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1.
位于东喜马拉雅构造结的南迦巴瓦岩群是研究喜马拉雅构造带基底演化的重要对象之一.在构造样式上,南迦巴瓦岩群为一个背形构造,该背形构造的核部由多雄拉混合岩和花岗片麻岩组成.本文开展了南迦巴瓦岩群多雄拉混合岩的锆石LA-ICP-MS U-Pb定年研究.结果表明.多雄拉混合岩深色体的原岩形成年龄为1759±10Ma,浅色体的形成年龄为1594±13Ma,代表发生混合岩化的年龄.另外,一个多雄拉花岗片麻岩的原岩形成年龄为1583±6Ma,该年龄在误差范围内与区域发生混合岩化作用的时代相近,表明在混合岩化过程中存在着一定程度的地壳深熔作用.区域对比表明,低喜马拉雅和高喜马拉雅构造单元内存在着明显不同的构造一岩浆事件,其中低喜马拉雅构造单元广泛存在1.6~1.8Ga的构造-岩浆事件.与之相对比,多雄拉混合岩和花岗片麻岩的锆石U-Pb年代学说明南迦巴瓦岩群核部应属于低喜马拉雅结晶岩系,而明显不同于高喜马拉雅结晶岩系,这与西喜马拉雅构造结相似,表明东喜马拉雅构造结与西喜马拉雅构造结有着相似的地质演化.  相似文献   

2.
喜马拉雅造山带东、西两端分别有一个构造急剧转向的构造结.这里是整个喜马拉雅造山带中构造应力作用最强、隆升和剥露速率最快、新生代变质和深熔作用最强的地区.位于东构造结的南迦巴瓦地区可分为3个构造单元:冈底斯(拉萨)陆块、雅鲁藏布江缝合带和印度陆块.  相似文献   

3.
位于喜马拉雅造山带东构造结,印度-雅鲁藏布江缝合带以南的南迦巴瓦岩群经历了高压变质作用和强烈的部分熔融与混合岩化作用.本文选择广泛分布的长英质片麻岩进行了岩石学和年代学研究.除个别岩石保存了由石榴石 蓝晶石 三元长石 石英组成的高压泥质麻粒岩相变质矿物组合以外,大多数片麻岩具有角闪岩相变质矿物组合,它们的原岩包括闪长岩和花岗闪长岩,并具有岩浆弧花岗岩的化学成分特征.片麻岩中的锆石普遍具有核-边结构.SARIMP和LA-ICP-MS原位分析表明,锆石的边缘给出了古生代至新生代的多期变质和岩浆事件年龄(500~10Ma),而锆石的核部给出了前寒武纪年龄,但主要集中在~2500Ma,~1800Ma,~1600Ma和~1000Ma.所分析的锆石区域具有明显的岩浆结晶环带和高的Th/U比值,表明它们所指示的是多期岩浆活动事件年代.这些年代峰值与整个高喜马拉雅结晶杂岩及印度陆块所获得的前寒武纪构造热事件年龄及分布特征基本上可以对比.因此,我们认为南迦巴瓦岩群及高喜马拉雅结晶杂岩的原岩是由新太古代至新元古代形成的多期岩浆岩组成,并作为印度陆块的一部分经历了Columbia、Rodinia和Gondwana超大陆的形成与裂解过程,以及喜马拉雅期的区域变质与岩浆作用再造.  相似文献   

4.
位于东喜马拉雅构造结的南迦巴瓦岩群是研究喜马拉雅构造带基底演化的重要对象之一.在构造样式上,南迦巴瓦岩群为一个背形构造,其核部由多雄拉混合岩和花岗片麻岩组成.南迦巴瓦岩群多雄拉混合岩的锆石LA-ICP-MS U-Pb定年研究表明,多雄拉混合岩深色体的原岩形成年龄为1759±10 Ma,浅色体的形成年龄为1594±13 Ma,代表发生混合岩化的年龄.  相似文献   

