅南部厚度较大,本身湖相有机质含量较高;下文昌组半深湖-深湖亚相烃源岩面积相对较小,北部在I幕a期末被剥蚀后厚度仍较大,南部厚度较小,岩浆活动从某种程度上起到了促进下文昌组有机质成熟、加速成烃的作用。上、下文昌组半深湖-深湖亚相烃源岩具有差异分布的特征,下文昌组的生烃强度优于上文昌组。
Abstract:The Panyu 4, a sag in the Zhu Ⅰ Depression with relatively high degree of exploration, is formed by episodic rifting and reformed by later stage magmatism. The distribution pattern of source rocks in the sag is the key issue to current oil and gas exploration. The latest seismic interpretation, together with the comprehensive research of core data, logging data, geochemical data, suggests that the Wenchang Formation in the Panyu 4 sag has a typical two-layer structure. After intensive rifting in the Stage a of the Rifting Episode I, the uplifting and magmatism in the north of the sag caused the shrinkage of the sag N, the expansion of the sag S and the formation of sag NW. The general strike of the Panyu 4 sag changed form NE-SW to NEE- SSW. In the second Rifting Episode, the Zhu-Qiong movement gave rise to the regional uplifting followed by denudation. In the Rifting Episode I, semi-deep lake deposits gradually turned to deep lacustrine facies from bottom to top following the NE-SW direction. The Lower Wenchang Formation has relatively smaller distribution area for semi-deep and deep lacustrine deposits which is the major source rocks currently in exploration. The Upper Wenchang Formation has larger area in terms of source rock distribution. However, thick source rocks only distributed in the south, where is rich in organic matter and lack of magmatism. Although the lower Wenchang Formation was denuded in the north by the end of the Stage a of the Rifting Episode I, the source rock in the north is thicker than that in the south. The magmatism may enhance the maturity of organic matter and promote the hydrocarbon generation in the Lower Wenchang Formation. The semi-deep and deep lacustrine facies source rocks in the Upper and Lower Wenchang Formations are rather different and the hydrocarbon-generating intensity in the Lower Wenchang Formation is higher than that in the Upper.
-
Key words:
- episodic rifting /
- magmatism /
- Huizhou movement /
- source rocks /
- Pearl River Mouth Basin /
- Zhu I Depression /
- Panyu 4 sag
-
[1] 林畅松, 张燕梅, 李思田, 等. 中国东部中新生代断陷盆地幕式裂陷过程的动力学响应和模拟模型[J]. 地球科学(中国地质大学学报), 2004, 29(5):583-588
LIN Changsong, ZHANG Yanmei, LI Sitian, et al. Episodic rifting dynamic process and quantitative model of Mesozoic-Cenozoic Faulted Basins in Eastern China [J]. Earth Science(Journal of China University of Geosciences), 2004, 29(5): 583-588.
[2] 施和生, 于水明, 梅廉夫, 等. 珠江口盆地惠州凹陷古近纪幕式裂陷特征[J]. 天然气工业, 2009, 29(1):35-37 doi: 10.3787/j.issn.1000-0976.2009.01.008
SHI Hesheng, YU Shuiming, MEI Lianfu, et al. Features of Paleogene episodic rifting in Huizhou fault depression in the Pearl River Mouth basin [J]. Natural Gas Industry, 2009, 29(1): 35-37. doi: 10.3787/j.issn.1000-0976.2009.01.008
[3] 王维, 叶加仁, 杨香华, 等. 珠江口盆地惠州凹陷古近纪多幕裂陷旋回的沉积物源响应[J]. 地球科学(中国地质大学学报), 2015, 40(6):1061-1071 doi: 10.3799/dqkx.2015.088
WANG Wei, YE Jiaren, YANG Xianghua, et al. Sediment provenance and depositional response to multistage rifting, Paleogene, Huizhou Depression, Pearl River Mouth Basin [J]. Earth Science(Journal of China University of Geosciences), 2015, 40(6): 1061-1071. doi: 10.3799/dqkx.2015.088
[4] 陈翔, 张成, 秦成岗, 等. 珠江口盆地惠州凹陷西南部地区古近纪构造特征及其演化模式[J]. 海洋地质与第四纪地质, 2018, 38(2):88-95
CHEN Xiang, ZHANG Cheng, QIN Chenggang, et al. Characteristics and evolutionary model of Paleogene structures in southwestern Huizhou Depression, Pearl River Mouth Basin [J]. Marine Geology & Quaternary Geology, 2018, 38(2): 88-95.
[5] 袁才, 彭光荣, 温华华, 等. 珠江口盆地惠州凹陷恩平组源岩特征及勘探潜力[J]. 海洋地质与第四纪地质, 2017, 37(2):149-159
YUAN Cai, PENG Guangrong, WEN Huahua, et al. A new source rock in Huizhou Sag of Pearl Riverl Mouth Basin and its exploration potential [J]. Marine Geology & Quaternary Geology, 2017, 37(2): 149-159.
