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1.
北京房山变质核杂岩的基本特征及其成因探讨   总被引:44,自引:4,他引:40  
宋鸿林 《现代地质》1996,10(2):149-158
摘要:北京房山变质核杂岩是典型的板内变质核杂岩。由核部的结晶基底及顶部的变余糜棱岩带、固态流变的中间层和脆性剪裂的上部盖层组成三层结构。核部有强力侵位的早白垩世的房山花岗闪长岩株。地壳的韧性伸展表现于下古生界及其前的盖层岩系中,形成于印支期前,反映了强烈的区域古地热异常。印支期的南北向挤压造就了区域构造格局。燕山期的岩浆侵入使变质核杂岩定型。新生代的差异性隆升使核杂岩最终出露地表。幔源热异常、基底热隆及岩浆的强力侵位是核杂岩形成的主要因素.  相似文献   

2.
安徽黄栗树地区流变褶皱及其构造意义   总被引:1,自引:0,他引:1  
陈柏林  罗明光 《中国区域地质》2000,19(4):390-395,429
黄栗树地区位于张八岭超高压变质带东侧,该区变形构造可以划分为基底韧性变形带、韧脆性构一岩带和流变褶皱带。流变褶皱构造发育于黄(栗树)-破(凉亭)断裂以东的震旦系和下古生界盖层岩系中,自北西向南东依次表现为翻转褶皱,平卧褶皱和倒转褶皱流变褶皱与基底韧性-韧脆性变形呈渐变关系,并且与基底韧性-韧脆性变形具有一致的变形运动学和动力学特征,反映了扬子地块与华北地块碰撞造山期及折返过程的构造变形特点。  相似文献   

3.
地台区的沉积盖层构造,一般以褶皱平缓、断裂少且规模小为特征,尤其是象四川盆地这种主要以古老结晶杂岩为基底的刚性地块,盖层是中生代陆相红层,构造十分简单。这种简单的盖层褶皱,长期以来曾被人们认为是基底断块垂直运动的结果。近年来苏联一些学者在东欧地台、西伯利亚地台内部,通过地球物理和钻探等手段发现,许多褶皱构造是逆冲断层的错动造成,而著名的日古列夫构造、图伊马孜等长垣构造都与基底的逆冲断层重新活动有关。说明地台内部存在着强烈的水平挤压力,并有强烈的构造变形。  相似文献   

4.
黑龙江科洛杂岩变形特征、阶段和意义   总被引:1,自引:0,他引:1  
兴蒙造山区东段的科洛地区,自古亚洲洋关闭之后,经历了复杂的多阶段陆内变形,每一期变形都具有不同的机制,均是中国东北中生代以来板块边缘重要构造事件的反映。三叠纪中晚期,科洛杂岩经历了上盘指向NNE方向的韧性挤压变形,相关变形分布在整个科洛杂岩地区,大量低角度石英拉伸线理以及A型褶皱枢纽均指示了松嫩地块NNE向的运动,科洛杂岩也在此时形成。科洛杂岩并不是松嫩地块的基底,而是中生代构造事件的变质产物,该期事件不是古亚洲洋关闭后的造山带伸展,而与来自东侧和南侧的挤压有关。晚侏罗世-早白垩世科洛地区左行韧性走滑是蒙古-鄂霍茨克洋的关闭所致,其变形集中在科洛杂岩的西部边界剪切带上。白垩纪时科洛杂岩受到伸展构造的改造,以一系列向南东倒伏、走向NNE-SSW的相似褶皱为特征,褶皱的倒伏向不随位置的变化而改变,其伸展不是典型的变质核杂岩。新生代科洛杂岩又受到了近SN向的挤压,发生区域性的宽缓褶皱变形。  相似文献   

