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1.
介绍了欧洲陆海相互作用研究科学计划的目标,选择ELOISE研究地区的原则、ELOISE的四个研究领域--近海在全球变化中的作用、人类活动对近海的影响,社会-经济发展与近海、ELOISE的基础建设--及其各自的研究重点。  相似文献   

2.
毕机沟侵入体作为扬子克拉通北缘已知分布面积最大的镁铁质-超镁铁质侵入岩体,在扬子克拉通岩石圈演化研究中具有重要地位。除在七十年代开展过部分矿产资源调查工作外,长期缺乏深入研究。本文在Sm-Nd和Rb-Sr年代学工作基础上厘定了毕机沟侵入体的侵位和后期构造热事件时代;根据侵入体源区地幔组成特征和地幔端元组成,显示出毕机沟岩体源区具有与大陆岩石圈脱层作用有关的成因信息,结合晚元古代扬子克拉通北缘在构造体制、幔源岩浆性质和地壳增生方式等发生突变的地质背景以及现代大陆岩石圈脱层作用研究成果,提出了区内新元古代可能存在大陆岩石圈脱层作用的初步认识  相似文献   

3.
从地壳上地幔构造看大陆碰撞带岩石圈的克拉通化   总被引:1,自引:0,他引:1  
杨文采  于常青 《地质论评》2014,60(4):721-740
本篇讨论超级大陆汇聚后逐渐变为克拉通或扩大克拉通的作用过程,即指经及大陆碰撞地体汇聚后新形成的大陆块逐渐转变为刚性克拉通的作用过程。增生大陆岩石圈的克拉通化的作用后果,包括大陆地壳密度的增加,岩石圈地幔的增厚和大地热流值的下降,使大陆岩石圈逐渐刚性强化。大陆碰撞后形成的大陆块必须经过克拉通化的过程,才能逐渐成为刚性克拉通。作用过程主要包括:①上地壳沉积碎屑岩石结晶岩化和中地壳岩石角闪岩化;②下地壳岩石基性化;③大陆碰撞带下凹莫霍面的磨平;④岩石圈地幔底侵加厚形成陆根。从大陆碰撞带转变为克拉通的过程也是岩石圈地幔不断增厚而地壳缓慢变硬变冷的过程。这个过程包含以下作用:区域变质作用,交代作用和岩石圈幔源岩浆的底侵。这个过程时间尺度比碰撞造山作用大一个级次。长期的底侵作用使地壳岩石密度和强度不断加大,改变岩层的矿物成分和局部结构。当大陆岩石圈克拉通化到一定程度之后,由于下方软流圈的热能供应逐渐减缓,使岩石圈地温梯度缓慢下降,最终结果会形成大陆根。由于显生宙大陆碰撞带岩石圈强度弱,大陆碰撞时更容易造成岩石圈变形,因此大陆碰撞的板内效应主要发生在大陆内的显生宙碰撞带。显生宙大陆碰撞带如果再次受到大陆碰撞板内效应的作用,其克拉通化的过程必然会推迟。  相似文献   

4.
大陆岩石圈经历了40多亿年的地壳构造活动,北美洲是幕式大陆增生、变形和破裂的最完整记录之一.虽然在化学和流变学方面,大陆地壳和地幔与邻近的大洋岩石圈和地幔截然不同,但是,对于地壳和地幔是如何相互作用的许多问题仍然需要研究.  相似文献   

