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1.
论文通过宏-微观构造、磁组构、热液锆石和石英EBSD组构等,厘定鹰扬关韧性剪切带并讨论其构造意义。鹰扬关韧性剪切带具有宏-微观韧性变形组构,发育糜棱岩、拉伸线理、S-C组构、旋转碎斑系、书斜构造、压力影和石英的动态重结晶等。磁组构和宏-微观构造表明,鹰扬关韧性剪切带呈NNE向延伸超过40 km,宽2.5~8 km。糜棱C面理的极密点产状127°∠50°;磁面理的极密点产状107°∠83°。宏-微观构造研究表明,鹰扬关韧性剪切带具有早期左旋逆冲剪切,晚期右旋正滑剪切的运动学性质。石英EBSD组构表明,鹰扬关韧性剪切带具有晚期中低温变形(400~550℃)叠加于早期中高温变形(550~650℃)的特征。年代学研究表明,鹰扬关韧性剪切带早期左旋逆冲剪切的时代为(441.1±2.3)Ma,晚期右旋正滑剪切的时代应晚于420 Ma,区域构造应力由挤压转为伸展的时限为420 Ma。在磁组构、石英EBSD组构和热液锆石定年的基础上,结合区域地质资料,认为鹰扬关韧性剪切带形成于华夏陆块自SE向扬子陆块造山挤压的构造背景。早期造山挤压,产生压扁型应变和中高温左旋逆冲剪切;晚期造山后伸展,产生拉伸型应变和...  相似文献   

2.
新疆东天山地区塔水河韧性剪切带特征   总被引:1,自引:0,他引:1  
通过野外宏观构造及室内显微变形构造研究,认为该剪切带广泛发育变形岩石的各种脆韧性变形组构,显微变形构造发育,形成了塔水河韧性剪切带的典型特征及丰富的剪切指向标志。韧性剪切变形强烈,至少存在两期变形,第一期为晚奥陶世末南北向的挤压产生由南向北的逆冲推覆右旋剪切,第二期变形为石炭纪花岗岩带在上侵时受到剪切力作用而产生隆升滑脱左旋走滑变形。变形时代为晚奥陶世末和晚石炭世末,两期剪切总位移量分别为2.2km和2.46km,古差异应力值为82MPa和89MPa。  相似文献   

3.
新元古代江南造山带远离晚中生代活动大陆边缘,是研究华南地区新元古代至早中生代多期造山作用的理想对象。文章通过对江南造山带东段沉积建造、岩浆活动、构造变形以及同位素年代学数据的综合分析,总结了其晋宁期、广西期以及印支期造山作用的特征。江南造山带东段在晋宁期经历了南北两侧大洋俯冲和两期碰撞造山作用。新元古代早期(880~860 Ma)双溪坞岛弧与扬子陆块东南缘发生弧-陆碰撞作用,形成淡色花岗岩、高压蓝片岩、NNE向褶皱-逆冲构造以及弧后前陆盆地。新元古代中期(约850 Ma),扬子陆块北缘开始发育由北向南的大洋俯冲。随着俯冲作用的进行,弧后盆地发生关闭,扬子陆块与华夏陆块发生陆-陆碰撞并形成新元古代(820~810Ma)江南造山带,导致近E-W走向褶皱-逆冲构造、韧性变形以及过铝质花岗岩的发育。江南造山带东段在约810Ma开始发生后造山垮塌和裂谷作用,以发育南华纪早期(805~750 Ma)花岗岩、中酸性火山岩、基性岩以及裂谷盆地为特征。江南造山带东段万载—南昌—景德镇—歙县断裂带以南地区卷入了华南广西期造山作用,发育近E-W走向由南向北的逆冲构造(465~450 Ma)、NNE向正花状构造(449~430 Ma)以及后造山近E-W走向韧性走滑剪切带(429~380 Ma)。印支期造山作用导致了NNE向褶皱-逆冲构造和花岗岩的发育,并奠定了江南造山带东段的基本构造面貌。  相似文献   

4.
在五台山早前寒武纪碰撞造山带中存在的两种类型韧性剪切带,即逆冲型和伸展型剪切带。除变质程度不同外,南部和北部构造片体中的角闪岩相逆冲型韧性剪切带与中部构造片体中的绿片岩相逆冲型韧性剪切带具有相同的变形特征,它们形成于同一变形过程,是造山作用早期地壳拼合阶段的产物。伸展型韧性剪切带在整个造山带都有分布,与造山作用晚期显著增厚的地壳发生大规模纵向伸展作用相联系。  相似文献   

