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1.
基于花岗岩侵入、构造变形和磨拉石建造(或长期隆起)提出川南—滇东和中扬子地区侏罗-白垩纪时发生造山事件。分析了造山带的内部结构、范围和动力机制,发现川南—滇东褶皱-冲断系为北东向及近南北向断裂控制发育,其西以滇中古陆块与燕山期消减型造山带相隔;中扬子褶皱-冲断系为北西向断裂控制发育,向南西扩展时止于黄陵古陆核。两者均属印支运动后出现的中国—东南亚次大陆外侧的新特提斯洋消减,及嗣后的碰撞激活拼合大陆内的古深断裂活化而发生的燕山期陆内造山运动,构成中国大地构造演化的一个显著特色。  相似文献   

2.
哀牢山造山带构造演化   总被引:11,自引:0,他引:11  
哀牢山造山带造山活动始于晚二叠世的扬子陆块被动边缘的裂谷环境,经过印支及喜马拉雅期两次造山作用,形成了四个构造世代的叠加构造变形。这些不同时期的构造共生组合,既表现出陆内造山带垂向上不同构造层次构造环境的流变学特征,又反映了造山物质从表部下冲到地壳深处,又折返地表的复杂经历。清晰地刻划出哀牢山造山带的所经历的陆内俯冲、主期碰撞造山及后期卷入喜马拉雅造山活动的发展过程。  相似文献   

3.
大巴山晚中生代陆内造山构造应力场   总被引:3,自引:0,他引:3  
位于中上扬子板块北缘的大巴山造山带, 平面上表现为大尺度向南西显著突出的弧形带, 无论在变形样式和形成时间上都明显与秦岭造山带不同。在大巴山构造格架划分和野外构造变形观测基础上, 通过构造解析, 结合年代学研究成果, 重建了大巴山晚中生代独特的构造应力场, 指出大巴山属陆内造山, 形成于J2末, 并持续到K2初期。其构造应力场特征, 以城口-房县断裂为界, 大巴山逆冲推覆带与其前陆冲断褶皱带的特征显著不同。大巴山逆冲推覆带主要表现为NE-SW向构造挤压, 而在大巴山弧形前陆带从西向东, 由近E-W向挤压, 转变为NE-SW向挤压, 最后转变为近S-N向挤压, 构成一向其外缘扩散的放射状构造应力场。总之, 大巴山造山带由推覆体向前陆, 构造挤压作用由北东向南西方向扩散。这期构造挤压作用控制了大巴山造山带陆内变形活动, 导致大巴山由北东向南西的显著缩短, 同时受到其东西两侧基底隆起——神农架-黄陵地块与汉南地块的强烈阻挡, 造就了现今的大巴山前陆弧型构造。其动力学背景可归因于晚中生代东亚板块多向汇聚。大巴山晚中生代陆内造山构造应力场的研究, 对探讨秦岭造山带动力学特征具有科学意义, 为研究川东北油气运聚规律提供了构造地质学依据。  相似文献   

4.
武夷山造山带及其成矿作用   总被引:6,自引:0,他引:6  
梅勇文 《江西地质》1998,12(2):109-115
武夷造山带是加里东期和印支—燕山期形成的复合造山带。加里东造山带的结构比较分明,印支—燕山期陆内造山在北西—南东方向挤压兼左旋扭动和径向挤压的“双向”大陆动力制约下,形成了以北北东、北东向多字型构造与纬向构造相复合的控岩、控矿格局,它是中国东南部一条重要的火山—斑岩银铅锌、铜金、锡钨成矿带,又是找寻花岗岩—剪切带型金矿的有利地带。  相似文献   

5.
龙门山中段中生代前陆盆地的构造演化史   总被引:7,自引:0,他引:7  
依据龙门山中段中生代盆地的基底性质,沉积构造组合和构造变形,论证了川西拗陷是组合和构造变形,论证了川西拗陷是在印支期发育于扬子板块活动大陆边缘的弧背(前陆)盆地,前陆盆地的构造变形是经印支期构造变动和喜马拉雅期叠加改造形成的推覆构造,并讨论了龙门山中段中生代前陆盆地的构造演化历史。  相似文献   

