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1.
西藏罗布莎-泽当蛇绿岩体的构造产出与侵位机制探讨   总被引:7,自引:7,他引:0  
对西藏雅江缝合带中的罗布莎-泽当蛇绿岩体进行了详细的野外构造考察和室内组构研究工作,查明了蛇绿岩体的产出特征及与不同围岩的接触关系,确定了两条围限岩体的大型逆冲型韧性剪切带(DFT和DFR)的性质,识别出蛇绿岩侵位过程中经历过早期由北而南仰冲和晚期由南而北倒转推覆两期构造运动,指出两条控制岩体的大型韧性断层非同时形成,不是MCT的反冲断层,提出研究区蛇绿岩侵位新的演化模式,为蛇绿岩侵位机制的探讨提供了新的依据.  相似文献   

2.
中朝陆台北侧褶皱带(中段)中,出露有两条蛇绿岩带:一条是温都尔庙加里东期蛇绿岩带(简称南带);一条是索伦山-贺根山华力西期蛇绿岩带(简称北带)。两条岩带具有不同的时空格局和明显的地球化学差异。通过对两条蛇绿岩带地球化学研究,讨论了蛇绿岩形成的古构造环境。南带蛇绿岩可能是在岛弧边缘附近海盆地扩张脊中形成的;北带蛇绿岩可能是在大洋中脊形成的,它标志着中朝板块和西伯利亚板块之间的碰撞带位置。  相似文献   

3.
青海北祁连山基性、超基性岩含金性研究   总被引:1,自引:0,他引:1  
依据区内岩体及围岩662个微金样品分析结果,笔者对基性、超基性岩的含金性及其中金的赋存规律进行了详细研究。确认该区基性、超基性岩体的金背景含量普遍偏高,而且明显高于围岩。同时指出,三条蛇绿岩带金元素丰度呈现自北而南、自东而西递增的趋势。经对金富集地质条件的分析,认为区内金的活化迁移主要受控于与超基性岩带分布近于一致的两条韧性剪切带,并指出断裂破碎带、强蚀变超基性岩体与围岩接触带、热液蚀变带、金属硫化物产出部位及砂金(铂)异常与Au、As、Sb、Cu异常重叠部位是找金的有利地段。在上述地段发现了川剌沟、撒拉河金矿点两处和含金超基性岩体20处。提出四个预测区和七个找金部位。依据硫同位素、矿物包裹体等资料及金矿(化)体的赋存部位,首次提出该区金矿总体可称为蛇绿岩型金矿。成因类型主要属中温变质热液型。  相似文献   

4.
依据区内岩体及围岩662个微金样品分析结果,笔者对基性、超基性岩的含金性及其中金的赋存规律进行了详细研究。确认该区基性、超基性岩体的金背景含量普遍偏高,而且明显高于围岩。同时指出,三条蛇绿岩带金元素丰度呈现自北而南、自东而西递增的趋势。经对金富集地质条件的分析,认为区内金的活化迁移主要受控于与超基性岩带分布近于一致的两条韧性剪切带,并指出断裂破碎带、强蚀变超基性岩体与围岩接触带、热液蚀变带、金属硫化物产出部位及砂金(铂)异常与Au、As、Sb、Cu异常重叠部位是找金的有利地段。在上述地段发现了川刺沟、撒拉河金矿点两处和含金超基性岩体20处。提出四个预测区和七个找金部位。依据硫同位素、矿物包裹体等资料及金矿(化)体的赋存部位,首次提出该区金矿总体可称为蛇绿岩型金矿。成因类型主要属中温变质热液型。  相似文献   