5.
夏元  陈家驹  徐先兵 《地质论评》2022,68(2):2022030025-2022030025
北北东向鹰扬关构造带位于华南板块西南部,其大地构造属性尚存在蛇绿混杂岩、裂谷带与陆内构造变形带之争。笔者等在物质组成与年代学综述的基础之上开展了详细的构造解析,厘定了鹰扬关构造带的大地构造属性和构造演化过程。鹰扬关构造带主体由新元古代中—晚期岛弧型安山岩和玄武岩、裂谷型双峰式火山岩、盖帽碳酸盐岩与泥砂岩等物质组成。不同时代和不同岩性的混杂是新元古代晚期裂谷和伸展构造背景下重力作用的产物。新元古代沉积混杂岩在显生宙经历了广西期、印支晚期与燕山期造山作用的叠加,导致了不同岩块之间往往呈断层接触。广西期(450~415 Ma)造山作用使新元古代沉积混杂岩发育近E—W向紧闭褶皱和逆断层并被花岗岩侵位。印支晚期(227~220 Ma)造山作用导致NNE向鹰扬关构造带的形成,表现为NNE—SSW向褶皱、逆断层与左旋韧性剪切带。燕山期造山作用使鹰扬关构造带中NNE—SSW向断裂发生构造活化,强烈的正断作用和右行走滑控制了白垩纪上叠盆地的发育。综合物质组成、年代学和构造解析证据,鹰扬关构造带不是新元古代或早古生代蛇绿混杂岩,而是印支晚期陆内构造变形带,不具有板块缝合带的大地构造属性。  相似文献   

6.
夏元  陈家驹  徐先兵 《地质论评》2022,68(6):2006-2020
北北东向鹰扬关构造带位于华南板块西南部,其大地构造属性尚存在蛇绿混杂岩、裂谷带与陆内构造变形带之争。笔者等在物质组成与年代学综述的基础之上开展了详细的构造解析,厘定了鹰扬关构造带的大地构造属性和构造演化过程。鹰扬关构造带主体由新元古代中—晚期岛弧型安山岩和玄武岩、裂谷型双峰式火山岩、盖帽碳酸盐岩与泥砂岩等物质组成。不同时代和不同岩性的混杂是新元古代晚期裂谷和伸展构造背景下重力作用的产物。新元古代沉积混杂岩在显生宙经历了广西期、印支晚期与燕山期造山作用的叠加,导致了不同岩块之间往往呈断层接触。广西期(450~415 Ma)造山作用使新元古代沉积混杂岩发育近E—W向紧闭褶皱和逆断层并被花岗岩侵位。印支晚期(227~220 Ma)造山作用导致NNE向鹰扬关构造带的形成,表现为NNE—SSW向褶皱、逆断层与左旋韧性剪切带。燕山期造山作用使鹰扬关构造带中NNE—SSW向断裂发生构造活化,强烈的正断作用和右行走滑控制了白垩纪上叠盆地的发育。综合物质组成、年代学和构造解析证据,鹰扬关构造带不是新元古代或早古生代蛇绿混杂岩,而是印支晚期陆内构造变形带,不具有板块缝合带的大地构造属性。  相似文献   

7.
中天山东部南北两缘韧性剪切带变形特征   总被引:2,自引:0,他引:2       下载免费PDF全文
(1)中天山北缘韧性剪切带除右旋韧剪变形之外,还发育相对较弱的左旋韧剪变形,局部残留加里东晚期的逆冲推覆韧剪变形;右旋韧剪变形的变形温度环境为中-低温,左旋韧剪变形的变形温度环境为高温、中温、中低温及低温。(2)中天山南缘韧性剪切带以右旋韧剪变形为主,兼具左旋韧剪变形;右旋韧剪变形的变形温度环境为中温、中低温、低温,左旋韧剪变形的变形温度环境为高温、中温、中低温及低温。(3)东天山存在一系列右旋韧性剪切带,中天山南北两缘韧性剪切带的构造变形与辛格尔断裂、兴地断裂等右旋韧性剪切带的变形以及塔里木北缘东部晚震旦—早古生代地层的同劈理褶皱变形、南天山泥盆纪地层的变形可能具成因联系。  相似文献   

8.
在五台山早前寒武纪碰撞造山带中存在两种类型韧性剪切带,即逆冲型和伸展型剪切带。除变质程度不同外,南部和北部构造片体中的角闪岩相逆冲型韧性剪切带与中部构造片体中的绿片岩相逆冲型韧性剪切带具有相同的变形特征,它们形成于同一变形过程中,是造山作用早期地壳拼合阶段的产物。伸展型韧性剪切带在整个造山带都有分布,与造山作用晚期显著增厚的地壳发生大规模纵向伸展作用相联系  相似文献   