5.
杨文采 《地质论评》2020,66(2):263-275
板块构造学说根据构造的活动性划分单元,不考虑单元是否同质。浅地幔系统考虑了系统组成单元的异质性和动力来源,适合于系统的能量和物质运动总体规律的研究。把地球系统地划分为地球表面、浅地幔、地幔对流和地核四个子系统,地球系统就完整了。浅地幔子系统由四个不同质的的单元相互作用组成,它们是大洋岩石圈、大陆岩石圈、洋陆转换带岩石圈和软流圈,它们是不同质的。地震层析成像结果支持这种单元划分。系统作用反映了大洋岩石圈与大陆岩石圈的相互博弈,洋陆转换带是洋底扩张和大陆增生之间博弈的主要战场和阻尼器。软流圈是地幔对流的顶层,也是系统的能量库和主要动力来源。在深度200 km以下,软流圈的物质运动已经与板块运动模式分离。软流圈物质运动主要是大尺度的蠕动,也包括流体的析出和渗透,局部岩浆的集结和上涌。岩石圈板块浮在蠕动的软流圈之上,软流圈地幔的热流体可以通过岩石圈地幔黏度较小的区域向上渗透。同时,在重力作用下,岩石圈黏度大的物质也可以向下运动,拆沉到软流圈底部。从目前的成像结果可以看到,对于地球表面难以观察的软流圈和地下深部,对比三维的地震波速和电阻率扰动图像,可以获得关于物质运动的信息,认知已经发生在地壳和上地幔的物质运动特征。  相似文献   

6.
大陆岩石圈流变动力学研究进展   总被引:7,自引:0,他引:7  
综述了近年来宏观尺度上大陆岩石圈在流变结构、运动学和动力学研究方面的进展 ,简要介绍了INDEPTH ,KTB等科学工程的最新成果。固体地球科学的发展趋势表明 :查明岩石圈的物质组成和岩石圈的热结构是建立岩石圈流变结构模型的基础 ,高分辨率地球物理方法、大陆科学深钻和岩石学探针是研究岩石圈流变结构的重要途径 ;大地测量是研究岩石圈运动学的主要手段 ;定量计算岩石圈的流变学参数和模拟动力学演化过程是动力学研究的基本内容。  相似文献   

7.
涉及江苏省的几个重大地质问题   总被引:5,自引:1,他引:4  
胡受奚  孙景贵 《江苏地质》1999,23(4):193-196
从大陆岩石圈动力学角度 ,提出了江苏基础地质科学研究所面临的主要前沿问题 ,如 :造山带、超高压变质带、花岗岩侵入机制、大面积分布的中生代火山岩的形成等。并对此作了总体上的分析 ,提出了个人见解。认为从中生代开始 ,不能不考虑古太平洋板块的巨大作用和影响。在考虑大陆地壳动力学时 ,必须考虑大洋地壳运动学 ;考虑大陆地壳增生时 ,同时要考虑洋壳的增生及消亡 ;考虑陆壳和洋壳动力时离不开岩石圈下面软流层的动力学  相似文献   

8.
欧洲陆-海相互作用研究(ELOISE)科学计划及研究领域   总被引:2,自引:0,他引:2  
介绍了欧洲陆海相互作用研究(ELOISE)科学计划的目标、选择ELOISE研究地区的原则、ELOISE的四个研究领域──近海在全球变化中的作用、人类活动对近海的影响、社会-经济发展与近海、ELOISE的基础建设──及其各自的研究重点。  相似文献   

9.
湘南火山岩深源包体组合及岩石圈岩石学模型   总被引:19,自引:0,他引:19  
湘南早白垩世(132~135)Ma基性火山岩中含有橄榄岩类、辉长岩类、角闪麻粒岩相酸性岩包体,这三类包体的岩石学特征及地球物理参数(vp,ρ),分别与岩石圈地球物理模型中的上地幔,下地壳及中地壳相吻合。包体的岩相学、主要元素、REE及稀有元素地球化学特征及同位素年龄的研究结果表明,现在的岩石圈中的下地壳部分是元古代(1141Ma±67Ma)由底板垫托垂直增生形成的;中地壳与世界范围内的中地壳和中国华北及扬子克拉通相比偏酸性,而下地壳则偏基性,以富Al2O3为其特征。这一富Al2O3的下地壳包体除了在美国亚利桑那以外,在世界范围内还未曾见过报道。  相似文献   