5.
喜马拉雅东构造结——南迦巴瓦构造及组构运动学   总被引:30,自引:13,他引:17  
喜马拉雅东端-南迦巴瓦构造结的构造格架总体呈现由叠置构造岩片构成的复式背形构造.自NW到SE由比鲁构造岩片、直白构造岩片、南派乡构造岩片和多雄拉变质穹隆组成,它们之间的界限分别是直白-丹娘-南伊沟韧性拆离断裂、直白-丹娘韧性逆冲断裂和多雄拉韧性逆冲断裂.由高压麻粒岩相组成的直白构造岩片被直白-丹娘-南伊沟韧性拆离断裂和直白-丹娘韧性逆冲断裂所夹持,为挤出构造岩片.根据印度斯-雅鲁藏布江大拐弯缝合带西侧和北侧的变形特征及石英组构运动学的EBSD测量结果,表明大拐弯缝合带存在各段的差异,并具有逐渐演化的特征.大拐弯缝合带的北端为拉月-迫隆乡韧性逆冲剪切带;西段为鲁朗-拉月左行走滑剪切带,西南段为嘎马-米林左行伸展转换剪切带,指示南迦巴瓦变质体相对拉萨地体的运动转为水平走滑运动.根据大拐弯缝合带东侧右行走滑和西侧左行走滑特征,推测在印度-亚洲碰撞之后,南迦巴瓦变质体受制于这两条走滑断裂,而相对喜马拉雅地体向北推移,并深深插入拉萨地体之下,形成东构造结.由于南迦巴瓦变质体的强烈上隆,其上部原存的特提斯喜马拉雅的古生代-中生代盖层沉积被俯冲和被剥蚀贻尽.南迦巴瓦变质体中直白组高压麻粒岩相中石榴石辉石岩形成的温压条件(T=800~900℃,P=2.6~2.8GPa)表明,岩石经历了相当于80km~100km深度的峰期榴辉岩变质作用的条件,印度板片深俯冲于拉萨地体之下又折返挤出到由派乡组和多雄拉组角闪岩相(混合岩化)组成的南迦巴瓦变质基底之中.  相似文献   

6.
朱伟元 《甘肃地质》1996,5(2):21-31
扼于雅鲁藏布江大拐弯内侧的喜马拉雅东端是一个受断层控制的独立构造岩层体,由结晶基底变质杂岩构成。该地体于喜马拉雅造山时期呈北东斜向板内逸脱,进而向冈底斯岩浆弧横推楔进,构成印度斯河—雅鲁藏布江缝合线转折部核心。该区基底岩系由富铝硅酸盐及钙硅酸盐结晶杂岩组成。岩层已受复杂的多期褶皱叠加和断裂变形,具强烈混合岩化态征。运用“构造—地层学“方法将区内变质岩系划分为多雄拉片麻岩组和阿尼桥片岩组,分别代表下部和上部二套不同层次的结晶岩序列,并将其归并为南迦巴瓦岩群。与此同时,对基底岩系的建造特征进行了分析讨论。同位素年龄测定表明,南迦巴瓦岩群的原岩形成于中元古代  相似文献   

7.
藏南隆子—措美一带夹持于藏南拆离系(STDS)和雅鲁藏布江缝合带(IYS)之间。印度与欧亚大陆的碰撞作用形成了该地区特殊的构造样式,由近东西向展布的藏南拆离系主拆离带和洛扎、绒布—隆子两条断裂带、一系列倒转复式褶皱以及两个穹窿构造组成。始喜马拉雅期印度板块与欧亚大陆发生大规模陆—陆碰撞,导致特提斯喜马拉雅前陆盆地发生大规模缩短,沉积盖层以藏南拆离系为底界自北向南大规模逆冲推覆、褶皱;新喜马拉雅期高喜马拉雅结晶岩系自北向南挤出;藏南拆离系主拆离带和洛扎、哲古两条次级构造带上盘地层是自南向北伸展的产物。  相似文献   

8.
杨巍然  王杰  梁晓 《地学前缘》2012,19(5):1-17
根据中国学者的开合构造观点,分析了亚洲大地构造基本特征和演化规律,提出“构造集群”、“构造运动程式”等一些新的认识。(1)亚洲划分为11个大地构造旋回并归纳为大陆基底形成、泛大陆和超大陆形成与发展以及现代板块构造与陆内演化三大阶段。(2)以23条俯冲带或碰撞带为骨干,划分了以西伯利亚陆块、古中华陆块、印度陆块和太平洋板块为核心的北亚、中亚、南亚和东亚4个构造集群,以及11个二级和86个三级构造单元。构造集群系指具有成生联系的陆块、大小不同的地块和各个时期造山带的聚合体;两个构造集群间存在一个构造结合区。(3)亚洲构造变形特点为:中亚构造集群基本呈东西向展布,分别受围绕西伯利亚陆块分布的向南突出的弧形构造和围绕印度陆块分布的主体向北北东突出的弧形构造(仅内弧出现了向南突出的喜马拉雅弧)的挤压,它们同时又被北北东向展布的东亚构造集群强烈改造,从而形成了复杂的构造格局,表明古中华陆块在亚洲大地构造演化中起着“中流砥柱”的重要作用。(4)亚洲大地构造时空演化与全球同步经历了哥伦比亚古陆、罗迪尼亚古陆和潘基亚古陆形成的3次重要造陆事件。在此过程中,中亚构造集群独具特色:哥伦比亚古陆1 850 Ma形成,稍早于南亚构造集群(1 800 Ma)和北亚构造集群(1 800~1 600 Ma);罗迪尼亚古陆830 Ma形成,晚于南北两侧的900~1 000 Ma;潘基亚古陆210 Ma形成,也比全球普遍于250 Ma形成的时间晚。印支运动的广泛发育和强烈影响是中亚构造集群乃至亚洲最显著的特征。(5)总结出背向俯冲对接式、单向运移拼贴式和原地开合手风琴式3种构造运动程式。背向俯冲对接式的动因是地幔对流(软流圈对流或地幔柱对流);单向运移拼贴式可能与地幔上升产生的地幔层流有关;原地开合手风琴式推测是深部地幔“热点”周期活动所致。  相似文献   