5.
石油地震资料揭示出塔里木盆地中央巴楚隆起为结晶基底和古生代地层相对隆升区,多数地区缺失中新生界,顶部为第四系陆相碎屑岩不整合覆盖隐伏隆起。在隆起南北两侧构造变形比较强烈,均发育基底卷入的逆冲构造和古生界内逆冲构造。运用断层相关褶皱理论,通过对研究区的二维地震测网解释及钻井标定,综合研究得出巴楚隆起北侧吐木休克卷入基底逆冲断层倾向南,向北逆冲,前寒武系基底到早古生代地层被错断。新生代时期的生长地层特征指示基底卷入构造于古近纪、中新世-上新世和更新世均有活动。构造分析表明基底卷入构造于中生代末期还有一次活动,说明吐木休克构造由多期构造运动形成。向北逆冲的吐木休克基底断层和盖层褶皱构造的向南反冲逆冲断层或滑脱断层共同组成基底卷入楔形构造,楔形点同时位于基底和盖层中。盖层构造以中寒武统膏岩为滑动面,向南逆冲,发育断层扩展或滑脱背斜构造。基底断层和盖层滑脱断层在剖面上组成典型的楔形构造几何形态,平面上形成三角形构造。地震剖面综合解释成果图显示,吐木休克弧形逆冲构造东部盖层反冲构造,即基底卷入楔形构造表现较为清楚,向西则表现不太明显,但地震反射波组(地层转折)指示盖层中仍存在这些反冲构造。纵向地震剖面和联络地震剖面均显示出存在该类构造。吐木休克基底卷入断层弧形构造顶部位移最大,盖层变形相对最小;向东西两侧基底断层位移逐渐减小,盖层构造位移相应逐渐增加。研究认为,塔里木巴楚隆起系挤压作用下,刚性地壳发生挠曲而形成的变形区带。  相似文献   

6.
甘肃北山勒巴泉变质核杂岩   总被引:1,自引:0,他引:1  
在多期伸展体制下形成的勒巴泉变质核杂岩构造,具有3层结构的特征,即结晶基底、中间韧性盖层、上部脆性盖层,其间分别被基底剥离断层和盖层剥离断层分割。本文重点论述了变质核杂岩的组成、空间展布、结构构造和典型的构造样式,并分析了变质核杂岩构造的形成时代和大地构造背景。  相似文献   

7.
秦岭造山带佛坪基底杂岩的地质特征   总被引:7,自引:1,他引:7  
综合研究表明,佛坪基底杂岩是由普遍遭受多期强烈变形变质作用和混合岩化作用的变质火山-沉积岩系和中酸性侵入岩构成的结晶杂岩系,结晶杂岩的形成年龄为22-18亿年,受强烈构造热事件改造的年龄为2亿年左右;佛坪基底杂岩经历了基底杂岩形成时期,主造山期和主造山期后3个不同演化时期的构造变形的叠加,改造,主造山期最主要的变形是在早期盖层沿其与基底的界面发生逆冲推覆构造的基础上发生热穹窿叠加变形。  相似文献   

8.
黄栗树地区位于张八岭超高压变质带东侧 ,该区变形构造可以划分为基底韧性变形带、韧脆性构造片岩带和流变褶皱带。流变褶皱构造发育于黄 (栗树 )—破 (凉亭 )断裂以东的震旦系和下古生界盖层岩系中 ,自北西向南东依次表现为翻转褶皱、平卧褶皱和倒转褶皱 ;流变褶皱与基底韧性—韧脆性变形呈渐变关系 ,并且与基底韧性—韧脆性变形具有一致的变形运动学和动力学特征 ,反映了扬子地块与华北地块碰撞造山期及折返过程的构造变形特点。  相似文献   

9.
洪镇变质核杂岩及其成矿意义   总被引:8,自引:1,他引:8  
位于长江中下游地洼区中的洪镇地区出露了变形变质的元古界结晶基底,并伴有主动侵位的燕山期花岗岩。在结晶基底与侏罗系至第三系基本没有变形变质的“稳定盖层”之间的“活动盖层”中可划分出三个滑脱剥离系,它们分别山元古界与寒武系、泥盆系与石炭系、中三叠统月山组与铜头尖组三个主剥离断层及其上盘相关的正断层系组成。本区包括变质杂岩核、基底剥离断层、“活动盖层”和“稳定盖层”的构造组合。具有不同于科迪勒拉型变质核杂岩的结构特征,称之为陆内伸展型变质核杂岩。它表现出上地幔隆升和中,上地壳多层次拆离、减薄,并控制了燕山期中酸性岩浆岩体的侵位方式和层状多金属矿床的分布、形态和成矿机理。  相似文献   

10.
淮北夹沟—桃山集地区推覆构造研究   总被引:1,自引:0,他引:1  
本区存在大型中生代推覆构造,所有震旦纪—古生代的沉积岩层都卷入了褶皱和断裂,构造推覆发生在较高构造部位,属脆性变形域,以台阶状逆断层和断层相关褶皱为特征。区内存在若干推覆构造,每个岩片均可分为上盘、下盘和滑动层系三部分,共查明8个滑动岩系。是一种发生在早中生代的盖层推覆,无根褶皱,也是徐宿地区最重要的控煤构造。最后对推覆构造的地球动力学机制进行了讨论。  相似文献   

