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新疆北部古生代构造演化的几点认识 被引量:98
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作者 徐学义 李荣社 +5 位作者 陈隽璐 马中平 李智佩 王洪亮 白建科 唐卓 《岩石学报》 SCIE EI CAS CSCD 北大核心 2014年第6期1521-1534,共14页
最近的地质调查和研究资料揭示,新疆北部古生代存在"三块两带"的构造格局,并经历了复杂的洋陆转换过程。地质、地球物理和碎屑锆石年龄结果显示,准噶尔盆地南部应存在一个至少发育前震旦系的古老陆块;初步认为东准噶尔北自额... 最近的地质调查和研究资料揭示,新疆北部古生代存在"三块两带"的构造格局,并经历了复杂的洋陆转换过程。地质、地球物理和碎屑锆石年龄结果显示,准噶尔盆地南部应存在一个至少发育前震旦系的古老陆块;初步认为东准噶尔北自额尔齐斯构造带东南的玛依鄂博地区至南部的卡拉麦里构造带南界,整体为一增生杂岩体,西准噶尔自额尔齐斯构造带南缘至谢米斯台南缘亦为一增生杂岩体。提出新疆北部加里东运动表现为准噶尔-吐哈陆块、中天山陆块群、伊犁地块等拼合形成哈萨克斯坦板块的一部分。从新疆北部泥盆系建造组合和沉积环境演变视角,探讨了早古生代形成的哈萨克板块北部洋盆从早泥盆世开始,至晚泥盆世拼合,洋盆经历了逐渐变浅直至消亡的演化过程。结合区域地质调查资料,提出南天山为一巨大的增生杂岩体,代表了哈萨克斯坦板块与塔里木板块最后增生拼合的位置,亦是古亚洲洋在中国境内最后闭合的位置,闭合的时限为早石炭末期。在以上认识的基础上,提出新疆北部晚古生代构造演化的"三块两带"基本框架:即在统一哈萨克斯坦板块形成后,自北而南依次存在西伯利亚板块、哈萨克斯坦板块、塔里木板块及其间的准噶尔洋盆和南天山洋盆。晚泥盆世哈萨克斯坦板块与西伯利亚板块完成增生拼贴;早石炭世末,塔里木板块与西伯利亚-哈萨克斯坦联合板块完成增生拼贴,古亚洲洋结束洋陆转换;晚石炭世至早二叠世,新疆北部进入后碰撞伸展至大陆裂谷演化阶段。 展开更多
关键词 古生代构造演化 三块两带构造格局 新疆北部 古亚洲洋 中亚造山带
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广西钦防海槽迁移与沉积-构造转换面 被引量:20
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作者 许效松 尹福光 +3 位作者 万方 梁宗华 韦宝东 张金端 《沉积与特提斯地质》 CAS CSCD 2001年第4期1-10,共10页
广西的钦州 防城一带 ,素以钦防海槽称之 ,系指加里东期构造运动后 ,扬子与华夏陆块间的“残留海”。其两侧为古隆起所夹持 ,西为大明山古隆起 ,东为云开大山古隆起 ,其间划分为四个构造单元 ,由东向西依次为∶博白坳陷、六万大山隆起... 广西的钦州 防城一带 ,素以钦防海槽称之 ,系指加里东期构造运动后 ,扬子与华夏陆块间的“残留海”。其两侧为古隆起所夹持 ,西为大明山古隆起 ,东为云开大山古隆起 ,其间划分为四个构造单元 ,由东向西依次为∶博白坳陷、六万大山隆起、钦州坳陷和十万大山坳陷。现构造形迹的排列 ,反馈钦防海槽在早古生代至中生代间深海盆或浅海深水盆地在构造和沉积上有自东向西迁移的特点。晚古生代盆地迁移过程至少有八个沉积 构造转换面可记录盆地的构造演化∶第 1转换面为早奥陶世与晚寒武世间的沉积界面 ;第 2转换面为早志留世与晚奥陶世间的沉积界面 ;第 3转换面为早泥盆世早期与晚志留世间的海侵上超面 ;第 4转换面为中泥盆世的海侵上超面 ;第 5转换面为中二叠世与晚二叠世间的沉积界面 ;第 6转换面为早三叠世的海侵面 ;第 7转换面为中晚三叠世与早三叠世间的沉积界面 ;第 8转换面为早侏罗世与晚三叠世间的沉积界面。前两个界面为盆山转换面 ,与华南加里东构造运动过程相耦合 ,为挤压的构造背景 ;第 3界面为水下间断面 ,下泥盆统与上志留统为不连续沉积 ,在构造上应是挤压机制下的破裂不整合 ,也是加里东期构造运动的响应 ;第 4界面为海西期的海侵上超面 ,与盆地走滑拉张同步 ;第 5界面则反馈于印支期造山的? 展开更多
关键词 钦防海槽 盆地迁移 沉积-构造转换面 古生代-中生代构造演化 广西 沉积序列
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北秦岭官坡地区稀有金属伟晶岩锡石U-Pb年龄 被引量:7
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作者 曾威 周红英 +4 位作者 孙丰月 王佳营 毕君辉 崔玉荣 陈军强 《地质通报》 CAS CSCD 北大核心 2021年第12期2179-2182,共4页
秦岭造山带古生代构造演化是热点研究问题,关于该带早古生代造山作用发生的时限存在较大的争议。学者们通过总结大量稀有金属伟晶岩的形成时代,认为稀有金属伟晶岩多形成于造山晚期或造山后或非造山环境等相对稳定的构造背景[1-2]。
关键词 伟晶岩 秦岭造山带 北秦岭 古生代造山作用 稀有金属 古生代构造演化 非造山环境 官坡
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Late Paleozoic tectonic evolution in northern Korean Peninsula
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作者 JON Guk Pu LYANG To Jun +2 位作者 LIU Yongjiang KIM Sung Hyon LIU Chengxian 《Global Geology》 2009年第2期94-99,共6页
Since Late Proterozoic era, the Korean Peninsula has been evolved into a state with relatively stable regions and orogenic belts which were developed differently each other. The Late Paleozoie (Late Carboniferous-Ear... Since Late Proterozoic era, the Korean Peninsula has been evolved into a state with relatively stable regions and orogenic belts which were developed differently each other. The Late Paleozoie (Late Carboniferous-Early Triassic) sediments are well developed in the Korean Peninsula, and called the Pyongan System. The Pyongan System from Late Carboniferous to Lower Triassic is distributed in the Pyongnan and Hyesan-Riwon Basins, and Rangrim Massif, and divided into Hongjom ( C2 ), Ripsok ( C2 ), Sadong ( C2-P1 ), Kobangsan and Rokam (Taezhawon) (P2-T1) sequences. The sediments of the Tumangang Orogenic Belt are called Tuman System which is composed of the Amgi Series, consisting of elastic formation with mafic effusive material, overlaid by the Kyeryongsan Series, consisting mainly of marie volcano sediments. The Songsang Series which rests on the Kyeryongsan Series mainly consists of elastic formation with minor felsic effusive material. In the Tumangang Orogenic Belt the tectonic movement, called Tumangang Tectonic Movement, occurred in the Lower Permian-Lower Triassic. 展开更多