9.
东喜马拉雅构造结南迦巴瓦岩群花岗质片麻岩的初步研究   总被引:5,自引:0,他引:5  
野外地质填图和研究发现,东喜马拉雅构造结高喜马拉雅结晶岩系中有古老的花岗岩侵入,并在鲁霞地区圈定了9个花岗质侵入体。古老的花岗质岩石主要侵位于南迦巴瓦岩群直白岩组中,与南迦巴瓦岩群一起经历了麻粒岩相变质作用而形成花岗质片麻岩套。岩石类型有花岗闪长质片麻岩、黑云母花岗质片麻岩、闪长质片麻岩等。岩石化学研究表明这些花岗片麻岩套具“S”型特征,可能有深部幔源物质的加入。花岗岩形成深度在2~5km之间.侵位时代为552~525Ma,为新元古代晚期,属泛非期陆内演化阶段的产物。高喜马拉雅地区在元古宙末期形成了结晶基底。  相似文献   

10.
南迦巴瓦构造结的楔入及其地质效应   总被引:8,自引:3,他引:5       下载免费PDF全文
南迦巴瓦构造结由其核 喜马拉雅构造单元和周边的冈底斯构造单元、雅鲁藏布构造单元组成。喜马拉雅构造单元为构造楔入体,两侧发育有右旋和左旋走滑断层系,构成南迦巴瓦楔入同迦巴瓦构造结的楔入作用,使雅鲁藏布缝合线横推错位,形成滇藏涡旋构造,并为雅鲁藏布大峡谷的形成奠定了基础。南迦巴瓦楔入构造的形成一印度板块连续的向北汇聚推挤作用发生反时针旋转有关,并可分为点碰撞(45Ma前)、碰撞楔入(45 ̄7Ma)和旋  相似文献   

11.
Pant-y-ffynnon Quarry in South Wales yielded a rich cache of fossils in the early 1950s, including articulated specimens of new species (the small sauropodomorph dinosaur Pantydraco caducus and the crocodylomorph Terrestrisuchus gracilis), but no substantial study of the wider fauna of the Pant-y-ffynnon fissure systems has been published. Here, our overview of existing specimens, a few described but mostly undescribed, as well as freshly processed material, provides a comprehensive picture of the Pant-y-ffynnon palaeo-island of the Late Triassic. This was an island with a relatively impoverished fauna dominated by small clevosaurs (rhynchocephalians), including a new species, Clevosaurus cambrica, described here from a partially articulated specimen and isolated bones. The new species has a dental morphology that is intermediate between the Late Triassic Clevosaurus hudsoni, from Cromhall Quarry to the east, and the younger C. convallis from Pant Quarry to the west, suggesting adaptive radiation of clevosaurs in the palaeo-archipelago. The larger reptiles on the palaeo-island do not exceed 1.5?m in length, including a small carnivorous crocodylomorph, Terrestrisuchus, and a possible example of insular dwarfism in the basal dinosaur Pantydraco.  相似文献   

12.
Lithostratigraphy, physicochemical stratigraphy, biostratigraphy, and geochronology of the 77–70 Ma old series bracketing the Campanian–Maastrichtian boundary have been investigated by 70 experts. For the first time, direct relationships between macro- and microfossils have been established, as well as direct and indirect relationships between chemo-physical and biostratigraphical tools. A combination of criteria for selecting the boundary level, duration estimates, uncertainties on durations and on the location of biohorizons have been considered; new chronostratigraphic units are proposed. The geological site at Tercis is accepted by the Commission on Stratigraphy as the international reference for the stratigraphy of the studied interval. To cite this article: G.S. Odin, C. R. Geoscience 334 (2002) 409–414.  相似文献   

