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1.
中国东南部晚中生代构造作用   总被引:119,自引:6,他引:119  
舒良树  周新民 《地质论评》2002,48(3):249-260
濒太平洋西缘,位居东亚陆缘南段的中国东南部,是在EW向古亚洲构造域基底之上发育起来的。研究表明,该区在早、中侏罗世经历了一次从EW向古亚洲构造域向NE向西太平洋构造域的体制转换,其转换位置之一是在南岭一带,其地质标志是侏罗纪盆地内近东西走向的灰色沉积岩层、同位素年龄值为180 Ma左右的双峰式火山岩和中侏罗世A型花岗岩等。到早白垩世,本区已基本完成古亚洲域向西太平洋构造域的体制转换。中国东南部晚中生代火成岩的成因机制基本上可用古太平洋岩石圈消减作用、玄武岩浆底侵作用和地壳深熔作用相结合的模式来解释。日本中央构造线—台湾纵谷带—菲律宾民都洛-巴拉望带是晚中生代古太平洋板块向东亚陆缘的消减带。晚中生代古太平洋板块(伊泽奈琦和库拉板块)低角度(<30°)、快速率(>10cm/a)的俯冲,是西太平洋陆缘区能形成宽阔火山岩带的重要动力学原因。宽阔的火山—侵入杂岩区和6条区域断裂构成了中国东南部晚中生代的基本构造框架。台湾纵谷带为古太平洋板块的俯冲-缝合带,而发育在大陆内部的5条区域断裂则具不同构造属性:长乐—南澳带是晚中生代大陆内部的左旋走滑带,上虞—政和—大埔断裂是古基底隆升区与晚中生代火山—沉积盆地区的分界带,绍兴—江山—东乡—萍乡断裂是晚白垩世—古近纪红  相似文献   

2.
晚中生代时期,中国东南部位于日本—台湾火山岛弧的后缘。中侏罗世—晚白垩世期间,受太平洋板块朝东亚陆缘俯冲以及弧后扩张作用的影响,中国东南部广泛发育了伸展断陷盆地和火山—侵入岩岩系。盆地类型包括中侏罗世的裂谷盆地、晚侏罗世—早白垩世的火山碎屑—熔岩断陷盆地、晚白垩世—古近纪的红色碎屑断陷盆地等3种,火成岩岩系则主要由花岗岩类、双峰式火成岩、碱性花岗岩、变质核杂岩与穹隆状花岗岩等组成。盆地形成时代和岩浆岩侵位结晶时代相近,年龄峰期140~110 Ma (早白垩世),两者紧密分布在一起,构成早白垩世中国东南部盆岭构造。文章对中国东南部晚中生代盆地和岩浆岩山岭的基本地质特征进行了归纳,对火成岩系列的岩石学和构造地质等特征以及形成中国东南部盆岭格局的制约因素进行了分析。最后,对中国东南部晚中生代地球动力学演化过程进行了探讨。  相似文献   

3.
黑龙江漠河盆地构造特征与成盆演化   总被引:25,自引:0,他引:25  
对漠河盆地的地层层序、构造特征和构造单元、盆地演化过程等进行了研究。漠河盆地盖层主要为侏罗纪陆相煤系地层及白垩系火山岩,属典型的二元结构。晚侏罗世中期由于蒙古—鄂霍茨克洋的关闭,额尔古纳微板块与西伯利亚板块碰撞,使盆地西部产生逆冲推覆构造,地层缩短量在64km以上。晚侏罗世晚期到晚白垩世,盆地进入西太平洋构造域演化阶段,处于拉张环境,在盆地中部和东部发生了三期大规模的火山活动,形成火山断陷盆地。因此,漠河盆地经历了蒙古—鄂霍茨克洋和西太平洋两种不同构造域的演化阶段,具有西部挤压推覆、中部和东部拉张断陷构造特点。  相似文献   