11.
The Bashkirian anticlinorium of the southwestern Urals shows a much more complex structural architecture and tectonic evolution than previously known. Pre-Uralian Proterozoic extensional and compressional structures controlled significantly the Uralian tectonic convergence. A long-lasting Proterozoic rift process created extensional basement structures and a Riphean basin topography which influenced the formation of the western fold-and-thrust-belt with inversion structures during the Uralian deformation. A complete orogenic cycle during Cadomian times, including terrane accretion at the eastern margin of the East European platform, resulted in a high-level Cadomian basement complex, which controlled the onset of Uralian deformation, and resulted in intense imbrication and tectonic stacking in the subjacent footwall of the Main Uralian fault. The Uralian orogenic evolution can be subdivided into three deformation stages with differently oriented stress regimes. Tectonic convergence started in the Late Devonian with ophiolite obduction, tectonic accretion of basin and slope units and early flysch deposits (Zilair flysch). The accretionary complex prograded from the SE to the NW. Continuous NW/SE-directed convergence resulted finally in the formation of an early orogenic wedge thrusting the Cadomian basement complex onto the East European platform. The main tectonic shortening was connected with these two stages and, although not well constrained, appears to be of Late Devonian to Carboniferous age. In the Permian a final stage of E–W compression is observed throughout the SW Urals. In the west the fold-and-thrust-belt prograded to the west with reactivation of former extensional structures and minor shortening. In the east this phase was related to intense back thrusting. The East European platform was subducted beneath the Magnitogorsk magmatic arc during the Late Paleozoic collision. The thick and cold East European platform reacted as a stable rigid block which resulted in a narrow zone of intense crustal shortening, tectonic stacking and high strain at its eastern margin. Whereas the first orogenic wedge is of thick-skinned type with the involvement of crystalline basement, even the later west-directed wedge is not typically thin-skinned as the depth of the basal detachment appears below 15 km and the involvement of Archean basement can be assumed.  相似文献   

12.
The Jiaodong gold province is situated in the eastern Sino-Korean Platform within the so-calledJiaoliao Uplift. The basement rocks are Archaean and Proterozoic metamorphic rocks. Mesozoic sedimentary andvolcanic cover occur within extensional basins. Intrusive rocks are dominated by Mesozoic granitoid, with interme-diate-acid and basic dyke swarms. The structures form an E-W-trending anticlinorium in the basement complex, andlarge-scale NE-SW-and NNE-SSW-trending fault zones of Mesozoic age. The gold mineralization is associated withthe Mesozoic faults and related secondary fractures in the granites or granite-basement contacts. The mineralizationtypes are quartz-vein type and wall-rock alteration type. Wall-rock alteration is very well developed around the orezones. Alteration minerals include quartz, sericite (and fuchsite), pyrite, calcite, chlorite, hematite, rutile and graph-ite. The ore assemblage is uniform in all deposits, including pyrite, chalcopyrite, galena, sphalerite, arsenopyrite,pyrrhotite, gold, electrum, hessite, petzite, magnetite, molybdenite, tetrahedrite and wolframite. Mesozoic collisionand subduction between the South China and North China continental blocks contributed to formation of the Meso-zoic granitoid intrusions. The granitic magma is considered to be derived from partial melting of the crust throughunderplating processes. Gold was remobilised from basement rocks and deposited in fracture zones by the high-temperature fluids associated with these processes.  相似文献   

