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1.
三江地区北段江达弧间盆地的沉积演化   总被引:4,自引:0,他引:4  
江达弧间盆地位于西藏东部的三江地区北段,现今被厚约 10 0 0 0m的三叠系所覆盖,三叠纪该区以海相沉积为主,并以巨厚浊积岩与频繁火山活动形成的钙碱性系列弧火山岩为特征。本文进行的盆地分析基于两个方面:一是运用层序地层学,通过精细沉积相与沉积相模式研究,在露头剖面上共识别出 10个三级层序界面和 10个三级层序,建立了三叠纪层序地层年代格架;二是沉降史分析,重建的构造沉降曲线上反映出两次抬升 (分别在 2 5 0Ma和2 35Ma)与二次明显的沉降,估算的沉积速率介于 87~ 5 37m/Ma。研究表明江达盆地演化可划分为 6个沉积充填序列,经过了早先的拉张加深和晚期挤压的充填变浅过程.  相似文献   

2.
三江地区北部三叠纪深水沉积及其意义   总被引:3,自引:0,他引:3  
位于西藏东部的三江地区北部累计厚度达10000余米的三叠系以海相沉积为主,由碎屑岩、碳酸盐岩和火山岩的一种或两种占优势的组分构成。其以陆源、内源及火山源碎屑流与浊流形成的深水沉积为特色,并分别堆积在不同背景的江达弧内盆地和生达弧后区的沉积盆地中,研究表明这些深水沉积应是活跃的构造作用的响应,对认识三江地区的构造活动具有指示意义。  相似文献   

3.
三江中北段弧—盆格架与地质构造演化   总被引:2,自引:0,他引:2  
弧—盆体系中岛弧与弧后盆地相间并存是一大特色。本文以昌都地区三叠纪弧—盆格局为例 ,阐明了岛弧、弧后盆地与夹于其间的微陆块等地质特征 ;划分出 2个构造演化阶段 ,一是早中三叠世江达—阿中岛弧与弧后盆地的发育 ,二是晚三叠世滞后型岛弧与生达残留弧后盆地的形成 ,并揭示了其演化的动力学。  相似文献   

4.
安徽北淮阳构造带基底变质岩的构造属性   总被引:3,自引:2,他引:1  
安徽北淮阳构造带的基底由一套变火山沉积岩建造 (即原称庐镇关群 )所组成。岩类学、岩石地球化学、年代学的研究表明 ,这套火山岩属碱性玄武岩系列、拉斑玄武岩系列和钙碱性玄武岩系列 ,分别形成于中元古宙陆内裂解 (扩张 )带和晚元古宙岛弧两种构造环境 ,其中以岛弧环境火山岩为主要部分 ,由此可以证明北淮阳构造带是在中元古宙陆内裂解带基础上发展起来的古弧系 ,具有大陆型基底性质  相似文献   

5.
新发现海相侏罗纪地层;在理塘蛇绿岩群硅质岩中发现放射虫以及厘定甘孜 理塘裂谷时代;厘定了岩浆岩石序列,总结了岩浆岩组合及时空演化序列;初步研究的花岗岩构造岩浆环境;并厘定了金沙江结合带、甘孜理塘结合带;确定了构造格架并进行了构造组合划分等。  相似文献   

6.
准噶尔盆地的类型和构造演化   总被引:35,自引:1,他引:34  
张晓东 《地学前缘》2000,7(4):431-440
准噶尔盆地的早二叠世属于裂谷还是前陆盆地 ,存在意见分歧 ;晚二叠世—老第三纪盆地的性质也不确定。文中通过对盆地构造几何学、沉降史、热史及火山岩的综合分析研究 ,对盆地类型和构造演化获得了一些新的认识 :( 1)准噶尔盆地在早二叠世为裂谷 ,晚二叠世为热冷却伸展坳陷 ,三叠纪—老第三纪为克拉通内盆地 ,新第三纪至今 ,由于印度板块与亚洲大陆碰撞才形成陆内前陆盆地。 ( 2 )对石炭纪—早二叠世的岩浆活动结合区域构造资料的研究表明 ,准噶尔地区古生代的板块运动和造山作用具软碰撞特点 ,早二叠世的裂谷盆地是在软碰撞背景下造山带伸展塌陷的产物。 ( 3)地幔热对流作用可能是软碰撞造山后伸展塌陷的主要深部动力学机制。  相似文献   