4.
浅议沂沭断裂系及其邻区金矿成矿作用演化   总被引:2,自引:1,他引:2  
沂沭断裂系在晚侏罗世-早白垩世早期期间的挤压作用造成了胶东地区钙碱性岩浆的侵入,同时形成了相应的金矿化。早白垩世期间沂沭断裂系及其邻区进入拉张应力环境,在形成胶莱走滑拉分盆地的过程中,于盆地边缘产生层滑动断层带,造成层间滑动角砾岩型金矿的形成。燕山中期板块俯冲运动和地幔上涌等因素引起的区域性拉张作用使沂沭断裂继续向下深切张裂,向裂谷性质演化,造成沂南、临沂等地区较大规模中性偏碱性次火山岩型小岩体的侵入和火山喷发,在火山机构内或围绕次火山岩小岩体形成与中性偏碱性次火山岩有关的次火山岩型金矿化。沂沭断裂系及其邻区中生代构造岩浆活动与其相应金矿的形成均是与古太平洋各板块与欧亚大陆板块间的相互作用的结果。  相似文献   

5.
东南大陆边缘早侏罗世火成岩特征及其构造意义   总被引:36,自引:4,他引:36  
东南大陆边缘早侏罗世火成岩主要呈双峰式火山岩、基性超基性杂岩体及A型花岗岩等形态产出。本文运用岩石学探针技术,通过早侏罗世火成岩岩石学与地球化学研究,并与晚中生代火成岩作对比,提出早侏罗世火成岩的形成与南岭东段近EW向张性断裂活动有关,标志着印支挤压造山的结束;之后东南大陆进入晚中生代NE向活动大陆边缘俯冲造山阶段,经历了挤压造山—剪切拉张过程,并在晚白垩世末期进入又一轮后造山拉张裂解阶段,即中生代时东南大陆边缘经历了早中生代(三叠纪—早侏罗世)和晚中生代(中侏罗世—晚白垩世)两期造山事件,其中早侏罗世的区域拉张作用是特提斯构造域向滨太平洋构造域转换的前奏,构造域转换可能始于中侏罗世(165Ma)。  相似文献   

6.
安徽南部侏罗至白垩纪屯溪盆地位于NE向中下扬子火山岩带和NNE向中国东南部火山岩带的交接部位,其火山岩的年代学和成因研究可以提供华南晚中生代构造演化的信息。4个火山岩样品的LA-ICP-MS锆石U-Pb年龄及其岩石地球化学数据指示屯溪盆地发育两期火山岩:早期火山岩形成于156~152 Ma,为中、高钾钙碱性系列,稀土元素分布型式为轻稀土元素富集的右倾型,铕负异常不明显,富集轻稀土元素和大离子亲石元素,亏损高场强元素Nb、Ti、P;晚期火山岩形成于136~130 Ma,具有双峰式火山岩特征,其酸性组分属中钾钙碱性系列,稀土元素分布型式为右倾斜的"V"型,铕负异常明显,同样具有富集轻稀土元素、大离子亲石元素及亏损高场强元素Nb、Ti、P的特征。皖南屯溪盆地晚侏罗世-早白垩世火山活动类似于中国东南部火山岩带。结合前人资料,认为屯溪盆地晚侏罗世火山岩形成于挤压构造环境,而早白垩世火山岩形成于伸展环境,其成因与晚侏罗至早白垩世古太平洋板块俯冲角度变化和俯冲板片后撤作用有关。  相似文献   

7.
在重点梳理兴蒙造山区及其相邻地区早白垩世地层分布与沉积古地理特征的基础上,从地层沉积学角度探讨了研究区早白垩世沉积盆地特征。兴蒙造山区中东部在晚侏罗世巨厚粗碎屑沉积建造之上发育了巨厚的酸性-中性火山岩-火山碎屑岩与河流-湖泊相沉积岩系,构成中国东北部巨型NE向火山岩-沉积岩带。兴蒙造山区中东部早白垩世早中期以断陷(裂谷)盆地为主,古地貌以高地、河流和湖泊共存为特征,气候温湿且炎热,热河生物群萌生;早白垩世中晚期,北东向地壳强烈伸展并进一步向外围地区扩展,沉积盆地及充填建造和热河生物群也相应地向更广泛区域辐射发展。兴安岭-燕山沉积-火山岩带与古太平洋板块俯冲无关,板内软流圈上涌导致的区域性伸展是其主要的成因动力机制,也是中国东部早白垩世中晚期更大规模区域性伸展作用的序幕。兴蒙东部早白垩世晚期沉积盆地发育和古地理格局受Izanagi板块向亚洲大陆东部俯冲弧后伸展构造机制约束。  相似文献   