[6] 施和生, 舒誉, 杜家元, 朱俊章等著. 珠江口盆地古近系断陷盆地石油地质[M]. 武汉: 中国地质大学出版社, 2017.
SHI Hesheng, SHU Yu, DU Jiayuan, et al. Petroleum geology of Paleogene fault basin in Pearl River Mouth Basin[M]. Wuhan: China University of Geoscience Press, 2017.
[7] 彭光荣, 温华华, 刘从印, 等. 珠江口盆地珠一坳陷浅层油气勘探实践及潜力探讨——以番禺4洼为例[J]. 海洋地质前沿, 2013, 29(3):22-28
PENG Guangrong, WEN Huahua, LIU Congyin, et al. Practice of shallow oil and gas exploration in Zhu I Depression of the Pearl River Mouth Basin: A case from Panyu 4 Sag [J]. Marine Geology Frontiers, 2013, 29(3): 22-28.
[8] 吴智平, 胡阳, 钟志洪. 珠一坳陷番禺4洼新生代断裂特征及其区域动力背景[J]. 中国石油大学学报(自然科学版), 2015, 39(4):1-9
WU Zhiping, HU Yang, ZHONG Zhihong. Cenozoic faults characteristics and regional dynamic background of Panyu 4 subsag, Zhu I Depression [J]. Journal of China University Of Petroleum, 2015, 39(4): 1-9.
[9] 彭光荣, 刘从印, 吴建耀, 等. 珠江口盆地番禺4洼晚期断裂系统对油气成藏的控制作用[J]. 特种油气藏, 2013, 20(3):41-45 doi: 10.3969/j.issn.1006-6535.2013.03.009
PENG Guangrong, LIU Congyin, WU Jianyao, et al. The control action of late-stage fracture system on hydrocarbon accumulation in the Panyu 4 sag in Pearl River Mouth basin [J]. Special Oil and Gas Reservoirs, 2013, 20(3): 41-45. doi: 10.3969/j.issn.1006-6535.2013.03.009
[10] 朱筱敏, 黄捍东, 代一丁, 等. 珠江口盆地番禺4洼文昌组层序格架与沉积体系研究[J]. 岩性油气藏, 2014, 26(4):1-8 doi: 10.3969/j.issn.1673-8926.2014.04.001
ZHU Xiaomin, HUANG Handong, DAI Yiding, et al. Study on depositional system an sequence framework of Wenchang Formation in Panyu 4 depression of the Pearl River Mouth Basin [J]. Lithologic Reservoirs, 2014, 26(4): 1-8. doi: 10.3969/j.issn.1673-8926.2014.04.001
[11] 江宁, 全志臻, 彭光荣, 等. 基于地震沉积学方法的沉积相研究——以珠江口盆地番禺4洼古近系为例[J]. 热带海洋学报, 2016, 35(4):102-111 doi: 10.11978/2015123
JIANG Ning, QUAN Zhizhen, PENG Guangrong, et al. Research on sedimentary facies based on seismic sedimentology: A case study of Paleogene Strata of Panyu 4 Sag in the Pearl River Mouth Basin [J]. Journal of Tropical Oceanography, 2016, 35(4): 102-111. doi: 10.11978/2015123
[12] 杨玲, 陈开远, 魏谋杰, 等. 珠江口盆地番禺4洼陷文昌组层序地层划分[J]. 石油天然气学报, 2008, 30(2):187-190
YANG Ling, CHEN Kaiyuan, WEI Moujie, et al. Sequence stratigraphic subdivision of Wenchang Formation in Fanyu 4 Depression of Zhujiangkou Basin [J]. Journal of Oil and Gas Technology, 2008, 30(2): 187-190.
[13] 张向涛, 朱俊章, 熊万林, 等. 番禺4洼文昌组烃源岩生物标志化合物特征与油源判识[J]. 中国海上油气, 2020, 32(4):12-23
ZHANG Xiangtao, ZHU Junzhang, XIONG Wanlin, et al. Biomarker characteristics and oil-source discrimination of source rocks in Wenchang Formation of Panyu 4 sag [J]. China Offshore Oil and Gas, 2020, 32(4): 12-23.
[14] 孙立强, 凌洪飞, 赵葵东, 等. 华夏地块早白垩世埃达克质岩的岩石成因及地质意义[J]. 中国科学(地球科学), 2017, 60(7):1237-1255
SUN LiQiang, LING HongFei, ZHAO KuiDong, et al. Petrogenesis of Early Cretaceous adakitic granodiorite: Implication for a crust thickening event within the Cathaysia Block, South China [J]. Science China(Earth Science), 2017, 60(7): 1237-1255.