5.
青藏高原中的古特提斯体制与增生造山作用   总被引:28,自引:12,他引:16  
青藏高原古特提斯体系的特征表现为古特提斯洋盆中多条状地体的存在,多俯冲、多岛弧增生体系的形成和多地体汇聚、碰撞造山的动力学环境,其构架包括4条代表古特提斯洋壳残片的蛇绿岩或蛇绿混杂岩(昆南-阿尼玛卿蛇绿岩带、金沙江-哀牢山-松马蛇绿岩带、羌中-澜沧江-昌宁-孟连蛇绿岩带和松多蛇绿岩带)、5条火山岩浆岛弧带(布尔汗布达岛弧岩浆带、义敦火山岩浆岛弧带、江达-绿春火山岛弧带、东达山-云县火山岛弧带和左贡-临沧岛弧-碰撞岩浆带)、4个陆块或地体(松潘-甘孜地体、羌北-昌都-思茅地体、羌南-保山地体)、3条洋壳深俯冲形成的高压-超高压变质带(金沙江得荣高压变质带、龙木错-双湖高压变质带、松多高(超)压变质带),以及5条弧前增生楔或增生杂岩(西秦岭增生楔、巴颜喀拉-松潘-甘孜增生楔、金沙江增生楔、双湖-聂荣-吉塘-临沧增生楔、松多增生杂岩)。古特提斯洋盆的俯冲增生造山作用普遍存在于青藏高原古特提斯复合造山体中,构成与多条古特提斯蛇绿岩带(缝合带)相伴随的俯冲增生杂岩带(链)。古特提斯俯冲增生杂岩带包括由弧前强烈变形的沉积增生楔、以及高压变质岩、岛弧岩浆岩、蛇绿岩和外来岩块组成的混杂体,代表在洋盆俯冲过程中的活动陆缘的地壳增生。  相似文献   

6.
雅鲁藏布江缝合带北支自札达县老武起拉向北西去向不明,南支止于札达县以东.在札达县曲松附近发现了2条蛇绿岩带--夏浦沟蛇绿岩带和波博蛇绿岩带,并在夏浦沟蛇绿岩带台丁拉-天巴拉之间发现了高压变质岩--榴闪岩,对蛇绿岩的空间分析及追索表明它们分别代表雅鲁藏布江缝合带南、北支.其中雅鲁藏布江缝合带南支在札达盆地西北缘首次被发现,而雅鲁藏布江缝合带北支则自老武起拉向西延伸,经研究区内的夏浦沟-台丁拉一带延入印控克什米尔地区,并可能向北西与什约克蛇绿岩相接.由于上述蛇绿岩分别构成北喜马拉雅构造带与札达微陆块、札达微陆块与冈底斯弧之间的板块界线,故它的发现对雅鲁藏布江缝合带西段空间结构的研究及青藏高原大地构造区划的完善具有重要意义.  相似文献   

7.
近年来对北加利福尼亚与西南俄勒冈宽阔的弗朗西斯科混杂岩中央带(CB)的研究表明,该带是一条古增生杂岩体,又叠加以晚自垩世和(或)早第三纪右行走滑断层系.沿北加利福尼亚混杂岩中心带(CB)的东界,走向N25W的陡倾断层截断了YollaBolly(YB)古缓倾断层和以东的Picket地体.这条走向N25W断层将东面这些地体的板片以及海岸山脉蛇绿岩和Elder溪地体(EC)的大谷岩系,从Clear湖附近向北远远推移到约300Km以北的Orick.此外,依照古生物和古地磁之研究,板片、玄武岩岩块、放射虫燧石以及中央带西部的深海石灰岩(Laytonville型).在北移了上千公里,在中心带内可能至少运移了该距离的一部分.在西南俄勒冈,巨大的Picket峰地体的  相似文献   

8.
李军  陈强  赵献军  刘洋旭  张伟  王波 《新疆地质》2012,30(3):304-306
西昆仑地区是国内最重要的超基性岩出露区之一,原生的铬铁矿均与超基性岩有关.库地蛇绿岩中发现了具工业意义的铬铁矿体,以库地蛇绿岩铬铁矿为典型矿床,对整条西昆仑北蛇绿岩带进行成矿远景探讨,以期对该区域铬铁矿找矿工作起指导作用.  相似文献   