8.
本文系统总结了东北地区中生代火山岩的年代学、岩石组合及其时空分布规律,以便对环太平洋构造体系和蒙古——鄂霍茨克构造体系中生代的演化历史及其东北地区中生代区域成矿背景给出制约。基于火山岩中锆石U——Pb定年结果,东北地区中生代火山作用可划分成六期:晚三叠世(200~228Ma)、早——中侏罗世(173~190Ma)、中——晚侏罗世(158~166Ma)、早白垩世早期(138~145Ma)、早白垩世晚期(106~133Ma)和晚白垩世(88~97Ma)。晚三叠世火山作用主要分布在吉黑东部和小兴安岭——张广才岭地区,前者为A型流纹岩,后者为双峰式火山岩组合,它们共同揭示了古亚洲洋最终闭合后的伸展环境;早——中侏罗世火山岩主要分布在吉黑东部、小兴安岭——张广才岭和额尔古纳地区,吉黑东部和额尔古纳地区早——中侏罗世钙碱性火山岩的存在分别标志着古太平洋板块和蒙古——鄂霍茨克洋板块俯冲作用的发生,而小兴安岭——张广才岭早——中侏罗世火山岩则以双峰式火成岩组合为特征,反映了双向俯冲的弧后伸展环境;中——晚侏罗世和早白垩世早期火山岩主要分布在松辽盆地以西和冀北——辽西地区,前者为碱性——亚碱性的过渡系列,主要由玄武粗安岩、粗安岩和少量粗面岩组成,后者为A型流纹岩或碱性流纹岩组成,这些火山岩形成于加厚陆壳的坍塌或拆沉阶段;早白垩世晚期火山岩广泛分布于东北地区,吉黑东部为钙碱性火山岩组合,而松辽盆地和大兴安岭地区则主要为双峰式火山岩组合,前者标志着古太平洋板块的俯冲,后者与早期加厚陆壳的拆沉和/或类似弧后的伸展环境有关;晚白垩世火山岩主要分布在吉黑东部和陆内,前者为钙碱性火山岩组合,后者为碱性玄武岩,反映了来自东部环太平洋构造体系的俯冲作用。综合上述中生代火山岩的岩石组合及时空分布特征,可以判定:1)环太平洋构造体系对东亚大陆下的俯冲始于早侏罗世,中生代期间存在早侏罗世、早白垩世晚期和晚白垩世三次俯冲事件,其影响的空间范围主要在松辽盆地及其以东地区,陆缘和古俯冲带是寻找斑岩型矿床的有利场所,而陆内的伸展区域主要与浅成低温热液矿床有关;2)蒙古——鄂霍茨克构造体系经历了中生代早期的俯冲事件和中侏罗世及早白垩世早期两次陆内推覆事件,其影响的空间范围主要在松辽盆地以西地区和华北地块北缘,中生代早期的俯冲事件主要与活动陆缘背景下的斑岩型矿床关系密切,而晚侏罗世和早白垩世两次与加厚陆壳拆沉有关的伸展背景有利于多金属矿床的形成。  相似文献   

9.
赣闽粤地区早、中侏罗世构造地层研究   总被引:8,自引:0,他引:8  
对中国东南部浙闽赣湘粤地区侏罗纪以来的沉积地层和赣闽粤一带的早侏罗世—中侏罗世的地层特征和沉积规律进行了研究,结果表明:1)晚三叠世—早侏罗世时赣闽粤地区为东南高西北低的古地理格局,沉积环境差异明显;2)中侏罗世时受古太平洋板块在日本一带俯冲作用的影响,中国东南部发生了构造转换,构造格局发生了明显变动,以再一次的挤压隆升和山前快速堆积为特征,并使区域地层和构造格局从原先的近东西方向展布变成北东方向,尤以南岭东段的武夷山西部表现最明显,使早侏罗世的山地范围朝西北方向扩展,但是在南岭地区的闽西—赣南—粤北一带则以陆内裂谷和双峰式火山作用为特征,其成因可能与其深部动力学背景密切相关;3)从中侏罗世开始,在古太平洋板块强烈俯冲作用下,研究区逐步发生了从古亚洲—特提斯构造体制向古太平洋构造体制的转换,早白垩世已经完成这一构造转换,原先的近东西向构造域已经基本被北东向构造域所取代。中侏罗世是构造体制转换的重要时期,转换位置可能在南岭东段。  相似文献   

