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1.
青藏高原西缘札达至泉水湖剖面大地电磁探测结果表明, 研究区被雅江缝合带、班公-怒江缝合带划分为3个构造区域, 由南至北分别为喜玛拉雅地体、冈底斯地体和羌塘地体.研究区内普遍存在中下地壳高导层, 高导层的顶面埋深起伏较大, 冈底斯内的高导层埋深大, 羌塘和喜玛拉雅地体内的高导层埋深较浅.在班公-怒江缝合带南侧高导层埋深最大, 班公-怒江缝合带南北两侧高导层埋深存在一个约20km的错动.冈底斯地体内的地壳高导层呈北倾形态, 南羌塘的地壳具有双高导层.沿剖面的上地壳存在多组规模不等、产状不同的电性梯度带或畸变带, 反映了沿剖面地区的缝合带与断裂带分布情况.根据电性结构特征, 推断了雅江缝合带、班公-怒江缝合带以及龙木措、噶尔藏布等主要断裂的构造特征与空间分布.   相似文献   

2.
摘 要  展示了超宽频带大地电磁深探测所获得的西藏亚东—巴木错沿线地区电性结构图像; 阐述了西藏中、南部特殊的壳幔电性特征。  相似文献   

3.
印度板块与亚洲板块的碰撞使喜马拉雅-青藏高原隆升,地壳增厚和生长扩展。探测青藏高原深部结构,揭露两个大陆如何碰撞,碰撞如何使大陆变形的过程,是全球关切的科学奥秘。深地震反射剖面探测是打开这个科学奥秘的最有效途径之一。20多年来,运用这项高技术探测到青藏高原巨厚地壳的精细结构,攻克了难以得到下地壳和Moho清晰结构的技术瓶颈,揭露了陆陆碰撞过程。本文在探测研究成果基础上,从青藏高原南北-东西对比,再到高原腹地,系统地综述了青藏高原之下印度板块与亚洲板块碰撞-俯冲的深部行为。印度地壳在高原南缘俯冲在喜马拉雅造山带之下,亚洲板块的阿拉善地块岩石圈在北缘向祁连山下俯冲,祁连山地壳向外扩展,塔里木地块与高原西缘的西昆仑发生面对面的碰撞,在高原东缘发现龙日坝断裂而不是龙门山断裂是扬子板块的西缘边界,高原腹地Moho 薄而平坦,岩石圈伸展垮塌。多条深反射剖面揭露了在雅鲁藏布江缝合带下印度板块与亚洲板块碰撞的行为,印度地壳不仅沿雅鲁藏布江缝合带存在由西向东的俯冲角度变化,而且其向北行进到拉萨地体内部的位置也不同。在缝合带中部,显示印度地壳上地壳与下地壳拆离,上地壳向北仰冲,下地壳向北俯冲,并在俯冲过程发生物质的回返与构造叠置,使印度地壳减薄,喜马拉雅地壳加厚。俯冲印度地壳前缘与亚洲地壳碰撞后沉入地幔,处于亚洲板块前缘的冈底斯岩基与特提斯喜马拉雅近于直立碰撞,冈底斯下地壳呈部分熔融状态,近乎透明的弱反射和局部出现的亮点反射,以及近于平的Moho都反映出亚洲板块南缘的伸展构造环境。  相似文献   

4.
l.IntroductionAteleseismicprofilingwasconductedjointlybytheChineseAcademyofGeologicalSciencesandtheInstitUteofGeophysicsandInnerTectonics,JosephUniversity,France,alongthemainroadfromGonghetoYushuinQinghai,withanarrayof4Othree-componentMinititanstationsandl3one-componentCEISstations,fromJunetoNovember,1998.ThestUdycoversahugearearangingfromthenofthoftheBangong-NujiangFaulttothesouthoftheMid-QilianFault,andfromtheeastoftheQaidamBasintothewestoftheLongmenShanFault,goingthroughSouthQ…  相似文献   

