期刊文献+
共找到8篇文章
< 1 >
每页显示 20 50 100
Causes of Cretaceous subduction termination below South China and Borneo:Was the Proto-South China Sea underlain by an oceanic plateau?
1
作者 Suzanna H.A.van de Lagemaat Licheng Cao +4 位作者 Junaidi Asis Eldert L.Advokaat Paul R.D.Mason Mark J.Dekkers Douwe J.J.van Hinsbergen 《Geoscience Frontiers》 SCIE CAS CSCD 2024年第2期100-124,共25页
The South China,Indochina,and Borneo margins surrounding the South China Sea contain long-lived arcs that became inactive at approximately 85 Ma,even though an embayment of oceanic crust(the‘Proto-South China Sea’)r... The South China,Indochina,and Borneo margins surrounding the South China Sea contain long-lived arcs that became inactive at approximately 85 Ma,even though an embayment of oceanic crust(the‘Proto-South China Sea’)remained in the intervening region.This oceanic crust eventually subducted in the Cenozoic below Borneo and the Cagayan arc,while the modern South China Sea opened in its wake.To investigate the enigmatic cessation of Mesozoic subduction below South China and Borneo,we studied a fragment of oceanic crust and overlying trench-fill sediments that accreted to NW Borneo during the final stages of Paleo-Pacific subduction.Based on radiolarian biostratigraphy of cherts overlying the pillow basalts and detrital zircon geochronology of the trench-fill,we constrained the minimum age of the oceanic crust during accretion to 40 Ma.This shows that subduction cessation was not related to ridge subduction.Geochemical analysis of pillow basalts revealed an enriched mid-ocean ridge basalt signature comparable to oceanic plateaus.Using paleomagnetism,we show that this fragment of oceanic crust was not part of the Izanagi Plate but was part of a plate(the‘Pontus’Plate)separated from the Izanagi Plate by a subduction zone.Based on the minimum 40 Ma age of the oceanic crust and its geochemistry,we suggest that Mesozoic subduction below South China and Borneo stopped when an oceanic plateau entered the trench,while the eastern plate margin with the Izanagi Plate remained active.We show how our findings offer opportunities to restore plate configurations of the Panthalassa-Tethys junction region. 展开更多
关键词 Proto-South China Sea PALEOMAGNETISM Geochemistry BORNEO Paleo-Pacific izanagi plate
原文传递
郯庐断裂带的演化及其对西太平洋板块运动的响应 被引量:189
2
作者 朱光 王道轩 +2 位作者 刘国生 牛漫兰 宋传中 《地质科学》 CAS CSCD 北大核心 2004年第1期36-49,共14页