10.
大兴安岭呼中火山岩区中生代古构造应力场初探   总被引:6,自引:1,他引:5  
大兴安岭火山岩带北段呼中火山岩区,在中-晚侏罗世时期,最大主压应力轴方向为NW266°~316°,早白垩世最大主压应力轴为NE12°~50°,显示侏罗纪与白垩纪应力场的应力状态是截然不同的,但都处于拉张环境下。中-晚侏罗世由于NNE-SSW向的拉伸应力场的作用,在本区北部发生构造岩浆活动,形成了上黑龙江断陷盆地如NWW向展布的劲涛-蒙克山中基性火山喷发带,派生的NEE向张扭性应力使前中生代基底构造重新活动,形成大面积火山喷发。而早白垩世在NE-SW向拉伸应力场作用下,"额尔古纳地块"东部形成拗陷带,火山基底构造为NE-NNE向。   相似文献   

11.
http://www.sciencedirect.com/science/article/pii/S1674987111001095   总被引:11,自引:2,他引:9  
During the Late Mesozoic Middle Jurassic-Late Cretaceous,basin and range tectonics and associated magmatism representative of an extensional tectonic setting was widespread in southeastern China as a r...  相似文献   

12.
南海北部陆缘盆地形成的构造动力学背景   总被引:2,自引:0,他引:2  
摘要:南海北部陆缘盆地处于印度板块与太平洋及菲律宾海板块之间,但三大板块对南海北部陆缘盆地的影响是不同的。通过对三大板块及古南海演化的研究,可知南海北部陆缘地区应力环境于晚白垩世发生改变。早白垩世处于挤压环境,晚白垩世以来转变为伸展环境并且不同时期的成因不同。晚白垩世-始新世,华南陆缘早期造山带的应力松弛、古南海向南俯冲及太平洋俯冲板块的滚动后退导致其处于张应力环境。始新世时南海北部陆缘裂陷盆地开始产生,伸展环境没有变,但因其是由太平洋板块向西俯冲速率的持续降低及古南海向南俯冲引起的,南海北部陆缘盆地继续裂陷。渐新世-早中新世,地幔物质向南运动及古南海向南俯冲导致南海北部陆缘地区处于持续的张应力环境;渐新世早期南海海底扩张;中中新世开始,三大板块开始共同影响着南海北部陆缘盆地的发展演化。  相似文献   

13.
The Blue Nile Basin, situated in the Northwestern Ethiopian Plateau, contains ∼1400 m thick Mesozoic sedimentary section underlain by Neoproterozoic basement rocks and overlain by Early–Late Oligocene and Quaternary volcanic rocks. This study outlines the stratigraphic and structural evolution of the Blue Nile Basin based on field and remote sensing studies along the Gorge of the Nile. The Blue Nile Basin has evolved in three main phases: (1) pre‐sedimentation phase, include pre‐rift peneplanation of the Neoproterozoic basement rocks, possibly during Palaeozoic time; (2) sedimentation phase from Triassic to Early Cretaceous, including: (a) Triassic–Early Jurassic fluvial sedimentation (Lower Sandstone, ∼300 m thick); (b) Early Jurassic marine transgression (glauconitic sandy mudstone, ∼30 m thick); (c) Early–Middle Jurassic deepening of the basin (Lower Limestone, ∼450 m thick); (d) desiccation of the basin and deposition of Early–Middle Jurassic gypsum; (e) Middle–Late Jurassic marine transgression (Upper Limestone, ∼400 m thick); (f) Late Jurassic–Early Cretaceous basin‐uplift and marine regression (alluvial/fluvial Upper Sandstone, ∼280 m thick); (3) the post‐sedimentation phase, including Early–Late Oligocene eruption of 500–2000 m thick Lower volcanic rocks, related to the Afar Mantle Plume and emplacement of ∼300 m thick Quaternary Upper volcanic rocks. The Mesozoic to Cenozoic units were deposited during extension attributed to Triassic–Cretaceous NE–SW‐directed extension related to the Mesozoic rifting of Gondwana. The Blue Nile Basin was formed as a NW‐trending rift, within which much of the Mesozoic clastic and marine sediments were deposited. This was followed by Late Miocene NW–SE‐directed extension related to the Main Ethiopian Rift that formed NE‐trending faults, affecting Lower volcanic rocks and the upper part of the Mesozoic section. The region was subsequently affected by Quaternary E–W and NNE–SSW‐directed extensions related to oblique opening of the Main Ethiopian Rift and development of E‐trending transverse faults, as well as NE–SW‐directed extension in southern Afar (related to northeastward separation of the Arabian Plate from the African Plate) and E–W‐directed extensions in western Afar (related to the stepping of the Red Sea axis into Afar). These Quaternary stress regimes resulted in the development of N‐, ESE‐ and NW‐trending extensional structures within the Blue Nile Basin. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