9.
北补连蛇绿岩的特征,形成环境及其构造意义   总被引:23,自引:4,他引:23  
张旗  陈雨 《地球科学进展》1997,12(4):366-393
文中总结了北祁连蛇绿岩的特征,指出北祁连蛇绿岩大多具有MORB的性质,有玻安岩产生,形成在弧后和岛弧环境,北祁连蛇绿岩大多侵位在岛弧增生楔或活动陆缘地体之上,蛇绿岩属于科迪勒拉型,早古生代的北祁连造山带属于科迪勒拉型造山带,部分蛇绿岩之上整合产出一套沉积一火山岩系,称为蛇绿岩的上覆岩系,指出蛇绿岩及其上覆岩系的枕状熔岩分别来自不同的源区,具有不同的构造意义,还讨论了北祁连早古生代板块构造格局,认为  相似文献   

10.
张传林  杨志华 《地质学报》2000,74(4):313-324
本文在总结前人对秦岭造山带中蛇绿岩研究成果的基础上,结合我们的工作实践,对秦岭南北两条蛇绿岩形成时代、构造背景以及它们对秦岭-大别山构造演化的制约提出以下认识:①北秦岭构造带不存在显生宙的蛇绿岩套。分布于北秦岭商丹构造带的松树沟蛇绿岩是秦岭造山带中保存最完整的蛇绿岩,形成时代不晚于1000Ma,就位于980Ma。分布于二郎坪群、丹凤群中的超镁铁岩及镁铁质岩可能不属于典型的蛇绿岩,形成时代不晚于80  相似文献   

11.
We examined spatial distribution characteristics of extreme hydrological events in Xinjiang, China, using district data from 1901 to 2010. Frequency distribution showed a general symmetry along the Tianshan Mountains, with even distribution in Junggar Basin and Tarim Basin. Frequency was more in the north-west than in the south-east. The maximum incidence was in west Tianshan Mountains and generally decreased south-eastward. There were significant regional variations in type distribution. Rainstorm floods were more common in central Xinjiang. Hailstorms mainly occurred in the central Junggar Basin, the southern slope of the western Tianshan Mountains and north-west of Tarim Basin. Debris flow was mainly distributed in Ili Valley and the central northern Tianshan Mountains. Glacier lake outburst floods were more common in the Karakorum Mountains and southern slopes of the western Tianshan Mountains. Ice floods were mainly distributed in the western Tianshan Mountains. Snow hazards were mainly distributed in the wide northern areas, especially the Altai Mountains and Hamilton Basin. Snowmelt floods were mainly distributed in the Tacheng Basin and Ili Valley. The incidence of extreme hydrological events was greatly affected by weather systems and terrain features.  相似文献   

12.
本文以青藏高原东缘的三级地貌(川西高原、龙门山和四川盆地)单元为基础,利用裂变径迹定年数据分区块研究了该地区的晚新生代以来的剥蚀速率。研究结果表明,晚白垩世以来青藏高原东缘经历了一个由平缓到突然加速的剥蚀过程,其转折点为中新世。在整个时间段内的平均剥蚀速率,川西高原为0.26mm/yr,龙门山为0.72mm/yr,四川盆地为0.20mm/yr。龙门山的剥蚀速率大约是川西高原的2.8倍,间接反映边缘山脉的隆升并不等同于高原内部的隆升,边缘山脉的隆升可能是构造隆升和剥蚀隆升相叠加的结果。  相似文献   