5.
雅鲁藏布江缝合带开合演化模式的探讨   总被引:5,自引:0,他引:5  
通过对雅鲁藏布江缝合带的蛇绿岩、构造混杂岩的地质调查及其岩石化学、地球化学特征的分析,进一步证实了雅鲁藏布江缝合带萨嘎分岔的存在,探讨了雅鲁藏布江缝合带的演化模式。将雅鲁藏布江缝合带分为南、北两带,南带起始于二叠纪末期印度板块向北漂移过程中的伸展作用,到三叠纪末-早侏罗世,雅鲁藏布江缝合带南带伸展作用加剧,并伴有洋壳的裂陷和蛇绿岩的侵位,在较短暂的双向俯冲、碰撞后焊接了仲巴陆块。晚侏罗世到早白垩世之后,雅鲁藏布江缝合带北带再次扩张、俯冲,直到始新世晚期整个缝合带开始剧烈碰撞、造山、隆起,形成了雄伟的青藏高原。  相似文献   

6.
班公湖—怒江构造带西段三叠纪—侏罗纪构造—沉积演化   总被引:20,自引:2,他引:20  
王冠民  钟建华 《地质论评》2002,48(3):297-303
班公湖-怒江构造带西段在大地构造位置上处于特提斯构造域东端,横跨班公湖-怒江断裂带。三叠纪-株罗纪期间,其构造-沉积演化经历了大陆初始裂谷(T)、原洋裂谷(J1)、残余弧后盆地(J2-J3)阶段。初始裂谷阶段的拉张是呈南断北超的半地堑式由东向西进行的,逐渐形成地堑式原洋裂谷盆地。中晚侏罗世,南部新特提斯洋壳开始北各俯冲,产生的区域挤压应力使原洋裂谷逐渐封闭,裂谷盆地的小洋壳表现出以南向俯冲为主的双向式腑冲,同时伴生区域热沉降,盆地具残余弧后盆地的性质。该阶段,羌南地区发育碳酸盐岩为主的稳定陆缘沉积,冈度斯-念青唐古拉板片北部则形成广泛南超的近源碎屑沉积。  相似文献   

7.
华南东南沿海地区岩石圈电性结构   总被引:7,自引:0,他引:7  
为了研究华南东南沿海地区的壳幔电性结构及其动力学背景,布设了4条大地电磁测深剖面,获得了相应的二维地电模型,并结合相关地质和地球化学信息对地电模型进行了研究。结果表明:研究区西部地壳由于碰撞汇聚作用变厚,东部地壳由于太平洋板块的俯冲作用剧烈减薄。华南东南沿海地区的岩石圈并不是简单的呈现"西厚东薄"的特征,研究区东西两端岩石圈厚度超过100km,推测西段岩石圈增厚主要形成于陆内挤压造山或陆内碰撞汇聚造山作用,而东端岩石圈增厚可能由于大洋板块俯冲时洋壳残留物叠置在岩石圈的下部所形成,而中部岩石圈的减薄与软流圈物质上侵有关,造成此区域大规模软流圈物质上侵的动力来自于太平洋板块俯冲产生的深部热扰动。  相似文献   

8.
With the super-wide band magnetotelluric sounding data of the Jilong (吉隆)-Cuoqin (措勤) profile (named line 800) which was completed in 2001 and the Dingri (定日)-Cuomai (措迈) profile (named line 900) which was completed in 2004,we obtained the strike direction of each MT station by strike analysis,then traced profiles that were perpendicular to the main strike direction,and finally obtained the resistivity model of each profile by nonlinear conjugate gradients (NLCG) inversion. With these two models,we described the resistivity structure features of the crust and the upper mantle of the center-southern Tibetan plateau and its relationship with Yalung Tsangpo suture: the upper crust of the research area is a resistive layer with resistivity value range of 200-3 000 ?·m. The depth of its bottom surface is about 15-20 km generally,but the bottom surface of resistive layer is deeper in the middle of these two profiles. At line 900,it is about 30 km deep,and even at line 800,it is about 38 km deep. There is a gradient belt of resistivity at the depth of 15-45 km,and a conductive layer is beneath it with resistivity even less than 5 ?·m. This conductive layer is composed of individual conductive bodies,and at the south of the Yalung Tsangpo suture,the conductive bodies are smaller with thickness about 10 km and lean to the north slightly. However,at the north of the Yalung Tsangpo suture,the conductive bodies are larger with thickness about 30 km and also lean to the north slightly. Relatively,the conductive bodies of line 900 are thinner than those of line 800,and the depth of the bottom surface of line 900 is also shallower. At last,after analyzing the effect factors to the resistivity of rocks,it was concluded that the very conductive layer was caused by partial melt or connective water in rocks. It suggests that the middle and lower crust of the center-southern Tibetan plateau is very thick,hot,flabby,and waxy.  相似文献   