14.
Detrital zircon U–Pb data from sedimentary rocks in the Hengyang and Mayang basins, SE China reveal a change in basin provenance during or after Early Cretaceous. The results imply a provenance of the sediment from the North China Craton and Dabie Orogen for the Upper Triassic to Middle Jurassic sandstones and from the Indosinian granitic plutons in the South China Craton for the Lower Cretaceous sandstones. The 90–120 Ma age group in the Upper Cretaceous sandstones in the Hengyang Basin is correlated with Cretaceous volcanism along the southeastern margin of South China, suggesting a coastal mountain belt have existed during the Late Cretaceous. The sediment provenance of the basins and topographic evolution revealed by the geochronological data in this study are consistent with a Mesozoic tectonic setting from Early Mesozoic intra-continental compression through late Mesozoic Pacific Plate subduction in SE China.  相似文献   

15.
Mesozoic-Cenozoic Basin Features and Evolution of Southeast China   总被引:1,自引:0,他引:1       下载免费PDF全文
The Late Triassic to Paleogene(T_3-E) basin occupies an area of 143100 km~2,being the sixth area of the whole of SE China;the total area of synchronous granitoid is about 127300 km~2;it provides a key for understanding the tectonic evolution of South China.From a new 1:1500000 geological map of the Mesozoic-Cenozoic basins of SE China,combined with analysis of geometrical and petrological features,some new insights of basin tectonics are obtained.Advances include petrotectonic assemblages, basin classification of geodynamics,geometric features,relations of basin and range.According to basin-forming geodynamicai mechanisms,the Mesozoic-Cenozoic basin of SE China can be divided into three types,namely:1) para-foreland basin formed from Late Triassic to Early Jurassic(T_3-J_1) under compressional conditions;2) rift basins formed during the Middle Jurassic(J_2) under a strongly extensional setting;and 3) a faulted depression formed during Early Cretaceous to Paleogene (K_1-E) under back-arc extension action.From the rock assemblages of the basin,the faulted depression can be subdivided into a volcanic-sedimentary type formed mainly during the Early Cretaceous(K_1) and a red -bed type formed from Late Cretaceous to Paleogene(K_2-E).Statistical data suggest that the area of all para-foreland basins(T_3-J_1) is 15120 km~2,one of rift basins(J_2) occupies 4640 km~2,and all faulted depressions equal to 124330 km~2 including the K_2-E red-bed basins of 37850 km~2.The Early Mesozoic (T_3-J_1) basin and granite were mostly co-generated under a post-collision compression background, while the basins from Middle Jurassic to Paleogene(J_2-E) were mainly constrained by regional extensional tectonics.Three geological and geographical zones were surveyed,namely:1)the Wuyishan separating zone of paleogeography and climate from Middle Jurassic to Tertiary;2)the Middle Jurassic rift zone;and 3)the Ganjiang separating zone of Late Mesozoic volcanism.Three types of basin-granite relationships have been identified,including compressional(a few),strike-slip(a few), and extensional(common).A three-stage geodynamical evolution of the SE-China basin is mooted:an Early Mesozoic basin-granite framework;a transitional Middle Jurassic tectonic regime; intracontinental extension and red-bed faulted depressions since the Late Cretaceous.  相似文献   