[15] 刘海伦, 梅廉夫, 施和生, 等. 珠江口盆地珠一坳陷裂陷结构: 基底属性与区域应力联合制约[J]. 地球科学, 2018:1-17
LIU Hailun, MEI Lianfu, SHI Hesheng, et al. Rift Style Controlled by Basement Attribute and Regional Stress in Zhu I Depression, Pearl River Mouth Basin [J]. Earth Science, 2018: 1-17.
[16] Qing Ye, Lianfu Mei, Hesheng Shi, et al. The Late Cretaceous tectonic evolution of the South China Sea area: An overview, and new perspectives from 3D seismic reflection data [J]. Earth-Science Reviews, 2018, 187: 186-204. doi: 10.1016/j.earscirev.2018.09.013
[17] 施和生, 杜家元, 梅廉夫, 等. 珠江口盆地惠州运动及其意义[J]. 石油勘探与开发, 2020, 47(3):1-15
SHI Hesheng, DU Jiayuan, MEI Lianfu, et al. Huizhou Movement and its implications in Pearl River Mouth Basin, China [J]. Petroleum Exploration and Development, 2020, 47(3): 1-15.
[18] 吴克强, 刘志峰, 王升兰, 等. 珠一坳陷北部洼陷带始新统半深-深湖相烃源岩综合判识[J]. 中国海上油气, 2015, 27(3):10-15, 24
WU Keqiang, LIU Zhifeng, WANG Shenglan, et al. Composite recognition of Eocene semi-deep and lacustrine facies source rocks in northern subsags belt of Zhu Ⅰ depression, Pearl River Mouth basin [J]. China Offshore Oil and Gas, 2015, 27(3): 10-15, 24.
[19] 龚丽, 朱红涛, 舒誉, 等. 珠江口盆地恩平凹陷文昌组层序格架中中-深湖相烃源岩空间展布规律及发育模式[J]. 地球科学(中国地质大学学报), 2014, 39(5):546-556
. Distribution of middle-deep lacustrine source rocks within sequence stratigraphic framework of Wenchang Formation in Enping Depression, the Pearl River Mouth Basin [J]. Earth Science-Journal of China University of Geosciences, 2014, 39(5): 546-556.
[20] 丁亮, 郭刚, 郝建荣, 等. 珠一坳陷西江主洼古近系文昌组烃源岩特征及生烃潜力[J]. 中国海上油气, 2015, 27(5):21-26
DING Liang, GUO Gang, HAO Jianrong, et al. Characteristics of Paleogene source rocks of Wenchang Formation and hydrocarbon potential in Xijiang sag, Zhu Ⅰ depression [J]. China Offshore Oil and Gas, 2015, 27(5): 21-26.
[21] 刘安, 武国忠, 吴世敏. 南海东北部下地壳高速层的成因探讨[J]. 地质论评, 2008, 54(5):609-616 doi: 10.3321/j.issn:0371-5736.2008.05.005
LIU An, WU Guozhong, WU Shimin. A discussion on the origin of high velocity layer in the lower crust of northeast South China Sea [J]. Geological Review, 2008, 54(5): 609-616. doi: 10.3321/j.issn:0371-5736.2008.05.005
[22] 王民, 卢双舫, 薛海涛, 等. 岩浆侵入体对有机质生烃(成熟)作用的影响及数值模拟[J]. 岩石学报, 2010, 26(1):177-184
WANG Min, LU Shuangfang, XUE Haitao, et al. The effects of magmatic intrusions on the maturation of organic matter and its numerical simulation [J]. Acta Petrologica Sinica, 2010, 26(1): 177-184.
[23] 李建忠, 单玄龙, 吴晓智, 等. 火山作用的成烃与成藏效应[M]. 科学出版社, 2015.
LI Jianzhong, SHAN Xuanlong, WU Xiaozhi, et al. Hydrocarbon generation and accumulation effects of volcanism[M]. Science Press, 2015.
[24] 王民, 王岩, 卢双舫, 等. 岩浆侵入体热作用对烃源岩生烃影响的定量表征——以松辽盆地南部英台断陷为例[J]. 断块油气田, 2014, 21(2):171-175
WANG Min, WANG Yan, LU Shuangfang, et al. Thermal influence of magma intrusion on hydrocarbon generation of source rock: Taking south Yingtai Fault Depression of Songliao Basin as an example [J]. Fault-block Oil & Gas Field, 2014, 21(2): 171-175.
[25] 蒋德鑫, 姜正龙, 张贺, 等. 烃源岩总有机碳含量测井预测模型探讨——以陆丰凹陷文昌组为例[J]. 岩性油气藏, 2019, 31(6):109-117
JIANG Dexin, JIANG Zhenglong, ZHANG He, et al. Well logging prediction models of TOC content in source rocks: a case of Wenchang Formation in Lufeng Sag [J]. Lithologic Reservoirs, 2019, 31(6): 109-117.