10.
超高压榴辉岩流变学研究   总被引:2,自引:0,他引:2  
大陆岩石圈和大洋岩石圈在成分、厚度和力学强度方面有明显的差别。因此,现有板块构造不完全适合于大陆构造。大陆地壳和上地幔流变学的综合研究是认识大陆构造最佳途径之一。流变学研究是大陆造山带几何学、运动学和动力学的桥梁。大陆岩石圈对构造作用、重力不稳定性和热结构的响应在很大程度上取决于岩石流变强度。岩石圈流变性质是岩石圈分层、构造复杂性和塑性流动的主导控制因素。超高压榴辉岩在地幔对流、壳-幔物质循环和俯冲带动力学起着重要作用。榴辉岩的流变性质和变形机制对于阐明大陆造山带和大陆深俯冲的动力学过程具有十分重要的意义。本文主要内容包括以下4个方面:(1)岩石流变学研究在地球动力学中地位和重要性;(2)回顾池际尚先生对岩石流变学实验的贡献;(3)近几年来超高压榴辉岩流变学研究成果;(4)国外岩石流变学实验研究发展态势和启示。  相似文献   

11.
东海陆架盆地第三系沉积构造动力背景分析   总被引:7,自引:2,他引:5  
武法东  周平 《现代地质》1999,13(2):157-161
东海陆架盆地属大陆边缘裂陷盆地,具有构造活动多期、反转构造明显和盆地动力背景复杂的特点。太平洋板块向欧亚板块的俯冲、深部地幔柱的活动是陆架盆地形成的主要动力;印度板块向欧亚大陆楔入造成的远程影响是导致构造应力场反转、触发和促进盆地裂陷作用的重要动力来源;盆地晚期自东向西的挤压力是第三位的构造力。根据可容纳空间的概念,从控制层序构型的影响因素,即海平面变化、构造沉降、沉积补给等方面讨论了东海陆架盆地第三系沉积构造动力背景。  相似文献   

12.
中朝陆台北侧褶皱带构造发展的几个问题   总被引:23,自引:2,他引:21  
中朝与西伯利亚陆台之间的乌拉尔—蒙古—鄂霍茨克褶皱系是古亚洲洋演化的结果。其发展分为两个大的阶段:早期阶段从中元古代起在北部形成蒙古—鄂霍茨克洋,到寒武纪初封闭,形成兴凯褶皱带;晚期阶段从震旦—寒武纪初起在南部形成乌拉尔—蒙古洋,到泥盆纪大洋封闭,形成早及中古生代褶皱带。这就是中朝与西伯利亚陆台边缘褶皱带发育不对称的原因。 乌拉尔—蒙古洋最后封闭的缝合带在内蒙古中部形成中古生代褶皱带。它包括贺根山蛇绿岩带,二道井—查干诺尔混杂体带和它们之间的锡林浩特花岗岩—变质岩带。后者是造山碰撞的中心,上泥盆统法门阶的磨拉石堆积主要沿此带分布。 石炭—二叠纪时,本区广泛兴起裂谷活动。这些裂谷发育在不同的基底之上,多数发生于不同时期构造带的界线上。它们在新增生的年青陆壳上形成,其特征不同于红海或东非型裂谷;其岩浆活动和变形、变质作用使年青陆壳增厚并更加稳固。  相似文献   

13.
北山北带地质构造特征   总被引:1,自引:0,他引:1  
甘肃北山地区主体属塔里木板块的北缘,其内部可划分出北、中、南三个构造带.北带主体为加里东期岛弧带.北山地区于古生代经历了弧一盆体制及裂陷槽的活动大陆边缘的发展,总体上经历了前寒武纪古陆壳形成阶段、加里东期岛弧及陆缘裂陷一闭合阶段、海西期岛弧期后构造一岩浆活动及陆壳再次裂陷一闭合阶段和中、新生代差异断块升降阶段.  相似文献   

14.
中国大别-苏鲁造山带为大陆板块俯冲形成的碰撞造山带,该带北缘和内部产有原岩时代为新元古代-晚古生代的浅变质岩。这些浅变质岩对应于扬子板块北缘前寒武变质基底和扬子板块北缘古生代大陆架沉积物,形成过程于印支期扬子板块向北俯冲过程中的刮削作用密切相关,与大洋板块俯冲过程中刮削形成的加积楔具有类似的动力学过程。对大别-苏鲁造山带浅变质岩的深入研究,不仅有助于揭示大陆板块俯冲过程中高压-超高压岩石形成与折返过程,而且确定了扬子板块与华北板块之间的缝合线位置位于大别造山带北淮阳带的北部和苏鲁造山带的五莲-蓬莱群的北侧。  相似文献   