9.
Thirty magnetotelluric soundings were made along two NW–SE profiles to the north and south of Oaxaca City in southern Mexico. The profiles crossed the N–S Oaxaca Fault and the Oaxaca-Juarez terrane boundary defined by the Juarez mylonitic complex. Dimensionality analysis of the MT data showed that the subsurface resistivity structure is 2D or 3D. The Oaxaca and correlative Guichicovi terranes consist of ca. 1–1.4 Ga granulitic continental crust overlain by Phanerozoic sedimentary rocks, characterized by high and low resistivities, respectively. The Juarez terrane consists of oceanic Mesozoic metavolcanic and metasedimentary rocks, characterized by a low to medium resistivity layer, that is approximately 10 km thick. The Oaxaca Fault is a Cenozoic aged, normal fault that reactivated the dextral and thrust Juarez mylonitic complex north of Oaxaca City: its location south of Oaxaca City is uncertain. In the southern profile, the MT data show a ca. 20–50 km wide, west-dipping, relatively low resistivity zone material that extends through the entire crust. This is inferred to be the Juarez terrane bounded on either side by the ca. 1–1.4 Ga granulites. The Oaxaca Fault is imaged only by a major electrical resistivity discontinuity (low to the west, high to the east) along both the western border of the Juarez mylonitic complex (northern profile) and the San Miguel de la Cal mountains (southern profile) suggesting continuity.  相似文献   

10.
研究区大地构造位置处于冈瓦纳北缘晚古生代-中生代冈底斯-喜马拉雅构造区中段北部,雅鲁藏布江巨型铜多金属成矿带北亚带。研究区成矿地质条件有利,已发现的主要矿床类型为矽卡岩型铅锌多金属矿,其次为热液型铅银多金属矿。铜铅锌多金属矿床(点)、多金属地球化学异常均沿纳木错-嘉黎断裂带呈近东西向带状展布,该带地域优势明显,多金属矿产资源潜力巨大,通过进一步的地质找矿工作,该区有望成为西藏重要的铜铅锌银多金属成矿带。  相似文献   

11.
喜马拉雅东构造结岩石圈板片深俯冲的地球物理证据   总被引:4,自引:0,他引:4  
2009~2010年在南迦巴瓦地区进行了宽频带地震和大地电磁探测,分别处理获得东构造结及其邻区的地下300km以上的P波速度图像和两条大地电磁电阻率剖面。通过资料的对比和综合解释,发现电阻率分布与地震波速有较好的对应关系。研究结果表明:南迦巴瓦变质体的上地壳部分呈现明显高速高阻特征,为两侧的雅鲁藏布江缝合带所夹持;中下地壳具有不均匀性,且普遍呈低速低阻特征;印度板块在藏东南向欧亚板块的俯冲前缘越过嘉黎断裂,抵达班公湖-怒江缝合带;在拉萨地体的高速俯冲板片以下100km至200km深度范围内存在大规模的低速异常带,其上盘中下地壳也广泛发育低速高导体,指示青藏高原东南缘可能存在韧性易流动的物质向东、东南逃逸的通道,为印度板块在南迦巴瓦的深俯冲动力学模式提供了地球物理证据。  相似文献   

12.
构造岩片作为造山带中非史密斯地层地区的填图单位有其重要的地质意义,本文将雅鲁藏布江缝合带分为6大构造岩片,其中蛇绿混杂岩岩片又分4个次级岩片,进一步阐述了缝合带内不同单元具有不同岩性和不同构造型式,是一条复杂的构造带,并发现俯冲板块一侧的不同构造单元具有自南而北,由脆性变形到低温高压变质、脆-韧性变形,超基性岩的深层次韧性变形的分布规律,大多数岩片的分布是通过多重逆冲推覆型或走滑型的断层将其从地壳深部挤出定位的。雅鲁藏布江缝合带内的构造岩片特征,反映了冈瓦那大陆北缘自三叠纪末期到第四纪经历了裂陷、扩张、多岛洋、闭合、俯冲、碰撞、褶皱、推覆造山的全过程。  相似文献   

