From foredeep to orogenic wedge-top: The Cretaceous Songliao retroforeland basin, China

IF 8.5 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Zhiqiang Feng , Stephan A. Graham
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引用次数: 0

Abstract

Songliao Basin, the largest Mesozoic intracontinental nonmarine basin in eastern China, initiated during the latest Jurassic as a backarc extensional basin; rifting failed and thermal cooling controlled subsidence through the early Late Cretaceous. Integrating 2-D and 3D reflection seismic and borehole data with regional geological studies, we interpret sedimentary sequence and structural patterns of the Coniacian-Maastrichtian fill of Songliao Basin as defining a retroforeland basin system developed after 88 Ma (marked by the T11 unconformity in the basin), including (1) significant increase in the thickness of the Nenjiang Formation eastward towards orogenic highlands of the Zhangguangcai Range and the convergent continental margin; (2) a shift of detrital provenance in the basin from north to southeast; and (3) propagation of E-W shortened structures, increasing eastward in amplitude, frequency, and degree of inversion toward the orogen. During latest Cretaceous, foreland basin fill progressively deformed, as the foredeep evolved to a wedge-top tectonic setting, marked by the basin-wide T04 unconformity within the upper Nenjiang Formation at 81.6 Ma. Much of the basin was brought into the orogenic wedge and eroded by the end of the Cretaceous. Late Jurassic/Early Cretaceous backarc rifting of uncratonized basement comprised of accreted terranes likely facilitated and localized the foreland. Synrift normal faults reactivated and extensively inverted as thrust faults are prominent in the eastern 1/3 of the basin, whereas folds developed above detachments in shaley early post-rift strata dominate the western 2/3 of the basin. Songliao foreland development likely was driven by changing plate dynamics and collision along the Pacific margin after 88 Ma.

Abstract Image

从前深到造山楔顶:中国白垩纪松辽后前陆盆地
松辽盆地是中国东部最大的中生代陆内非海相盆地,形成于晚侏罗世,为弧后伸展盆地;裂谷作用失败,热冷却控制了晚白垩世早期的沉降。将二维和三维反射地震和钻孔资料与区域地质研究相结合,将松辽盆地coniax - maastrichtian充填体的沉积序列和构造模式解释为88 Ma以后发育的后前陆盆地体系(以盆地T11不整合为标志),包括:(1)向张广才山脉造山带高地和收敛大陆边缘方向方向的灌江组厚度显著增加;(2)盆地碎屑物源由北向东南转移;(3)东西向缩短构造向造山带方向传播,振幅、频率和反转程度均向东增加。在晚白垩世,前陆盆地充填逐渐变形,前深演化为楔顶构造环境,在81.6 Ma时形成了覆盖整个盆地的T04不整合。到白垩纪末期,盆地的大部分地区被带入造山带并受到侵蚀。晚侏罗世/早白垩世由陆块组成的非克拉通化基底的弧后裂陷作用可能促进和限定了前陆。盆地东部1/3地区以逆冲断层为主的同裂谷正断层复生和广泛反转为主,而西部2/3地区则以泥质早期后裂谷地层中剥离以上褶皱为主。松辽前陆的发育可能是受88 Ma以后板块动力学变化和太平洋边缘碰撞的驱动。
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来源期刊
Geoscience frontiers
Geoscience frontiers Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
17.80
自引率
3.40%
发文量
147
审稿时长
35 days
期刊介绍: Geoscience Frontiers (GSF) is the Journal of China University of Geosciences (Beijing) and Peking University. It publishes peer-reviewed research articles and reviews in interdisciplinary fields of Earth and Planetary Sciences. GSF covers various research areas including petrology and geochemistry, lithospheric architecture and mantle dynamics, global tectonics, economic geology and fuel exploration, geophysics, stratigraphy and paleontology, environmental and engineering geology, astrogeology, and the nexus of resources-energy-emissions-climate under Sustainable Development Goals. The journal aims to bridge innovative, provocative, and challenging concepts and models in these fields, providing insights on correlations and evolution.
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