首次从郯庐断裂带走滑糜棱岩中获得了白云母 1 2 7 62± 0 1 9Ma的40 Ar 39Ar年龄 ,其与糜棱岩的全岩40 Ar 39Ar年龄相吻合。这些年代学研究成果以及同走滑期岩浆活动 ,表明郯庐断裂带于早白垩世发生了大规模的左行平移。这一早白... 首次从郯庐断裂带走滑糜棱岩中获得了白云母 1 2 7 62± 0 1 9Ma的40 Ar 39Ar年龄 ,其与糜棱岩的全岩40 Ar 39Ar年龄相吻合。这些年代学研究成果以及同走滑期岩浆活动 ,表明郯庐断裂带于早白垩世发生了大规模的左行平移。这一早白垩世构造—岩浆事件是伊泽纳崎板块突然发生高速、斜向俯冲的结果。晚白垩世 早第三纪郯庐断裂带转变成巨型的伸展构造 ,普遍控制发育了断陷盆地。太平洋板块的高角度正向俯冲使中国东部出现软流圈上涌、岩石圈拆沉 ,从而造成了郯庐断裂带与整个中国东部卷入了强烈的伸展活动。晚第三纪初期起动的挤压活动 ,使郯庐断裂带上的断陷盆地同步抬升和闭合 ;断裂带的逆冲活动则断续延至今日 ,成为中国东部最大的近代地震活动带。郯庐断裂带晚第三纪以来的挤压活动是西太平洋弧后扩张的响应 ,而印度板块碰撞的构造挤出起着辅助作用。 展开更多
关键词 同位素年龄 构造演化 板块运动 太平洋板块 郯庐断裂带
下载PDF
郯庐断裂带的平移运动与成因 被引量:90
3
作者 朱光 刘国生 +2 位作者 牛漫兰 宋传中 王道轩 《地质通报》 CAS CSCD 北大核心 2003年第3期200-207,共8页
在华北、华南板块碰撞期间,郯庐断裂带究竟是何种边界仍是没有解决的重大地学问题,许多学者对此提出了不同的构造解释模式。关于郯庐断裂的平移距离仍存在着较大的分歧与有待深入研究之处。在华北、华南板块拼合之后,郯庐断裂带发生了... 在华北、华南板块碰撞期间,郯庐断裂带究竟是何种边界仍是没有解决的重大地学问题,许多学者对此提出了不同的构造解释模式。关于郯庐断裂的平移距离仍存在着较大的分歧与有待深入研究之处。在华北、华南板块拼合之后,郯庐断裂带发生了一次大规模的左行平移,其糜棱岩的40Ar/39Ar年龄为132~119Ma,指示为早白垩世的平移活动,平移活动中伴生了强烈的岩浆活动。这期左行平移标志着中国东部构造的重大转折,是滨太平洋构造对前期古特提斯构造的叠加,其动力学机制为太平洋区伊佐奈岐板块突然出现的高速斜向俯冲。 展开更多
关键词 郯庐断裂带 大别-苏鲁造山带 左行平移 构造模式 伊佐奈岐板块
下载PDF
华北晚中生代构造演化过程——根据太行山北部盆地沉积记录 被引量:11
4
作者 王永超 董树文 +2 位作者 施炜 岑敏 李江瑜 《地球学报》 EI CAS CSCD 北大核心 2016年第1期35-45,共11页
太行山北部地区处于燕山山脉和太行山山脉的交汇处,其侏罗纪—白垩纪叠加盆地发育过程记录了东西向盆地向北东向盆地转化过程,对刻画华北晚中生代陆内变形过程及其动力学背景具有重要意义。本文以太行山北部草沟堡盆地和招柏盆地为例,... 太行山北部地区处于燕山山脉和太行山山脉的交汇处,其侏罗纪—白垩纪叠加盆地发育过程记录了东西向盆地向北东向盆地转化过程,对刻画华北晚中生代陆内变形过程及其动力学背景具有重要意义。本文以太行山北部草沟堡盆地和招柏盆地为例,在盆地基本构造格架分析的基础上,通过详细的沉积物物源分析、盆地原型再造等沉积学方法,结合岩浆岩同位素年代学数据,提出太行山北部晚中生代构造演化过程,主要经历四个发展演化阶段,包括中侏罗世晚期近南北向构造挤压与挠曲盆地发育、晚侏罗世近南北向弱伸展作用与壳源火山喷发、晚侏罗世末期—早白垩世早期北西—南东向构造挤压与前陆盆地形成、早白垩世北西—南东向伸展作用与幔源火山作用。构造体制转变本质上是动力学体系的转变,在中晚侏罗世东亚大陆多向汇聚体系之下,太行山北部经历的多期构造叠加和盆地叠置过程折射了蒙古—鄂霍茨克构造体系向滨太平洋构造体系的转化过程。 展开更多
关键词 太行山北部 晚中生代 沉积物物源分析 盆地原型再造 西伯利亚板块 izanagi板块
下载PDF
辽宁寒岭—偏岭平移断裂带特征及其形成动力机制 被引量:10
5
作者 张国仁 江淑娥 +5 位作者 杨占兴 李春明 关培彦 韩小平 丁伟 王海鹏 《地学前缘》 EI CAS CSCD 2004年第3期183-192,共10页
寒岭—偏岭平移断裂带位于辽宁东部 ,是中国东部郯庐断裂东盘的一个次级断裂。它控制着辽东鞍山—本溪地区地质体的分布。通过对平移断裂的展布、形态、伴随构造、牵引构造、位移方向和幅度、平移时间、断层尾端及动力学演化等特征研究 ... 寒岭—偏岭平移断裂带位于辽宁东部 ,是中国东部郯庐断裂东盘的一个次级断裂。它控制着辽东鞍山—本溪地区地质体的分布。通过对平移断裂的展布、形态、伴随构造、牵引构造、位移方向和幅度、平移时间、断层尾端及动力学演化等特征研究 ,认为该断裂主要活动于晚三叠世 ,在晚侏罗世—早白垩世最为活跃 ,伴随岩浆侵入活动、火山喷发及陆相沉积。断裂带长约 1 3 0km ,中段位移最大可达 3 1km ,向东西两端逐渐减少。该断裂活跃时期主要表现为左行平移性质。构造的活动 ,主要与中生代时期欧亚大陆与伊佐奈岐板块。 展开更多
关键词 寒岭—偏岭平移断裂带 左行平移 晚侏罗世—早白垩世 伊佐奈岐板块
下载PDF
黑龙江虎林杂岩变形样式与时代:对中国东北东部早白垩世古太平洋板块俯冲的启示 被引量:7
6
作者 梁琛岳 刘永江 +2 位作者 宋志伟 张骞 杨岩 《岩石学报》 SCIE EI CAS CSCD 北大核心 2020年第3期685-702,共18页
黑龙江虎林盆地位于兴凯地块北部,盆地内部中央隆起区出露一套呈NE走向展布的虎林杂岩,岩石强烈韧性变形,对其变形样式及其动力学背景的探讨,为进一步研究兴凯地块乃至中国东北东部中生代构造属性和古太平洋构造体制下构造演化过程提供... 黑龙江虎林盆地位于兴凯地块北部,盆地内部中央隆起区出露一套呈NE走向展布的虎林杂岩,岩石强烈韧性变形,对其变形样式及其动力学背景的探讨,为进一步研究兴凯地块乃至中国东北东部中生代构造属性和古太平洋构造体制下构造演化过程提供一个独特的视角。虎林杂岩主体由云母片岩和侵位其中的花岗质岩脉组成,塑性变形特征明显,发育倾向NW向片麻理,走向NE-SW的低角度矿物拉伸线理。岩石矿物组合、微观构造特征和石英EBSD组构分析显示岩石表现中低温变形样式,变形温度为350~450℃,石英变形机制以位错滑移和膨凸重结晶为主。结合宏观变形样式可知,虎林杂岩早期变形以NW倾向片麻理为标志,指示NW-SE向伸展作用,晚期变形以NE倾伏低角度矿物拉伸线理为标志,指示NE-SW向左行走滑事件。侵位的变形闪长玢岩的锆石年代学研究限定晚期左行走滑事件晚于闪长玢岩就位时间107.0±1.7Ma。早白垩世期间,伊泽奈崎板块(古太平洋)NW向斜向俯冲和板片后撤,导致东北东部乃至整个中国东部NW-SE向伸展,造成大陆岩石圈减薄、岩浆活动和虎林伸展断陷盆地的形成。在早白垩世末(104Ma之后),伊泽奈崎板块高速向欧亚大陆俯冲由NNW转向N,由低角度俯冲替代高角度俯冲,使得中国东部再次遭受区域性挤压,导致虎林杂岩发育大规模NE向压扭性左行走滑变形和持续性隆升。 展开更多