关键词 Korean Peninsula Upper Paleozoic Pyongnam Basin Tumangang Orogenic Belt
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Palaeozoic tectonic evolution of the Tianshan belt,NW China 被引量:78
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作者 Jacques CHARVET SHU LiangShu +5 位作者 Sebastien LAURENT-CHARVET WANG Bo Michel FAURE Dominique CLUZEL CHEN Yan Koen De JONG 《Science China Earth Sciences》 SCIE EI CAS 2011年第2期166-184,共19页
The Chinese Tianshan belt is a major part of the southern Central Asian Orogenic Belt, extending westward to Kyrgyzstan and Kazakhstan. Its Paleozoic tectonic evolution, crucial for understanding the amalgamation of C... The Chinese Tianshan belt is a major part of the southern Central Asian Orogenic Belt, extending westward to Kyrgyzstan and Kazakhstan. Its Paleozoic tectonic evolution, crucial for understanding the amalgamation of Central Asia, comprises two stages of subduction-collision. The first collisional stage built the Eo-Tianshan Mountains, before a Visean unconformity, in which all structures are verging north. It implied a southward subduction of the Central Tianshan Ocean beneath the Tarim active margin, that induced the Ordovician-Early Devonian Central Tianshan arc, to the south of which the South Tianshan back-arc basin opened. During the Late Devonian, the closure of this ocean led to a collision between Central Tianshan arc and the Kazakhstan-Yili-North Tianshan Block, and subsequently closure of the South Tianhan back-arc basin, producing two suture zones, namely the Central Tianshan and South Tianshan suture zones where ophiolitic melanges and HP metamorphic rocks were emplaced northward. The second stage included the Late Devonian-Carboniferous southward subduction of North Tianshan Ocean beneath the Eo-Tianshan active margin, underlined by the Yili-North Tianshan arc, leading to the collision between the Kazakhstan-Yili-NTS plate and an inferred Junggar Block at Late Carboniferous-Early Permian time. The North Tianshan Suture Zone underlines likely the last oceanic closure of Central Asia Orogenic Belt; all the oceanic domains were consumed before the Middle Permian. The amalgamated units were affected by a Permian major wrenching, dextral in the Tianshan. The correlation with the Kazakh and Kyrgyz Tianshan is clarified. The Kyrgyz South Tianshan is equivalent to the whole part of Chinese Tianshan (CTS and STS) located to the south of Narat Fault and Main Tianshan Shear Zone; the so-called Middle Tianshan thins out toward the east. The South Tianshan Suture of Kyrgyzstan correlates with the Central Tianshan Suture of Chinese Tianshan. The evolution of this southern domain remains similar from east (Gangou area) to west until the Talas-Ferghana Fault, which reflects the convergence history between the Kazakhstan and Tarim blocks. 展开更多
关键词 TIANSHAN NW China TECTONICS Paleozoic accretion
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