13.
阿尔泰山活动断裂   总被引:13,自引:0,他引:13  
沈军  李莹甄  汪一鹏  宋方敏 《地学前缘》2003,10(Z1):132-141
文中介绍了位于亚洲腹地阿尔泰山地区的活动断裂。中国阿尔泰山 (阿尔泰山西南麓 )和蒙古阿尔泰山 (阿尔泰山的东麓 )以NNW向大型走滑断裂为主 ,科布多断裂是阿尔泰山东麓的一条主要NNW向走滑断裂 ,长度近 70 0km。第四纪中晚期右旋走滑速率可达 6 10mm/a ,其上发现有长逾2 0 0km的古地震形变带。富蕴断裂则是阿尔泰山西南麓的一条主要NNW向断裂 ,中晚第四纪的走滑运动速率为 (4± 2 )mm/a ,在中国阿尔泰山的西端还发育规模相对较小的NNW向右旋走滑断裂 ,中晚第四纪走滑速率为 (2± 1)mm/a。中国阿尔泰山 (阿尔泰山的西南麓 )还发育NWW向右旋走滑逆断裂 ,其规模相对较小 ,至中国阿尔泰山西端NWW向的额尔齐斯断裂具有明显的右旋走滑性质。蒙古阿尔泰山的南端则发育近东西向的左旋走滑逆断裂。在与戈壁阿尔泰山交汇部位 ,左旋走滑运动具主导作用。戈壁阿尔泰山发育的戈壁阿尔泰断裂带断续延伸可达 10 0 0km以上 ,目前的研究认为 ,其滑动速率为 12mm/a。其中的博格德断裂上 195 7年发生了戈壁阿尔泰 8.3级地震 ,形变带长约 2 5 0km。阿尔泰山活动断裂的规模、运动强度和强地震活动表明这里不仅受到遥远的印度板块北向推挤作用的影响 ,而且受到较近的地球动力学过程的影响或控制。  相似文献   

14.
对区内元素在各地质体的分配与分布特征进行了初步归纳总结,区内15种元素全域分布水平中Au、Pb、Cr、Ni、Mo、As高于西天山背景值,Ag、Cu、Zn、Sb、Hg、W、Sn、Bi、Mn低于西天山背景值。其空间分布特征中,与区内深大断裂构造、地层、岩浆均有不同程度的关联。  相似文献   

15.
The Rwenzori Mountains in western Uganda form an active rift-transfer zone in the western branch of the East African Rift System. Here we quantify local stress fields in high resolution from field observations of fault structures to shed light on the complex, polyphase tectonics expected in transfer zones. We apply the multiple inverse method, which is optimized for heterogeneous fault-slip data, to the northern and central Rwenzori Mountains. Observations from the northern Rwenzori Mountains show larger heterogeneity than data from the central Rwenzori, including unexpected compressional features; thus the local stress field indicates polyphase transpressional tectonics. We suggest that transpression here is linked to rotational and translational movements of the neighboring Victoria block relative to the Rwenzori block that includes strong overprinting relationships. Stress inversions of data from the central Rwenzori Mountains indicate two distinct local stress fields. These results suggest that the Rwenzori block consists of smaller blocks.  相似文献   

16.
阿尔金山新生代隆升历史一直倍受关注,大量热年代学数据显示,渐新世(40~30 Ma)以来发生阶段性隆升,而新生代初期隆升的热年代学记录极少。柴达木盆地西北地区(柴西北地区)新生界碎屑锆石裂变径迹年龄研究表明,其物源区单一且在新生代早期古新世中晚始新世(65~50 Ma)发生快速隆升剥露,为该区提供陆源碎屑。前人通过物源分析发现,柴西北时期的碎屑物主要来源于阿尔金山。同时,该区路乐河组下干柴沟组沉积地层残余厚度及沉积相特征表明,此时(65~50 Ma)阿尔金山存在一次短暂抬升,但幅度较小,与盆地高差不大,使柴西地区地形东高西低、北高南低。结合前人研究成果,本研究锆石裂变径迹热年代学数据以及沉积学指标所记录的阿尔金山东段65~50 Ma构造隆升事件,是对新生代印度欧亚板块碰撞的最初响应,也为青藏高原新生代隆升具有南北同步性提供了新的证据。  相似文献   