15.
《International Geology Review》2012,54(11):1058-1066
The plate-tectonic evolution of the Tarim basin and nearby western Tianshan region during Paleozoic time is reconstructed in an effort to further constrain the tectonic evolution of Central Asia, providing insights into the formation and distribution of oil and gas resources. The Tarim plate developed from continental rifting that progressed during early Paleozoic time into a passive continental margin. The Yili terrane (central Tianshan) broke away from the present eastern part of Tarim and became a microcontinent located somewhere between the Junggar ocean and the southern Tianshan ocean. The southern Tianshan ocean, between the Tarim craton and the Yili terrane, was subducting beneath the Yili terrane from Silurian to Devonian time. During the Late Devonian-Early Carboniferous, the Tarim plate collided with the Yili terrane by sinistral accretional docking that resulted in a late Paleozoic deformational episode. Intracontinental shortening (A-type subduction) continued through the Permian with the creation of a magmatic belt.  相似文献   

16.
During the Late Mesozoic and Cenozoic, extension was widespread in Eastern China and adjacent areas. The first rifting stage spanned in the Late Jurassic–Early Cretaceous times and covered an area of more than 2 million km2 of NE Asia from the Lake Baikal to the Sikhot-Alin in EW direction and from the Mongol–Okhotsk fold belt to North China in NS direction. This rifting was characterized by intracontinental rifts, volcanic eruptions and transform extension along large-scale strike–slip faults. Based on the magmatic activity, filling sequence of basins, tectonic framework and subsidence analysis of basins, the evolution of this area can be divided into three main developmental phases. The first phase, calc-alkaline volcanics erupted intensely along NNE-trending faults, forming Daxing'anling volcanic belt, NE China. The second phase, Basin and Range type fault basin system bearing coal and oil developed in NE Asia. During the third phase, which was marked by the change from synrifting to thermal subsidence, very thick postrift deposits developed in the Songliao basin (the largest oil basin in NE China).Following uplift and denudation, caused by compressional tectonism in the near end of Cretaceous, a Paleogene rifting stage produced widespread continental rift systems and continental margin basins in Eastern China. These rifted basins were usually filled with several kilometers of alluvial and lacustrine deposits and contain a large amount of fossil fuel resources. Integrated research in most of these rifting basins has shown that the basins are characterized by rapid subsidence, relative high paleo-geothermal history and thinned crust. It is now accepted that the formation of most of these basins was related to a lithospheric extensional regime or dextral transtensional regime. During Neogene time, early Tertiary basins in Eastern China entered a postrifting phase, forming regional downwarping. Basin fills formed in a thermal subsidence period onlapped the fault basin margins and were deposited in a broad downwarped lacustrine depression. At the same time, within plate rifting of the Lake Baikal and Shanxi graben climaxed and spreading of the Japan Sea and South China Sea occurred. Quaternary rifting was marked by basalt eruption and accelerated subsidence in the area of Tertiary rifting. The Okinawa Trough is an active rift involving back-arc extension.Continental rifting and marginal sea opening were clearly developed in various kind of tectonic settings. Three rifting styles, intracontinental rifting within fold belt, intracontinental rifting within craton and continental marginal rifting and spreading, are distinguished on the basis of nature of the basin basement, tectonic location of rifting and relations to large strike–slip faults.Changes of convergence rates of India–Eurasia and Pacific–Eurasia may have caused NW–SE-trending extensional stress field dominating the rifting. Asthenospheric upwelling may have well assisted the rifting process. In this paper, a combination model of interactions between plates and deep process of lithosphere has been proposed to explain the rifting process in East China and adjacent areas.The research on the Late Mesozoic and Cenozoic extensional tectonics of East China and adjacent areas is important because of its utility as an indicator of the dynamic setting and deformational mechanisms involved in stretching Lithosphere. The research also benefits the exploration and development of mineral and energy resources in this area.  相似文献   