13.
14.
鲁东晚中生代热隆-伸展构造及其动力学背景   总被引:2,自引:0,他引:2  
为理清山东省鲁东地区晚中生代构造-岩浆-成矿的关系及其发生的动力学背景,本文综合分析了晚中生代侵入岩的空间分布、组合特征、成因类型、形成时代和序列、地球化学演化及形成的构造环境等。研究表明:该区侵入岩由侏罗纪陆壳重熔型花岗岩、白垩纪壳幔混合型花岗岩、白垩纪深源花岗岩和白垩纪脉岩组成,并且从早期到晚期,侵入岩的岩石化学成分由高钾钙碱性系列向橄榄安粗岩系列演化,微量元素由高Ba、Sr花岗岩向低Ba、Sr花岗岩演化,稀土元素由无或弱正铕异常向显著负铕异常演化,岩浆岩成因由S型向I型、A型演化。强烈的岩浆活动和复杂的岩浆岩类型指示了剧烈的壳幔相互作用过程,认为鲁东地区在早白垩世处于强烈的拉张构造环境,其在140~110 Ma期间大规模岩浆活动的同时发生了强烈的地壳隆升事件。通过对断陷盆地、火山活动、变质核杂岩和断层系统的类型、性质、控制因素等进行综合分析,提出它们是大规模伸展构造的表现形式,伸展构造的活动时间为130~98 Ma。进一步分析表明,鲁东地区的白垩纪构造-岩浆组合构成了热隆-伸展构造,它们是太平洋板块俯冲与燕山运动主变形时期(岩石圈增厚)后续效应的产物,岩石圈拆沉、地壳减薄和克拉通破坏是引起早白垩世热隆-伸展构造的根本原因,热隆-伸展构造为胶东大规模成矿提供了有利条件。  相似文献   

15.
黄亮  王冬兵  王晓林  刘小春  丛峰  朱勋早  方雄 《地球科学》2021,46(11):3861-3879
滇西崇山变质杂岩带位于三江造山带"峰腰"的北段,带内构造挤压变质作用强烈,主体由一套中-深变质岩系(崇山岩群)和晚期花岗岩组成.其中崇山岩群历来被认为是元古代的结晶基底,但至今无精确的年龄依据,其形成时代和构造属性存在较大争议,严重制约了对区域构造演化的认识.对滇西漕涧地区崇山岩群中的岩石组分开展了碎屑锆石U-Pb年代学及岩石地球化学研究,结果显示副变质岩中的锆石均具明显的磨圆特征和较大的岩浆核,其中3件样品的最小一组碎屑锆石年龄分别为366~412 Ma(平均值为395 Ma)、435~508 Ma(平均值为473 Ma)和673~704 Ma(平均值为689 Ma),指示了其原始沉积时代应不早于395 Ma;岩石地球化学表明,副变质岩是一套活动大陆边缘或被动大陆边缘构造背景有关的大陆岛弧碎屑岩,变质基性岩和变质中性岩为同源异相,均具活动大陆边缘的弧火山岩特征.结合副变质岩和两类正变质岩的构造属性相同以及普遍具相互伴生关系的特点,该3类岩石应属同一套地层系统的不同物质组分,崇山岩群主体为一套成岩于晚古生代(236~395 Ma)和形成于陆缘弧环境的火山-沉积地层单元;并与南东侧澜沧增生杂岩的志留纪弧火山岩组合成原-古特提斯洋盆东侧不同时代多岛弧的构造格局.综合研究认为,崇山变质杂岩带内的中-深变质岩系(崇山岩群)不(全)是前人认为的元古代结晶基底建造,应为原-古特提斯洋盆向东俯冲在兰坪-思茅地块西缘形成的一套火山-沉积地层系统;崇山岩群主要由年轻的(晚古生代)地层岩石组成,由于后期遭受中生代和新生代变质变形作用后形成了现今所见的"古老"岩石面貌的中-深变质系.   相似文献   

16.
In the northeastern corner of Sicily (Peloritani Mountains) thin bodies of hercynian crystalline basement, covered by Meso-Cenozoic veneers of sedimentary rocks, represent the highest and innermost Africa-vergent group of thrust units of the Sicilian Belt. The Peloritani tectonic edifice consists of a set of prevalently middle- to high-grade crystalline rocks (so-called Fondachelli Unit, Mandanici Unit and Aspromonte Unit) and thrusts over a thin tectonic wedge made of prevalently Mesozoic to Tertiary sedimentary covers overlying pre-Triassic low-grade metamorphic rocks (Longi-Taormina Unit). The tectonic bodies of the Peloritani thrust system are overlain by thick clastic sequences of late Oligoceneearly Miocene age (the so-called Stilo-Capo d'Orlando Formation). Previous work has pointed out the 'molassic' character of these clastic sequences, which postdate the main deformation phase of the Peloritani belt, started during Oligocene time. New structural data on the crystalline and sedimentary terrains, sedimentological analysis of the outcropping Oligo-Miocene foreland clastic deposits and their geometric relationships with the substrate, make it possible to recognize the syn-tectonic character and the timing of deformation of these basin-fill deposits, which are expressed by prograding clastic fans in the active margin of a foreland-foredeep system. This system has progressively been involved in the accretion of the Sicilian Belt and migration during the early Miocene towards the more external areas represented by the Sicilide sector. Seen in this light, three different lithological units have been distinguished to prdvide a framework for a review of the palaeotectonic significance of the overall Oligo-Miocene terrigenous covers of the Peloritani Thrust belt  相似文献   