13.
Robert L. Linnen   《Lithos》2005,80(1-4):267-280
The solubilities of columbite, tantalite, wolframite, rutile, zircon and hafnon were determined as a function of the water contents in peralkaline and subaluminous granite melts. All experiments were conducted at 1035 °C and 2 kbar and the water contents of the melts ranged from nominally dry to approximately 6 wt.% H2O. Accessory phase solubilities are not affected by the water content of the peralkaline melt. By contrast, solubilities are affected by the water content of the subaluminous melt, where the solubilities of all the accessory phases examined increase with the water content of the melt, up to 2 wt.% H2O. At higher water contents, solubilities are nearly constant. It can be concluded that water is not an important control of accessory phase solubility, although the water content will affect diffusivities of components in the melt, thus whether or not accessory phases will be present as restite material. The solubility behaviour in the subaluminous and peralkaline melts supports previous spectroscopic studies, which have observed differences in the coordination of high field strength elements in dry vs. wet subaluminous granitic glasses, but not for peralkaline granitic glasses. Lastly, the fact that wolframite solubility increases with increasing water content in the subaluminous melt suggests that tungsten dissolved as a hexavalent species.  相似文献   

14.
Some olistolites reworked in a Tertiary flysch of Mount Parnon (Peloponnesus, Greece) exhibit a Late Permian assemblage, dominated by Paradunbarula (Shindella) shindensis, Hemigordiopsis cf. luquensis and Colaniella aff. minima. This association corresponds to the Late Wuchiapingian (=Late Dzhulfian), a substage whose algae and foraminifera are generally little known. Contemporaneous limestones crop out in the middle part of the Episkopi Formation in Hydra, but they are rather commonly reworked in Mesozoic and Cainozoic sequences. The palaeobiogeographical affinities shared by the foraminiferal markers of Greece, southeastern Pamir, and southern China, are very strong (up to the specific level), and are congruent with the Pangea B reconstructions. To cite this article: E. Skourtsos et al., C. R. Geoscience 334 (2002) 925–931.  相似文献   

15.
PALEONTOLOGY     
正20141596 Liu Yunhuan(School of Earth Sciences and Resources,Chang’an University,Xi’an 710054,China);Shao Tiequan Early Cambrian Quadrapyrgites Fossils of Xixiang Boita in Southern Shaanxi Province(Journal of Earth Sciences and Environment,ISSN1672-6561,CN61-1423/P,35(3),2013,p.39-43,3 illus.,20 refs.)  相似文献   

16.
正20141719 Chen Zhijun(State Key Laboratory of Geological Processes and Mineral Resources,China University of Geosciences,Wuhan 430074,China);Chen Jianguo Automated Batch Mapping Solution for Serial Maps:A Case Study of Exploration Geochemistry Maps(Journal of Geology,ISSN1674-3636,CN32-1796/P,37(3),2013,p.456-464,2 illus.,2 tables,10 refs.)  相似文献   

17.
正20140962 Chen Fenning(Xi’an Institute of Geology and Mineral Resources,Xi’an710054,China);Chen Ruiming Late Miocene-Early Pleistocene Ostracoda Fauna of Gyirong Basin,Southern Tibet(Acta Geologica Sinica,ISSN0001-5717,CN11-1951/P,87(6),2013,p.872-886,6illus.,56refs.)  相似文献   

18.
PETROLOGY     
正1.IGNEOUS PETROLOGY20142008Cai Jinhui(Wuhan Center,China Geological Survey,Wuhan 430205,China);Liu Wei Zircon U-Pb Geochronology and Mineralization Significance of Granodiorites from Fuzichong Pb-Zn Deposit,Guangxi,South China(Geology and Mineral Resources of South China,ISSN1007-3701,CN42-1417/P,29(4),2013,p.271-281,7illus.,  相似文献   

19.
正20141205Cheng Weiming(State Key Laboratory of Resources and Environmental Information System,Institute of Geographic Sciences and Natural Resources Research,CAS,Beijing 100101,China);Xia Yao Regional Hazard Assessment of Disaster Environment for Debris Flows:Taking Jundu Mountain,Beijing as an  相似文献   

20.
正20141266Fan Chaoyan(Guangdong Provincial Key Laboratory of Mineral Resources and Geological Processes,Guangzhou 510275,China);Wang Zhenghai On Error Analysis and Correction Method of Measured Strata Section with Wire Projection Method(Journal of  相似文献   

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