7.
This paper presents age and geochemical data of a recently identified Late Paleozoic volcanic sequence in central Jilin Province, with aims to discuss the petrogenesis and to constrain the tectonic evolution of the Central Asian Orogenic Belt in this area. Firstly, the volcanic rocks have zircon U-Pb ages of 290–270 Ma. Secondly, they are characterized by(a) ranging in composition from the low-K tholeiite series to high-K calc-alkaline series;(b) enrichment in light rare earth elements and depletion of heavy rare earth elements, with negative Eu anomalies; and(c) negative Nb, Ta, and Ti anomalies. Finally, the volcanic rocks yield εHf(t) values of +7.1 to +17. These data suggest that the central Jilin volcanic rocks were possibly derived from predominant partial melting of a depleted lithospheric mantle that might have been modified by subducted slab–derived fluids. Combined with previous studies, the Late Paleozoic–Early Mesozoic magmatism in Central Jilin can be divided into two stages:(a) a volcanic arc stage(290–270 Ma) represented by low-K to high–K, tholeiite to calc–alkaline plutons and(b) a syn–collisional stage(260–240 Ma) represented by high-K calc–alkaline I-type granites. Furthermore, the timing and the tectonic setting of the above magmatic rocks show that the arc was probably produced by the northward subduction of the Paleo-Asian Ocean and that the final closure of the Paleo-Asian Ocean occurred prior to the Early Triassic.  相似文献   

8.
喀喇昆仑山北坡明铁盖地区早二叠世的基性火山岩岩石化学和地球化学特征表明,它是一种既具有在硅铝质基底上扩张的洋脊玄武岩性质,又具有钙碱性岛弧拉斑玄武岩特点的弧后盆地火山岩。这一弧后盆地的形成与沿西金乌兰湖—空喀山口至乔戈里峰一线的古特提斯洋盆的扩张及向北俯冲、消减相联系,构成了塔里木板块南部晚古生代活动大陆边缘。  相似文献   

9.
南盘江盆地南缘发育大量早—中三叠世岩浆岩和巨厚三叠系,为研究沿中越边界一带是否发生洋盆俯冲消亡过程提供了重要的岩浆-沉积证据。选取中越边界地区出露面积最大的富宁—那坡地区早—中三叠世火山岩及相关沉积作为研究对象,通过系统的地质填图和剖面测量,查明这套火山-沉积组合具有下部玄武安山岩,上覆碳酸盐岩质砾岩、含砾粗砂岩和钙质砂岩的沉积序列,与岛弧环境火山-沉积序列相似。玄武安山岩SHRIMP锆石U-Pb定年结果为247±1 Ma和246±3 Ma,与野外产于中三叠统碎屑岩之下的地质事实相符。结合前人研究成果,确定这套火山岩形成于早—中三叠世(247~242 M a)。全岩地球化学分析结果显示,玄武安山岩富集大离子亲石元素(LILEs,R b、T h和U)和轻稀土元素(LR EE),其具有明显的Nb、Ta和Ti负异常。火山-沉积序列和火山岩地球化学特征表明,富宁—那坡地区早—中三叠世火山-沉积组合形成于与俯冲相关的弧环境。中越边界地区早—中三叠世弧火山岩与蛇绿混杂岩带的时空展布特征表明,该地区晚古生代洋盆发生了向北的俯冲消减。  相似文献   

10.
江达弧内盆地位于西藏东部,现今被厚约10000m的三叠系所覆盖,三叠纪时该区以海相沉积为主,并以巨厚浊积岩与频繁火山活动形成的钙碱性系性系列弧火山岩为特征。在露头剖面上,识别出10个三级层序。这些层序共经历了37Ma的时间演化,估算每个层序平均所占时限为3.7Ma。研究认为层序形成的主控因素应是构造-火山、沉积物补给与海平面升降三者之间相互作用过程的响应,其中构造与弧火山作用起决定作用。  相似文献   

11.
伊宁地块不是一个之前一贯认为的"均匀地块"或"均一地块",而是以乌孙山-塔勒得近东西向区域性大断裂为界的南、北两大次级构造带("弧-盆"体系)叠加拼贴增生而成,火山岩浆作用为这一新的构造单元划分与建立提供了佐证。南构造带由喀拉峻岛弧带和其北的阿腾套弧后盆地构成,主要发育于晚泥盆世-早石炭世早期,火山岩同位素年龄峰值为355~350Ma,17个年龄平均值为351Ma;北构造带由北而南可再细分出清水河-苏布台弧后盆地→阿吾拉勒叠加岛弧带→特克斯-新源弧前盆地,主要发育于早石炭世中-晚期,同位素年龄峰值集中于345~329Ma,18个火山岩年龄平均值为340Ma。这两个"弧-盆"体系以大哈拉军山组钙碱性火山岩为主体,共生早石炭世海相阿克沙克组弧前及弧后沉积岩组合。大哈拉军山组火山岩主体以岛弧火山岩为主,见有富Nb玄武岩、高镁安山岩等,共生埃达克岩和高分异I型花岗岩等小岩体;在弧后还见有碱性火山岩、碱性球泡流纹岩,共生双峰式火山岩。不仅大哈拉军山组火山岩在各构造相中显著有别,而且共生的阿克沙克组在各构造相中差异极为显著。两大次级构造带具有独立的基底建造史,差异显著的盆地沉积史,独特的火山岩浆史和构造演化史。早晚石炭世之间的鄯善运动使南、北两个次级构造带叠加拼贴,构成统一的伊宁地块,晚石炭世进入统一的陆内构造发展演化阶段,发育以伊什基里克组碱性双峰式火山岩为代表的裂谷火山岩浆建造。  相似文献   