9.
东秦岭鮸鱼咀韧性剪切带是秦岭造山带晚古生代构造带武关杂岩和刘岭群的分界线,其变形作用的研究对揭示秦岭造山带晚古生代的构造演化具有重要意义.本文对这条剪切带进行了详细的几何学、运动学、锆石U-Pb和白云母40Ar/39Ar年代学研究.几何学和运动学指示鮸鱼咀韧性剪切带经历了两期主要的构造变形:早期由北向南的逆冲推覆变形和晚期左行走滑剪切变形.锆石U-Pb年代学研究表明构成剪切带主体的长英质糜棱岩中碎屑锆石主要的峰值年龄为448 Ma,最年轻的峰值年龄为390 Ma,其碎屑物质来源为北秦岭构造带,因此其原岩应该为一套沉积岩.眼球状白云母40Ar/39Ar同位素测年获得的坪年龄为(263±2)Ma.结合前人的变质变形年代学数据,认为早期的逆冲推覆与石炭纪大洋俯冲有关,晚期左行走滑是秦岭造山带晚二叠世"软碰撞"的构造响应.  相似文献   

10.
云南雪龙山韧性剪切带研究新进展   总被引:2,自引:0,他引:2       下载免费PDF全文
雪龙山变质带,变质级别达高绿片岩相到低角闪岩相,在区域上为一条韧性剪切带,具逆冲兼左行走滑的特点。左行走滑位移量达9.4km。流体包裹体研究表明,在韧性剪切阶段,属降温的退变质作用;构造地球化学研究表明,韧性剪切作用对元素的迁移和富集有较大影响,因此,对构造变形带中元素迁移富集规律的研究,对于探明矿床形成和指导找矿具有重要的理论意义和实际意义。  相似文献   

11.
东亚原特提斯洋(Ⅲ):北秦岭韧性剪切带构造特征   总被引:4,自引:4,他引:0  
北秦岭造山带位于华北陆块与南秦岭微陆块的衔接部位,是研究原特提斯洋构造演化的关键区域之一。北秦岭造山带内主要发育四条韧性剪切带,包括位于边界处的洛南-栾川剪切带和商丹剪切带,及其内部的官坡-乔端剪切带和朱阳关-夏馆剪切带。通过详细的野外构造解析、显微构造分析和石英EBSD组构分析,获得了四条主要剪切带的活动特征,认为(1)在早古生代华北陆块与北秦岭微陆块拼合后的折返过程中,洛南-栾川、官坡-乔端和朱阳关-夏馆剪切带开始了初始的剪切活动;(2)~380Ma之后,华北、华南陆块在向北漂移过程中逐渐由近东西向展布转换为近南北向展布,导致洛南-栾川和商丹剪切带表现为明显的右行剪切;(3)~320Ma时,华北陆块和南秦岭微陆块之间的剪刀式拼合导致洛南-栾川剪切带表现为右行剪切,商丹剪切带表现为左行剪切,而官坡-乔端和朱阳关-夏馆剪切带在陆块内部不同构造单元的协调作用下分别表现为左行剪切和右行剪切。  相似文献   

12.
吴凤萍  张维杰  王伟 《新疆地质》2012,30(2):216-220
塔木素地区NNE向韧性剪切带位于塔里木板块东缘与华北板块西北缘板块碰撞拼接边界,呈NNE向展布,长约9 km,宽150~2 500 m。褶皱的糜棱面理、拉伸线理、旋转残斑、书斜构造、"云母鱼"等构造均指示其为右行逆冲走滑剪切。形成温度为300℃~500℃,围压为250~400 MPa,变形变质作用相当于绿片岩相,差应力(σ)为93.7~116.5 MPa。应变速率(ε)为10-17 s-1(300℃)和10-13 s-1(500℃)。主体变形时间在(256.0±1.3)Ma之后,三叠纪之前,为华力西(海西)运动末期产物。  相似文献   