16.
通常认为中国东南大陆中生代时地壳裂解作用发生在燕山晚期。对赣南地区广泛分布的双峰式火山岩和A型花岗岩进行了Rb-Sr同位素定年研究,确定基性端元玄武岩的Rb-Sr等时线年龄为170-180Ma,酸性端员流纹岩和A型花岗岩的Rb-Sr等时线年龄为160-180Ma,表明它们形成于中侏罗世早期。由此提出东南太陆中生代时最早的裂解作用应该始于燕山早期。  相似文献   

17.
A synthesis is given in this paper on late Mesozoic deformation pattern in the zones around the Ordos Basin based on lithostratigraphic and structural analyses. A relative chronology of the late Mesozoic tectonic stress evolution was established from the field analyses of fault kinematics and constrained by stratigraphic contact relationships. The results show alternation of tectonic compressional and extensional regimes. The Ordos Basin and its surroundings were in weak N-S to NNE-SSW extension during the Early to Middle Jurassic, which reactivated E-W-trending basement fractures. The tectonic regime changed to a multi-directional compressional one during the Late Jurassic, which resulted in crustal shortening deformation along the marginal zones of the Ordos Basin. Then it changed to an extensional one during the Early Cretaceous, which rifted the western, northwestern and southeastern margins of the Ordos Basin. A NW-SE compression occurred during the Late Cretaceous and caused the termination of sedimentation and uplift of the Ordos Basin. This phased evolution of the late Mesozoic tectonic stress regimes and associated deformation pattern around the Ordos Basin best records the changes in regional geodynamic settings in East Asia, from the Early to Middle Jurassic post-orogenic extension following the Triassic collision between the North and South China Blocks, to the Late Jurassic multi-directional compressions produced by synchronous convergence of the three plates (the Siberian Plate to the north, Paleo-Pacific Plate to the east and Lhasa Block to the west) towards the East Asian continent. Early Cretaceous extension might be the response to collapse and lithospheric thinning of the North China Craton.  相似文献   

18.
燕山东段~下辽河地区中新生代断裂演化与构造期次   总被引:5,自引:3,他引:2  
通过对燕山东段~下辽河盆地中新生代断裂演化分析,认为中新生代该区共经历了中三叠世末,早侏罗世末,晚侏罗世末,白垩纪末和老第三纪末5期挤压作用。每期挤压作用都形成相应的挤压构造形迹,使得早期盆地萎缩或消亡,或对早期盆地进行改造使其反转。此外,该区还曾经历了中晚侏罗世,白垩纪和新生代3个明显的伸展作用阶段,形成中晚侏罗世断裂盆地,白垩纪断陷盆地和新生代裂谷盆地,构造演化过程中挤压作用和伸展作用交替出现  相似文献   

19.
任俊  张岳桥 《地质学报》2021,95(8):2411-2435
闽西武夷山建宁—泰宁地区发育2套白垩纪火山-沉积序列,构成2个火山-沉积旋回,每套序列由下部火山岩和上部沉积岩地层组成.锆石U-Pb年代学和地球化学分析显示,早期中酸性火山岩喷发时代为早白垩世141~135 Ma,具有陆缘火山弧的地球化学亲缘性,并富集Hf同位素(-20.2~1.9);而晚期火山岩活动集中在早、晚白垩世之交(105~97 Ma),呈现弧后伸展特征并相对亏损Hf同位素(-16.1~10.2).通过这两套白垩纪火山-沉积序列区域对比,发现早、晚两套火山活动之间的岩浆活动宁静期呈现自南西向北东逐渐消减的趋势,于120 Ma前后基本结束,这个时期在华南东部陆缘加积了一套河湖相沉积地层,并遭受不同程度的挤压变形.晚期火山-沉积序列受到伸展断陷盆地的控制,其中加积了一套含膏盐红层沉积.研究认为,华南东部陆缘白垩纪2套火山-沉积序列记录了该陆缘2个显著不同的构造演化阶段,从早期陆缘火山弧及其挤压变形到晚期的弧后伸展和断陷湖盆的发展历程.  相似文献   

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