关键词 虎林杂岩 EBSD 锆石U-PB年龄 虎林盆地 兴凯地块 伊泽奈崎板块
下载PDF
Oceanic plate subduction history in the western Pacific Ocean:Constraint from late Mesozoic evolution of the Tan-Lu Fault Zone 被引量:42
7
作者 Guang ZHU Cheng LIU +4 位作者 Chengchuan GU Shuai ZHANG Yunjian LI Nan SU Shiye XIAO 《Science China Earth Sciences》 SCIE EI CAS CSCD 2018年第4期386-405,共20页
The NE-to NNE-striking Tan-Lu Fault Zone(TLFZ) is the largest fault zone in East China, and a typical representative for the circum-Pacific tectonics. Its late Mesozoic evolution resulted from subduction of the Paleo-... The NE-to NNE-striking Tan-Lu Fault Zone(TLFZ) is the largest fault zone in East China, and a typical representative for the circum-Pacific tectonics. Its late Mesozoic evolution resulted from subduction of the Paleo-Pacific Plate,and can be used for indication to the subduction history. The TLFZ reactivated at the end of Middle Jurassic since its origination in Middle Triassic. This phase of sinistral motion can only be recognized along the eastern edge of the Dabie-Sulu orogenis,and indicates initiation of the Paleo-Pacific(Izanagi) Plate subduction beneath the East China continent. After the Late Jurassic standstill, the fault zone experienced intense sinistral faulting again at the beginning of Early Cretaceous under N-S compression that resulted from the NNW-ward, low-angle, high-speed subduction of the Izanagi Plate. It turned into normal faulting in the rest of Early Cretaceous, which was simultaneous with the peak destruction of the North China Craton caused by backarc extension that resulted from rollback of the subducting Izanagi Plate. The TLFZ was subjected to sinistral, transpressive displacement again at the end of Early Cretaceous. This shortening event led to termination of the North China Craton destruction. The fault zone suffered local normal faulting in Late Cretaceous due to the far-field, weak backarc extension. The late Mesozoic evolution of the TLFZ show repeated alternation between the transpressive strike-slip motion and normal faulting. Each of the sinistral faulting event took place in a relatively short period whereas every normal faulting event lasted in a longer period, which are related to the subduction way and history of the Paleo-Pacific Plates. 展开更多
关键词 中生代 历史 进化 太平洋 早白垩纪 海洋 西方
原文传递