13.
The nearly E-W-trending Aqqikkudug-Weiya zone, more than 1000 km long and about 30 km wide, is an important segment in the Central Asian tectonic framework. It is distributed along the northern margin of the Central Tianshan belt in Xinjiang, NW China and is composed of mylonitized Early Palaeozoic greywacke, volcanic rocks, ophiolitic blocks as a mélange complex, HP/LT-type bleuschist blocks and mylonitized Neoproterozoic schist, gneiss and orthogneiss. Nearly vertical mylonitic foliation and sub-horizontal stretching lineation define its strike-slip feature; various kinematic indicators, such as asymmetric folds, non-coaxial asymmetric macro- to micro-structures and C-axis fabrics of quartz grains of mylonites, suggest that it is a dextral strike-slip ductile shear zone oriented in a nearly E-W direction characterized by "flower" strusture with thrusting or extruding across the zone toward the two sides and upright folds with gently plunging hinges. The Aqqikkudug-Weiya zone experienced at least two stages of ductile shear tectonic evolution: Early Palaeozoic north vergent thrusting ductile shear and Late Carboniferous-Early Permian strike-slip deformation. The strike-slip ductile shear likely took place during Late Palaeozoic time, dated at 269(5 Ma by the40Ar/39Ar analysis on neo-muscovites. The strike-slip deformation was followed by the Hercynian violent S-type granitic magmatism. Geodynamical analysis suggests that the large-scale dextral strike-slip ductile shearing is likely the result of intracontinental adjustment deformation after the collision of the Siberian continental plate towards the northern margin of the Tarim continental plate during the Late Carboniferous. The Himalayan tectonism locally deformed the zone, marked by final uplift, brittle layer-slip and step-type thrust faults, transcurrent faults and E-W-elongated Mesozoic-Cenozoic basins.  相似文献   

14.
中国阿尔泰造山带南缘额尔齐斯断裂带的构造变形及意义   总被引:6,自引:4,他引:2  
刘飞  王镇远  林伟  陈科  姜琳  王清晨 《岩石学报》2013,29(5):1811-1824
额尔齐斯断裂是中亚造山带中的一条重要深大断裂,对于额尔齐斯断裂运动性质一直有着走滑断层、逆冲断层和压扭性断层等不同看法.本文在中国阿尔泰造山带南缘开展了详细的构造地质学工作,研究结果表明,额尔齐斯断裂及其次级断裂组成额尔齐斯断裂带.额尔齐斯断裂带在中国境内是一条宽约20 ~ 40km,长约400km,经受不同程度构造作用的强应变带,剪切作用影响范围遍布整个中国阿尔泰造山带南缘.额尔齐斯断裂带经历了左行走滑和右行走滑两个阶段.结合前人有关韧性剪切带成因型金矿、同构造岩体侵位与变形关系及对变质岩石40Ar/39Ar年代学研究,本文认为额尔齐斯断裂带的左行走滑构造形成于早二叠世(283~275Ma).早二叠世之后,额尔齐斯断裂带叠加了右行走滑事件,其活动时限可能为晚二叠世(260 ~ 245 Ma),其规模远远小于前期的左行走滑构造.额尔齐斯断裂带走滑活动性质的确定,为二叠纪北疆及整个中亚造山带造山后调整过程中不同的构造方式提供了佐证.  相似文献   

15.
郯庐断裂带肥东段早白垩世中期走滑运动的年代学证据   总被引:3,自引:0,他引:3  
郯庐断裂带肥东段西韦地区和桃花源地区出露了大规模的北北东向韧性剪切带。桃花源地区韧性剪切带显示出2期构造变形的叠加。野外构造和显微构造分析皆指示为左行走滑韧性剪切带。糜棱岩中石英与长石的变形行为指示其变形温度分别为400~450℃和500℃。通过对这两处走滑剪切带内糜棱岩化花岗岩脉的锆石LA-ICP-MS定年,获得了3个样品的侵位年龄分别为(133.2±1.9)Ma,(131.3±2.0)Ma,(130.3±2.0)Ma。再结合已有的研究成果,认为在128~124Ma(早白垩世中期)郯庐断裂带发生过左行走滑活动。综合分析表明,郯庐断裂带在晚侏罗世和早白垩世中期分别经历了2期左行走滑活动,而期间和之后的早白垩世则处于伸展活动之中。伸展活动持续较长,控制发育了西侧的合肥盆地及断裂带内一系列岩浆活动;而区域挤压背景下出现的走滑活动则相对短暂。这些演化规律显示该断裂带在晚侏罗世—早白垩世呈现为交替式的走滑和伸展活动。新发现的早白垩世中期走滑活动,与太平洋区伊泽纳崎板块板块运动方向的调整相对应,是大洋板块运动方向短暂调整的构造响应。  相似文献   