12.
再论细碧-角斑岩系及成因   总被引:4,自引:1,他引:3  
杨荣兴 《矿产与地质》2000,14(2):109-113
细碧—角斑岩系一般分为细碧岩、角斑岩和石英角斑岩三类。其形成的大地构造背景多样 :包括洋中脊、岛弧、弧后盆地、陆裂作用导致的小洋盆等 ,原始岩浆来自于上地幔及下地壳的深熔作用。它是海底火山岩经埋藏变质、循环热海水与岩石的交换反应在内的广义洋底变质作用长期改造的最终产物 ,之后还可遭受造山作用的变形变质作用的改造  相似文献   

13.
对于中国滇西和东南亚地区古特提斯缝合带对比一直存在诸多争议。在泰国清莱地区三叠纪南邦群中采集4件碎屑岩样品,进行岩石学、地球化学和锆石U-Pb测年研究。岩石学和地球化学研究表明,该套碎屑岩的源岩主要为基性—中基性岩石,卷入少量长英质岩石,物源区大地构造背景为岛弧带。所测得最古老锆石U-Pb同位素年龄为3269Ma±29Ma,绝大多数年龄集中形成3个峰值:280~250Ma、500~440Ma和1200~1100Ma,指示清莱地区三叠纪南邦群碎屑物源区主要为清莱岛弧火山岩带西部条带和前泥盆纪变质岩系。碎屑锆石年龄图谱的对比结果表明,原特提斯构造阶段之前,南邦地体与西澳大利亚发育类似构造—热事件;在原特提斯构造阶段之后,其构造—热事件特征与扬子构造域相类似,指示古特提斯洋的主洋盆应该在南邦地体以西,支持清迈构造带代表古特提斯主洋盆的观点。  相似文献   

14.
金沙江造山带的大地构造环境及演化模式   总被引:9,自引:0,他引:9  
金沙江造山带一直被当作古板块缝合带,但其物质组成和结构并不反映当时典型的洋盆环境,主要证据有:(1)沉积地层表明,金沙江海盆在规模和水体深度两方面都是有限的;(2)所产的火山岩与标准洋中脊不同,其岩石化学特点与弧后盆地相吻合;(3)澜沧江洋盆与金沙江海盆隔着昌都长条形地块相向俯冲,而且金沙江海盆的俯冲始于澜沧江洋的闭合。据此提出金沙江造山带的弧后盆地演化模式,认为自西而东的澜沧江带、昌都地块、金沙江带、扬子板块分别代表洋盆和海沟、岛弧、弧后盆地、大陆板块等构造单元,构成一个完整的大陆边缘。  相似文献   

15.
In the Izu–Bonin Arc, hydrothermal activities have been reported from volcanoes along present‐day volcanic front, a rear arc volcano and a back‐arc rift basin as well as a remnant arc structure now isolated from the Quaternary arc. It is widely known that characteristics of hydrothermal activity (mineralogy, chemistry of fluid etc.) vary depending upon its tectonic setting. The Izu–Bonin Arc has experienced repeated back‐arc or intra‐arc rifting and spreading and resumption of arc volcanism. These characteristics make this arc system a suitable place to study the tectonic control on hydrothermal activity. The purpose of the present paper is, therefore, to summarize volcanotectonic setting and history of the Izu–Bonin Arc in relation to the hydrothermal activity. The volcanotectonic history of the Izu–Bonin Arc can be divided into five stages: (i) first arc volcanism (boninite, high‐Mg andesite), 48–46 Ma; (ii) second arc volcanism (tholeiitic, calc‐alkaline), 44–29 Ma; (iii) first spreading of back‐arc basin (Shikoku Basin), 25–15 Ma; (iv) third arc volcanism (tholeiitic, calc‐alkaline), 13–3 Ma; and (v) rifting in the back‐arc and tholeiitic volcanism along the volcanic front, 3–0 Ma. Magmas erupted in each stage of arc evolution show different chemical characteristics from each other, mainly due to the change in composition of slab‐derived component and possibly mantle depletion caused by melt extraction during back‐arc spreading and prolonged arc volcanism. In the volcanotectonic context summarized here, hydrothermal activity recognized in the Izu–Bonin Arc can be classified into four groups: (i) present‐day hydrothermal activity at the volcanic front; (ii) active hydrothermal activity in the back arc; (iii) fossil hydrothermal activity in the back‐arc volcanoes; and (iv) fossil hydrothermal activity in the remnant arc. Currently hydrothermal activities occur in three different settings: submarine caldera and stratocones along the volcanic front; a back‐arc rift basin; and a rear arc caldera. In contrast, hydrothermal activities found in the back‐arc seamount chains were associated with rear arc volcanism in Neogene after cessation of back‐arc spreading of the Shikoku Basin. Finally, sulfide mineralization associated with boninitic volcanism in the Eocene presumably took place during forearc spreading in the initial stage of the arc. This type of activity appears to be limited during this stage of arc evolution.  相似文献   

