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拆离型微地块:洋陆转换带和洋中脊变形机制 被引量:4
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作者 李阳 李三忠 +9 位作者 郭玲莉 周在征 索艳慧 王光增 朱俊江 刘一鸣 刘博 周洁 李园洁 张国伟 《大地构造与成矿学》 EI CAS CSCD 北大核心 2019年第4期779-794,共16页
板块构造理论从其诞生起已经统治固体地球科学领域半个世纪,然而也临着巨大的挑战,如板块“登陆”、起源以及动力学等问题。微地块构造理论的提出有可能解决板块构造的这三大难题。拆离型微地块是9种微地块中非常重要的类型之一,在慢速... 板块构造理论从其诞生起已经统治固体地球科学领域半个世纪,然而也临着巨大的挑战,如板块“登陆”、起源以及动力学等问题。微地块构造理论的提出有可能解决板块构造的这三大难题。拆离型微地块是9种微地块中非常重要的类型之一,在慢速?超慢速洋中脊和洋陆转换带中广有分布。围限这类微地块的边界主要是切割岩石圈的拆离断层,使其脱离母板块而成为独立演化的微地块。因此,岩石圈尺度的拆离断层也应为除洋中脊之外的第二种离散型边界。根据拆离块体的属性及发育的构造位置,拆离型微地块可进一步划分为拆离微陆块和拆离微洋块,分别对应了陆缘和洋内拆离断层作用的结果。研究拆离型微地块形成和演化过程对于丰富和发展板块构造理论具有重要意义。本文结合最新研究进展,重点综述拆离型微地块的概念、特征、成因机制以及构造意义,以拓展微地块构造理论内涵。 展开更多
关键词 拆离断层 洋陆转换带 微地块 海洋核杂岩 海底扩张 板块构造
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南极新生代海陆格局变迁对全球气候变化的影响 被引量:5
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作者 裴军令 赵越 +6 位作者 周在征 杨振宇 刘晓春 郑光高 仝亚博 李建锋 侯礼富 《地质力学学报》 CSCD 北大核心 2021年第5期867-879,共13页
南极大陆记录了新生代以来地质演化中多次重大地质事件,包括大陆生长、裂解和离散、全球冷却和大陆尺度南极冰盖的发展等。尽管非常重要,但至今关于南极大陆新生代地质演化仍有诸多争论。文章主要针对塔斯曼通道和德雷克海峡贯通过程,... 南极大陆记录了新生代以来地质演化中多次重大地质事件,包括大陆生长、裂解和离散、全球冷却和大陆尺度南极冰盖的发展等。尽管非常重要,但至今关于南极大陆新生代地质演化仍有诸多争论。文章主要针对塔斯曼通道和德雷克海峡贯通过程,系统总结并分析了南极洲、南美洲和澳大利亚的构造、岩浆和沉积演化历史。始新世晚期至渐新世早期开始发育的南极环极洋流(ACC)受德雷克海峡和塔斯曼通道扩张程度的控制。综合分析和对比研究表明,~34 Ma全球气候从“暖室”到“冷室”的转变与ACC开始的时间一致,表明构造通道的打开控制了ACC的发育,进而对全球气候产生了重要影响。最后,简要总结了南极作为一个完整的地球系统,其新生代地质演化如何控制海陆格局的变迁,并提出未来研究需要解决的关键问题。 展开更多
关键词 南极 新生代 海陆变迁 全球气候变化 冰盖
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Meso-Cenozoic Evolution of Earth Surface System under the East Asian Tectonic Superconvergence 被引量:10
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作者 DMITRIENKO Liudmila V. WANG Pengcheng +11 位作者 LI Sanzhong CAO Xianzhi Ian SOMERVILLE zhou zaizheng HU Mengying SUO Yanhui GUO Lingli WANG Yongming LI Xiyao LIU Xin YU Shengyao ZHU Junjiang 《Acta Geologica Sinica(English Edition)》 CAS CSCD 2018年第2期814-849,共36页
The East Asian geological setting has a long duration related to the superconvergence of the Paleo-Asian, Tethyan and Paleo-Pacific tectonic domains. The Triassic Indosinian Movement contributed to an unified passive ... The East Asian geological setting has a long duration related to the superconvergence of the Paleo-Asian, Tethyan and Paleo-Pacific tectonic domains. The Triassic Indosinian Movement contributed to an unified passive continental margin in East Asia. The later ophiolites and I-type granites associated with subduction of the Paleo-Pacific Plate in the Late Triassic, suggest a transition from passive to active continental margins. With the presence of the ongoing westward migration of the Paleo-Pacific Subduction Zone, the sinistral transpressional stress field could play an important role in the intraplate deformation in East Asia during the Late Triassic to Middle Jurassic, being characterized by the transition from the E-W-trending structural system controlled by the Tethys and Paleo-Asian oceans to the NE-trending structural system caused by the Paleo-Pacific Ocean subduction. The continuously westward migration of the subduction zones resulted in the transpressional stress field in East Asia marked by the emergence of the Eastern North China Plateau and the formation of the Andean-type active continental margin from late Late Jurassic to Early Cretaceous (160-135 Ma), accompanied by the development of a small amount of adakites. In the Late Cretaceous (135-90 Ma), due to the eastward retreat of the Paleo-Pacific Subduction Zone, the regional stress field was replaced from sinistral transpression to transtension. Since a large amount of late-stage adakites and metamorphic core complexes developed, the Andean-type active continental margin was destroyed and the Eastern North China Plateau started to collapse. In the Late Cretaceous, the extension in East Asia gradually decreased the eastward retreat of the Paleo-Pacific subduction zones. Futhermore, a significant topographic inversion had taken place during the Cenozoic that resulted from a rapid uplift of the Tibet Plateau resulting from the India-Eurasian collision and the formation of the Bohai Bay Basin and other basins in the East Asian continental margin. The inversion caused a remarkable eastward migration of deformation, basin formation and magmatism. Meanwhile, the basins that mainly developed in the Paleogene resulted in a three-step topography which typically appears to drop eastward in altitude. In the Neogene, the basins underwent a rapid subsidence in some depressions after basin-controlled faulting, as well as the intracontinental extensional events in East Asia, and are likely to be a contribution to the uplift of the Tibetan Plateau. 展开更多
关键词 SUPERCONVERGENCE topographic inversion Meso-Cenozoic East Asia
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