16.
《International Geology Review》2012,54(10):1276-1294
The North Dabashan thrust belt, which is located in South Qinling, is bounded by the Ankang fault on the north and the Chengkou–Fangxian fault on the south. The North Dabashan thrust belt experienced multiple stages of structural deformation that were controlled by three palaeostress fields. The first structural event (Middle Triassic) involved NNW–SSE shortening and resulted in the formation of numerous dextral strike-slip structures along the entire Chengkou–Fangxian fault zone and within the North Dabashan thrust belt, which suggests that the South China Block moved to the NW and was obliquely subducted under the North China Block. The second structural event (Late Triassic–Early Jurassic) involved NE–SW shortening that formed NW–SE-trending structures in the North Dabashan thrust belt. The third structural event (Late Jurassic–Early Cretaceous) involved ENE–WSW or nearly E–W shortening and resulted in additional thrusting of the North Dabashan thrust belt to the WSW and formation of the WSW-convex Chengkou–Fangxian fault zone, which has an oroclinal shape. Owing to the pinning of the Hannan massif and Shennongjia massif culminations, numerous sinistral strike-slip structures developed along the eastern Chengkou–Fangxian fault zone and were superimposed over the early dextral strike-slip structures.  相似文献   

17.
与时俱进,发展中国大地构造学   总被引:38,自引:1,他引:38  
郯庐断裂带的起源时间与型式仍然存在着很大的分歧。最近在大别山东缘早白垩世左旋走滑韧性剪切带中 ,发现了早期左旋走滑韧性剪切带。其中三处早期糜棱岩中白云母分别给出了( 188.7± 0 .7)Ma、( 189.7± 0 .6 )Ma、( 192 .5± 0 .7)Ma的40 Ar/ 3 9Ar坪年龄 ,指示了同造山走滑热事件。前陆沉积与变形构造也表明该断裂带在华北与华南板块碰撞中就发生了活动。郯庐断裂带内的造山期构造及旁侧的前陆沉积与变形构造特征 ,指示断裂带同造山运动为转换断层型式 ,并将大别—苏鲁造山带左行错移了约 35 0km ,同时苏鲁造山带发生逆时针旋转。在早白垩世滨太平洋构造活动中 ,该断裂进一步向北延伸 ,发生了约 2 0 0km的左行平移。因而 ,该断裂带起源于华北与华南板块的碰撞之中 ,其同造山运动与这两大板块的碰撞过程相伴生  相似文献   

18.
ABSTRACT In Central Asia, thrusts and shear zones resulting from Palaeozoic accretional events were reworked by E–W-trending ductile strike-slip faults during late Palaeozoic–early Mesozoic time. In the Tianshan range, microstructures and quartz C-axis fabrics show a main dextral shearing associated with sinistral localized shear zones. The relationship between these conjugate structures indicates a NNW–SSE-trending bulk shortening. In the Chinese Altay mountains, the existence of δ-type microstructures in an important sinistral mylonitic zone infers high rates of deformation. This shear zone is bordered by a late dextral ductile fault synchronous with a granite emplacement. Field evidence and datings from the literature provide chronological constraints. In the late Carboniferous, the sinistral mylonitic deformation took place in the Erqishi–Irtysh shear zone in the northeastern part of Xinjiang and in Kazakhstan. During the Early Permian, a regional dextral event occurred in the Tianshan range and under the whole of northern Xinjiang.  相似文献   

19.
In orogenic belts, a basal décollement zone often develops at depth to accommodate the shortening due to folding and thrusting of the sedimentary cover. In the Early Mesozoic intracontinental Xuefengshan Belt of South China, such a décollement zone is exposed in the core of anticlines formed by the emplacement of the late-orogenic granitic plutons. Our detailed, multi-scale structural analysis documents a synmetamorphic ductile deformation. In the basal décollement, the Neoproterozoic pelite and sandstone, and the intruding Early Paleozoic granites were deformed and metamorphosed into mylonites and orthogneiss, respectively. The metamorphic foliation contains a NW–SE stretching lineation associated with top-to-the-NW kinematic indicators. The ductile shearing of these high-strained rocks can be correlated with NW-verging folds and thrusts recognized in the Neoproterozoic to Early Triassic sedimentary cover. Monazite U–Th–Pbtot chemical dating, and zircon SIMS U–Pb dating provide age constraints of the ductile shearing between 243 and 226?Ma, and late-orogenic granite emplacement around 235–215?Ma. In agreement with recent geochronological data, these new results show that the Xuefengshan Belt is an Early Mesozoic orogen dominated by the NW-directed shearing and thrusting. At the southeastern boundary of the Xuefengshan Belt, the Chenzhou-Linwu fault separates the Early Mesozoic domain to the NW from the Early Paleozoic domain to the SE. The tectonic architecture of this belt was possibly originated from the continental underthrusting to the SE of the South China block in response to northwest-directed subduction of the Paleo-Pacific plate.  相似文献   

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