16.
在右江地区海相层序地层学研究的基础上,将层序界面区分为升隆侵蚀层序不整合界面、海侵上超层序不整合界面、暴露层序不整合界面和造山侵蚀层序不整合界面四个成因类型,并且相同成因类型的层序界面,在盆内不同地域的具体表现形式不尽相同,它们与盆地的成生、发展有紧密的联系,这些界面类型依次反映了盆地的新生、演化和盆山转换过程。  相似文献   

17.
MULTIPLE ISLAND ARC-BASIN SYSTEM AND ITS EVOLUTION IN GANGDISE TECTONIC BELT,TIBET  相似文献   

18.
The Batang Group in the Zhaokalong area not only hosts an important Fe-Cu polymetallic deposit but also reveal important insights for the Late Triassic tectonism in the northern Sanjiang region. In order to delineate the tectonic setting and evolutionary process of the paleo arc-basin system, geochemical studies on the Batang Group strata have been carried out. The results suggest that andesite in the Zhaokalong area mainly belongs to the tholeiite series and is characterized by obvious fractionation of LREE and HREE, enrichment in LILE and depletion in HFSE, and a distinctly elevated δ~(34)SCDT average of 10.5‰. The sandstone is classified as lithic sandstone, which is also characterized by obvious fractionation of LREE and HREE, as well as weak negative Ce and Eu anomalies. The limestone displays positive Eu anomalies, with δ~(13)CPDB ranging from-1.3‰ to 4.4‰ and δ~(18) OSMOW ranging from 14.6‰ to 22.5‰. These results indicate that the andesite has a dual signature of both arc andesite and rift volcanic rocks, whereas the sandstone may be formed in an active continental margin, and the limestone could be deposited in a weak oxidizing shallow sea. The sandstone in the Zhaokalong area represents sedimentation in a platform slope facies, corresponding to the main stage of the Jinshajing oceanic basin subduction during the middle period of Late Triassic. The continental arc volcanic activity resulted from subsequent strengthened subduction, forming the andesite in the North Qiangtang backarc basin. Afterwards, the limestone was formed after the cessation of magmatic activity. The information gleaned from the Batang Group strata helped constrain the evolution of the paleo-Jomda island arc and Jinshajiang oceanic subduction in the Late Triassic.  相似文献   

19.
Palaeoproterozoic intermediate to potassic felsic volcanism in volcano‐sedimentary sequences could either have occurred in continental rift or at convergent magmatic arc tectonic settings. The Vinjamuru domain of the Krishna Province in Andhra Pradesh, SE India, contains such felsic and intermediate metavolcanic rocks, whose geochemistry constrains their probable tectonic setting and which were dated by the zircon Pb evaporation method in order to constrain their time of formation. These rocks consist of interlayered quartz–garnet–biotite schist, quartz–hematite–baryte–sericite schist as well as cherty quartzite, and represent a calc‐alkaline volcanic sequence of andesitic to rhyolitic rocks that underwent amphibolite‐facies metamorphism at ~1.61 Ga. Zircons from four felsic metavolcanic rock samples yielded youngest mean 207Pb/206Pb ages between 1771 and 1791 Ma, whereas the youngest zircon age for a meta‐andesite is 1868 Ma. A ~2.43 Ga zircon xenocryst reflects incorporation of Neoarchaean basement gneisses. Their calc‐alkaline trends, higher LILE, enriched chondrite‐normalized LREE pattern and negative Nb and Ti anomalies on primitive mantle‐normalized diagrams, suggest formation in a continental magmatic arc tectonic setting. Whereas the intermediate rocks may have been derived from mantle‐source parental arc magmas by fractionation and crustal contamination, the rhyolitic rocks had crustal parental magmas. The Vinjamuru Palaeoproterozoic volcanic eruption implies an event of convergent tectonism at the southeastern margin of the Eastern Dharwar Craton at ~1.78 Ga forming one of the major crustal domains of the Krishna Province. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

20.
BASIN-RANGE TRANSITION AND GENETIC TYPES OF SEQUENCE BOUNDARY OF THE QIANGTANG BASIN IN NORTHERN TIBET  相似文献   

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