Growth structures and growth strata of the Qianjiadian Basin in the western Yanshan fold and thrust belt, North China 被引量:4
8
作者 Xiaofei SHI Shaofeng LIU Chengfa LIN 《Science China Earth Sciences》 SCIE EI CAS CSCD 2019年第7期1092-1109,共18页
The northwestward subduction of the Izanagi Plate beneath the eastern Eurasian Plate during the Late Mesozoic caused a series of compressional deformation events in the Yanshan fold and thrust belt(YFTB), but the tect... The northwestward subduction of the Izanagi Plate beneath the eastern Eurasian Plate during the Late Mesozoic caused a series of compressional deformation events in the Yanshan fold and thrust belt(YFTB), but the tectonic deformation timing, tectonic properties and relationship between tectonic uplift and sediment accumulation in the intermontane basins continue to be debated. For this reason, the sedimentology, sediment provenance, and basin structure of the Qianjiadian Basin(QJB) in the northern Beijing region during the Late Jurassic and Early Cretaceous were studied in detail. The results suggest that a fault-propagation fold-type(FPFT) growth structure and growth strata developed on the western edge of the QJB and that the top part of Member 2 and Member 3 of the Tuchengzi Formation are growth strata controlled by the limb rotation mechanism. In two small thrust faults in the QJB, the Mesoproterozoic Xiamaling Formation is thrust over the Tuchengzi Formation, and these faults may have controlled the development of the fault-bend fold-type growth strata. An analysis of the "source-to-sink" process suggests that the hanging wall succession of the Shangyi-Pingquan fault(SPF) was the main source area of the Late Jurassic to early Early Cretaceous strata in the QJB. A zircon206 Pb/238 U age of 140.8±2.4 Ma for the volcanic rocks at the bottom of the FPFT growth strata represents the timing of the initiation of FPFT growth structure development. The discovery of the FPFT growth structure and growth strata in the QJB indicate that the QJB was an intermontane flexural basin controlled by fold and thrust structures during the early Early Cretaceous. Near the E-W-trending SPF, the NE-SW-trending Qianjiadian thrust fault(QJTF) and two small intrabasinal thrust faults may constitute a unified right-lateral strike-slip system that formed in response to the northwestward flat subduction of the Izanagi Plate beneath the East Asian continent during the Jurassic-Early Cretaceous. 展开更多
关键词 Yanshan FOLD and THRUST belt Qianjiadian BASIN Tuchengzi Formation GROWTH structure GROWTH STRATA izanagi plate
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部