17.
Abstract The geotraverse from Yecheng to Shiquanhe, on the western Qinghai – Tibet Plateau, totalling 1056 km in length, passes the western Kunlun Mountains and the eastern end of the Karakorum Mountains. The Chinese and French scientists made a joint investigation along the line from July to August, 1989. Based on the outcropped ophiolites, palaeontology, sedimentary facies, magmatism, tectonic deformation and metamorphism, the region involved may be divided from north to south into five terranes and four ophiolitic suture zones. The ages of these terranes have a tendency to become increasingly younger from north to south.  相似文献   

18.
The geotraverse from Yecheng to Shiquanhe, on the western Qinghai-Tibet Plateau, totalling 1056 km in length, passes the western Kunlun Mountains and the eastern end of the Karakorum Mountains. The Chinese and French scientists made a joint investigation along the line from July to August, 1989. Based on the outcropped ophiolites, palaeontology, sedimentary facies, magmatism, tectonic deformation and metamorphism, the region involved may be divided from north to south into five terranes and four ophiolitic suture zones. The ages of these terranes have a tendency to become increasingly younger from north to south.  相似文献   

19.
摘要:天山两侧山前新生代构造变形强烈,是研究盆山耦合动力学机制的理想场所。文中在综合分析前人资料基础上,结合作者的野外观测和分析,综述了天山两侧盆山转换部位不同段的新生代构造变形特征,并进行对比分析。结果显示,新生代构造变形在天山南北山前相似性和差异性共存:变形由山体向盆地扩展,时间逐渐变新;但是南侧比北侧变形起始时间早,地壳缩短量和缩短率大。在东西方向上新生代构造变形也存在明显的分段相似性特征,整体上显示出斜方对称的变形图像:东天山博格达山前为基底式逆冲推覆,南侧为走滑变形;中天山南北两侧为多排子的褶皱 逆冲推覆构造,西天山南侧也为基底式的逆冲推覆,北侧为走滑变形。综合前人研究,认为印度和亚洲大陆的碰撞及其随后陆陆汇聚作用的远程效应,是形成天山两侧山前新生代构造变形在南北方向上相似性和差异性的主要原因;而天山山体内部先存的相对刚性地块和大型断裂,则导致了新生代构造变形的东西向分段差异性和斜方对称的特征。  相似文献   

20.
EPMA analyses and K-Ar age determinations were carried out on phengite in pelitic schist from the Sanbagawa metamorphic belt of the Kanto Mountains, Central Japan.

Phengite from the Sanbagawa pelitic schist in the Kanto Mountains generally occurs as aggregates of fine-grained crystals. It is extremely fine-grained in domains adjacent to relatively rigid garnet and albite porphyroblasts. This suggests that deformation-induced grain-size reduction took place in phengite during the ductile deformation accompanying the exhumation of the host schists. EPMA analysis shows that phengite is chemically heterogeneous at the thin-section scale, suggesting that it formed during retrograde metamorphism in restricted equilibrium domains. The retrograde chemical reaction was promoted by the ductile deformation.

K-Ar ages of phengite get younger from the Southern Unit (82 Ma) to the Northern Unit (58 Ma) in the Kanto Mountains. The age range is similar to that in Central Shikoku. The older schists occur in the higher metamorphic grade zone in Central Shikoku and in the lower-grade zone in the Kanto Mountains. The thermal structures in Central Shikoku are inverted, so that the highest-grade zone occurs in the upper or middle parts of the apparent stratigraphic succession. In contrast, the Kanto Mountains have a normal thermal structure: the higher-grade zone is in the lower part of the apparent stratigraphic succession. The different tectonic features in exhumation produced the two contrasting age-temperature-structure relations at the western side of Sanbagawa belt in Central Shikoku and the eastern end of the Sanbagawa belt in the Kanto Mountains that are 800 km distant from each other. Namely, the western Sanbagawa belt in Central Shikoku underwent longer ductile deformation during the exhumation than the eastern Sanbagawa belt in the Kanto Mountains.  相似文献   


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