13.
银石山地区巴颜喀拉前陆盆地自北而南可分为冬银山倒转褶皱带、丛崭山-张公山大型向斜、屏岭-银石山断褶带等3个变形特征迥异的构造单元。三叠纪末,巴颜喀拉板块北缘向北消减过程中具“双层汇聚”机制——硬度较大的基底板块仍沿其二叠纪末与昆仑地块间的俯冲分界面向北消减,相对较软的巴颜喀拉三叠系盖层则沿其底面薄弱面剥离,被动向昆仑地块之上仰冲,从而在单剪应力状态下在其北面形成北倒南倾的等斜褶皱(东部)或轴面南倾的斜歪褶皱(西部)。受昆仑地块南缘“东凸西凹”的古构造格局控制,巴颜喀拉板块在向北消减时东部具右旋走滑,使北东面巴颜喀拉山群褶皱枢纽呈北东东向,并导致北部及中部的构造变形具东强西弱的特点。盖层与基底问界面、巴颜喀拉山群三段与四段间界面等为两个主要滑脱剥离面。受其控制,在中部丛崭山-张公山一带形成大型向斜,而在南部屏岭-银石山地区则形成中小规模连续褶皱。  相似文献   

14.
天山地震活动区的深部构造特征   总被引:1,自引:0,他引:1  
以地壳介质的P波速度分布和导电性为基础,描述了天山地区几个主要地震活动区域深部构造特征,地震大都发生在地壳内不同速度块体之间的过渡带附近;沿着天山的南缘和毗邻塔里木盆地的西昆仑、阿尔金等山前地带,壳内高导层由北向南、由东向西逐渐加深并增厚,它们与所在地区震源深度的分相相吻合。这种不稳定的地壳结构有长期受力情况下非常容易发生形变甚至破裂而引发地震。  相似文献   

15.
The magnetotelluric (MT) survey along the Zhada (札达)-Quanshui (泉水) Lake profile on the western margin of the Qinghai (青海)-Tibet plateau shows that the study area is divided into three tectonic provinces by the Yalung Tsangpo and Bangong (班公)-Nujiang (怒江) sutures. From south to north these are the Himalayan terrane, Gangdise terrane, and Qiangtang (羌塘) terrane. For the study area, there are widespread high-conductivity layers in the mid and lower crust, the top layers of which fluctuate intensively. The high-conductivity layer within the Gangdise terrane is deeper than those within the Qiangtang terrane and the Himalaya terrane, and the deepest high-conductivity layer is to the south of the Bangong-Nujiang suture. The top surface of the high-conductivity layer in the south of the Bangong-Nujiang suture is about 20 km lower than that in the north of it. The high-conductivity layer within the Gangdise terrane dips toward north and there are two high-conductivity layers within the crust of the southern Qiangtang terrane. In the upper crust along the profile, there are groups of lateral electrical gradient zones or distortion zones of different scales and occurrence indicating the distribution of faults and sutures along the profile. According to the electrical structure, the structural characteristics and space distribution of the Yalung Tsangpo suture,Bangong-Nujiang suture, and the major faults of Longmucuo (龙木错) and Geerzangbu are inferred.  相似文献   

16.
扬子古板块的形成及其对中国南方地壳发展的影响   总被引:14,自引:0,他引:14       下载免费PDF全文
罗志立 《地质科学》1979,14(2):127-138
六十年代以来,人们在海洋和大陆边缘积累了大量地质、地球物理和地球化学资料,应运而生的“板块学说”,把人们的视野扩展到占地球表面百分之七十的广阔海域,使人们看到了有关洋壳演变为陆壳的许多独特的地质现象,使原来主要在大陆上获得认识的一些地质现象要求新的解释。本文将在前人地质资料基础上,利用板块学说探讨扬子古板块的形成和对中国南方地壳发展的影响。  相似文献   