17.
鲁西地块的断裂构造有两类不同分布型式:一类呈放射状分布, 由陡倾、基底右行韧性剪切带和盖层内复杂力学性质的断裂组成; 另一类呈环绕地块基底核部同心环状分布, 由3个主要盖层伸展拆离带组成, 主滑脱面分别位于古生界盖层与基底间的不整合面、石炭系与奥陶系之间的平行不整合面和中新生代断陷-沉积岩系与新生代火山-沉积物之间的断层。中生代构造变形样式可以分为3个层次:印支期褶皱-逆冲推覆构造、燕山中期NNE轴向的隔槽式箱状褶皱和燕山晚期NW、NNE向共轭正断-走滑断裂。相应地鲁西地块经历了3个成盆期, 即早-中侏罗世、早白垩世和晚白垩世, 这些中生代盆地在空间上的叠置导致了地块内部复杂的盆-山耦合关系。鲁西地块中生代有两个岩浆活动集中时期, 即早侏罗世(约190Ma)和早白垩世(132~110Ma)。综合沉积记录、岩浆活动和构造变形过程, 将鲁西地块中生代构造演化历史划分为6个阶段:晚三叠世挤压变形, 早、中侏罗世弱伸展作用, 中、晚侏罗世挤压变形与地壳增厚作用, 早白垩世大陆裂谷与地壳伸展作用, 早白垩世末期挤压变形与盆地反转事件和晚白垩世区域隆升。这些构造演化阶段和构造事件对研究和理解中生代构造体制和深部岩石圈动力学转换过程具有重要意义。   相似文献   

18.
The eastern margin of the East European Craton (EEC) has a long lasting geological record of Precambrian age. Archaean and Proterozoic strata are exposed in the western fold-and-thrust belt of the Uralides and are known from drill cores and geophysical data below the Palaeozoic cover in the Uralides and its western foredeep. In the southern Uralides, sedimentary, metamorphic and magmatic rocks of Riphean and Vendian age occur in the Bashkirian Mega-anticlinorium (BMA) and the Beloretzk Terrane. In the eastern part of the BMA (Yamantau anticlinorium) and the Beloretzk Terrane, K-Ar ages of the <2-µm-size fraction of phyllites (potassic white mica) and slates (illite) give evidence for a complex pre-Uralian metamorphic and deformational history of the Precambrian basement at the southeastern margin of the EEC. Interpretation of the K-Ar ages considered the variation of secondary foliation and the diagenetic to metamorphic grade. In the Yamantau anticlinorium, the greenschist-facies metamorphism of the Mesoproterozoic siliciclastic rocks is of Early Neoproterozoic origin (about 970 Ma) and the S1 cleavage formation of Late Neoproterozoic (about 550 Ma). The second wide-spaced cleavage is of Uralian origin. In the central and western part of the BMA, the diagenetic to incipient metamorphic grade developed in Late Neoproterozoic time. In post-Uralian time, Proterozoic siliciclastic rocks with a cleavage of Uralian age have not been exhumed to the surface of the BMA. Late Neoproterozoic thrusts and faults within the eastern margin of the EEC are reactivated during the Uralian deformation.  相似文献   

19.
The abandoned As–Au–Ag mining district Rotgülden is located within the eastern Tauern window of the Eastern Alps and was reinvestigated in order to evaluate ore deposition during Alpine/late orogenic tectonic processes. Four major ore types have been recognized: (1) quartz-sulfide veins within Variscan basement rocks; (2) deformed metamorphic massive ores within fold hinge zones (“saddle reefs”) of Permian to Mesozoic cover sequences; (3) ores in tension gashes of the cover sequence; and (4) irregular replacement ore bodies in marbles of the cover sequence. Ore deposition was intimately related to late orogenic exhumation by stretching of footwall sequences within the Tauern metamorphic core complex during late Oligocene and Neogene. Hydrothermal systems developed and metals from apparently distinct sources were deposited under decreasing temperature conditions. Lead is distinctly radiogenic and resembles the lead in Au-quartz veins of the Mesozoic cover sequence of the Hohe Tauern. Received: 24 January 1996 / Accepted: 24 July 1997  相似文献   

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