17.
新疆库米什变质地体研究   总被引:1,自引:0,他引:1  
新疆库米什地区的变质杂岩,过去曾被认为是泥盆系地层和海西期花岗岩体。本文研究表明,该杂岩体的诸方面特征与其周围古生代岩块存在明显差异,而与塔里木克拉通北缘库鲁克塔格地区的托格拉克布拉克群可以对比。实际上,库米什变质杂岩并非泥盆系地层和海西期花岗岩体。而是天山造山带中的前寒武纪变质地体,是因弧后扩张从塔里木克拉通北缘裂解出来的大陆碎块。  相似文献   

18.
祁连造山带研究概况——历史,现状及展望   总被引:62,自引:2,他引:62  
回顾了祁连造山带的研究历史,对研究现状作了简要总结。认为在祁连造山带已初步建立起岩石圈结构及动力学模型,划分了板块构造单元,祁连山自震理纪以来先后出现大陆裂谷和板块构造两种构造体制及三种不同类型的造山作用(俯冲造山,碰撞造山和陆内造山)而构造体制变更,盆地类型转换以及造山作用类型变化的地球动力学机制是地幔柱构造。提出了造山带研究现存在的关键问题,对未来的研究进行了展望,作者认为祁连山造山理论的研究  相似文献   

19.
胶东莱西地区高压麻粒岩的Sm-Nd同位素年代学   总被引:19,自引:1,他引:19       下载免费PDF全文
在胶东地区莱西-莱阳-栖霞一带的晚太古代花岗片麻岩中,出露一条长约200多公里,NE向展布的高压基性麻粒岩-超镁铁质岩带。由于这条岩带东邻苏鲁高压-超高压变质带,西接华北克拉通基底的古老变质岩,因此其区域构造归属以及大地构造意义是一个十分重要的问题。本文分析的高压基性麻粒岩样品具有降压退变质结构,退变质矿物组合为麻粒岩相。矿物-全岩Sm-Nd等时线年龄为1752Ma,全岩T(DM)模式年龄为2788Ma,与华北克拉通北缘的高压基性麻粒岩的同位素年龄完全相似。根据高压麻粒岩-超镁铁质岩的围岩片麻岩特征和同位素年龄,可以确定这条出露于华北陆块东缘的岩带是早前寒武纪华北克拉通下地壳岩石,其抬升与华北陆块与扬子陆块的拼合有关。  相似文献   

20.
Baltica was one of continents formed as a result of Rodinia break-up 850-550 Ma. It was separated from Amazonia(?) by the Tornquist Ocean, the opening of which was preceded by Neoproterozoic extension in a network of continental rifts. Some of these rifts were subsequently aborted whereas the Tornquist Rift gave rise to splitting of Rodinia and formation of the Tornquist Ocean. The results of 1-D subsidence analysis at the fossil passive margin of Baltica provided insight in the timing and kinematics of continental rifting that led to break-up of Rodinia. Rifting was associated with Neoproterozoic syn-rift subsidence accompanied by deposition of continental coarse-grained sediments and emplacement of continental basalts.Transition from a syn-rift to post-rift phase in the latest Ediacaran to earliest early Cambrian was concomitant with deposition of continental conglomerates and arkoses, laterally passing into mudstones. An extensional scenario of the break-up of Rodinia along the Tornquist Rift is based on the character of tectonic subsidence curves, evolution of syn-rift and post-rift depocenters in time, as well as geochemistry and geochronology of the syn-rift volcanics. It is additionally reinforced by the high-quality deep seismic reflection data from SE Poland, located above the SW edge of the East European Craton. The seismic data allowed for identification of a deeply buried(11-18 km), well-preserved extensional half-graben, developed in the Palaeoproterozoic crystalline basement and filled with a Neoproterozoic syn-rift volcano-sedimentary succession. The results of depth-to-basement study based on integration of seismic and gravity data show the distribution of local NE-SW elongated Neoproterozoic depocenters within the SW slope of the East European Craton. Furthermore,they document the rapid south-eastwards thickness increase of the Neoproterozoic succession towards the NW-SE oriented craton margin. This provides evidence for extensive crustal thinning occurring prior to the break-up of Rodinia and formation of the Tornquist Ocean.  相似文献   

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