17.
The northern part of the auriferous Bendigo Zone is obscured by thick Cenozoic sediments of the Murray Basin, and as such remains poorly explored. Consequently, in addition to the 2006 deep seismic line obtained in Central Victoria, a magnetotelluric (MT) survey was completed to provide a signature for the major structures previously defined in the Bendigo area. Based on these correlations a second MT line, which we present here, was completed some 50 km to the north of the original line in an attempt to trace the deep structural trends extending north to the Victorian/NSW border. Extending some 155 km across the central north of the state, data were collected at 52 sites along an east–west profile. The new electrical conductivity model generated correlates well with the results from the southern transect; it confirms previously identified structural trends to the north and identifies additional unknown deep structures, thus adding to the understanding of the geology of the covered region and to its gold-bearing potential.  相似文献   

18.
新疆阿拉套山花岗岩类的K-Ar和~(40)Ar-~(39)Ar同位素定年   总被引:1,自引:2,他引:1  
新疆西北部阿拉套山南坡的花岗岩体的40Ar-39Ar和K-Ar定年结果表明它们都是海西期侵入体。侵入活动可分为三个阶段:最早的是东部的岩基,岩性为花岗间长岩和钾长花岗岩,年龄约305Ma,而后是西部的二长花岗岩和钾长花岗岩,与钨锡成矿有关,年龄约290Ma;最晚的是最西部的二长花岗岩,年龄约280~270Ma。岩浆活动中心有自东或北东向西或南西迁移的趋势。  相似文献   

19.
中亚大陆古生代构造形成及演化   总被引:8,自引:3,他引:8  
西伯利亚、塔里木及哈萨克斯坦诸古板块中的微陆和地体构造了中亚十分复杂的拼贴构造图案。古生代时,南天巴准洋-阿萨伊锡弧沟弧系和额尔齐斯洋-成田弧沟弧系构成了哈萨克斯坦板块的原型,塔里木板块陆壳块体在泥盆纪相对于阿萨伊锡岛弧的左行低角度斜俯冲和碰撞,造成此弧的解体、走滑堆叠和山弯构造。与此同时,成田岛弧南北两侧分别受到南天巴准洋和额尔齐斯洋的俯冲。在晚古生代晚期这两个沟弧系演变为哈萨克斯坦板块的基本构  相似文献   

20.
华南大陆东部若干构造问题的思考   总被引:1,自引:1,他引:0       下载免费PDF全文
华南大陆的结构、属性、过程与动力学一直是地质学家关注的热点。本文以钦杭构造带东段为主要研究地区,通过精细的构造解析、变质变形研究、年代学分析,结合反射地震剖面,探讨了华南大陆东部几个科学问题。(1)江南造山带形成于新元古代华夏板块与扬子板块的“软碰撞”作用,可划分为扬子板块南缘、扬子—华夏汇聚带和华夏板块北缘3个构造单元,江南断裂带和武夷山—遂昌断裂带分别为江南造山带的北界和南界。(2)扬子—华夏板块汇聚带由多个小板块拼合而成,其间有多条缝合带,大约900 Ma开始汇聚,760 Ma全面闭合,850~780 Ma为活动高峰期,具有递变式的汇聚拼合过程,由南向北发展,先斜向俯冲,后右旋走滑,最晚集中在中部活动。(3)华南大陆东部为中生代奠定的构造格架,主要构造为一系列北东走向褶皱和逆冲断层,大量地壳范围内的叠瓦状逆冲推覆构造,由南向北逆冲,可下切到中—下地壳。(4)华南大陆燕山晚期区域性伸展构造广泛发育,存在“华南热隆”构造,震旦系内的滑覆构造典型,同期大规模岩浆活动、火山活动和大规模的热液成矿。(5)华南大陆构造演化为:850 Ma扬子—华夏板块递进式汇聚,760 Ma全面拼合,江南造山带形成;600 Ma华南大陆盖层发育;430 Ma钦杭构造带受南部构造影响;220 Ma钦杭构造带受北部远程构造影响;160 Ma逆冲推覆构造产生;140 Ma大规模伸展,构造-岩浆-成矿关系密切;随后江南持续隆升,华南强烈热隆。  相似文献   

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