6.
川西前陆盆地侏罗纪构造层序地层格架内沉积充填特征   总被引:5,自引:0,他引:5  
为了研究侏罗纪龙门山造山带与川西前陆盆地盆山关系,以侏罗系3个构造层序(TS1~TS3)体系域(BE, BW)为研究的基本单元,通过对川西前陆盆地构造层序充填特征的研究发现:龙门山造山带构造运动与沉积盆地的构造层序充填特征吻合较好,并且龙门山造山带北段,中段,南段在各期次构造活动中活动情况具有差异。TS1BE期,川西前陆盆地北部和南部地区都发育有冲积扇-扇三角洲沉积,中部地区为三角洲沉积,显示该期龙门山造山带北段和南段构造活动可能较为剧烈,中段相对较平缓。TS1BW期,川西前陆盆地北部和南部地区都以湖泊沉积为特征,仅在川西前陆盆地中部地区发育有三角洲沉积,显示本期龙门山造山带构造活动不发育,较为平稳。TS2BE期,川西前陆盆地北部和南部地区自西而东为冲积扇,三角洲—滨湖、浅湖沉积环境,中部地区为三角洲沉积,显示龙门山造山带又一次剧烈隆升,且北段和南段活动较为剧烈,中段相对较弱。TS2BW期,层序充填结构表明龙门山造山带北段和中段活动情况再次趋缓,但南段构造活动仍然较为活跃。TS3BE期,川西前陆盆地北部和南部地区发育有冲积扇沉积,中部则以三角洲-湖泊沉积为特征,显示该期龙门山造山带北段和南段都发生了较为剧烈的构造隆升运动,龙门山造山带中段,构造活动相对较为平缓。TS3BW期,龙门山造山带北段和中段构造活动减弱,南段活动持续加剧,于芦山两河口地区沉积有巨厚的冲积扇沉积物。  相似文献   

7.
通南巴背斜位于四川盆地东北部,紧邻北部米仓山和东北部大巴山两大造山带,开展通南巴背斜与不同造山带、川东北先存古隆起的时空耦合关系物理模拟研究,对于约束周缘造山带的构造变形时间和区域构造变形时序具有重要的科学意义,同时对川东北油气勘探也有指导作用.初始模型中,设计了北部推板和东北部推板分别代表米仓山和大巴山造山带的活动;下部硅胶层和上部石英砂层分别代表三叠系底部膏盐岩和上覆砂岩为主的碎屑岩;随着油气勘探的深入,川东北古生代隆起被逐渐接受,在模型底部用橡皮泥预制条带状构造代表古隆起.实验结果表明,北部推板挤压过程形成的速度场快速传递到橡皮泥(代表先存古隆起)之上的石英砂中,形成北东向的褶皱和断裂;东北部推板挤压过程形成的弧形构造带呈北西向展布,叠加在早期北东向构造上.通过梳理周缘造山带的隆升历史,并结合本次模拟实验结果,认为燕山期米仓山构造活动与古生代北东向隆起共同控制通南巴早期北东向构造的形成,燕山晚期和喜山期大巴山活动形成一系列北西向构造叠加在通南巴早期北东向构造之上,控制通南巴背斜须家河组北东向和北西向两组断裂-裂缝系统的形成.  相似文献   

8.
印支期龙门山断裂带的逆冲-推覆构造和沉积响应   总被引:1,自引:0,他引:1  
伴随着华南、华北和羌塘地块在中—晚三叠世的俯冲—碰撞,古特提斯洋逐渐消亡,在龙门山及其前陆盆地发生了广泛的构造和沉积事件,统称为印支造山运动。然而,这期重要的造山事件普遍叠加有新生代印度与欧亚板块俯冲碰撞所引起的相似的北西—南东向构造挤压作用,使得印支期的构造活动对奠定龙门山初始构造和地貌特征,乃至对新生代构造活动的深远影响难以区分。对青藏高原其他边界的研究表明,只有通过多种手段从多个角度才能认清造山带形成的真实历史,而近些年来在龙门山地区开展的深地震探测、主断裂和飞来峰定年、前陆盆地沉积序列和沉积作用以及大地热流分布的研究则为我们进一步揭示印支初期龙门山断裂带构造活动本质提供了全新的视角。深地震反射剖面和最新的定年结果揭示龙门山地区在印支期发生了大型逆冲—推覆作用,在此期间,形成了两条主要断裂带,并直至后碰撞造山时期,形成了多期次的山前飞来峰构造。龙门山断裂带在印支期的大型逆冲—推覆构造活动,引发了大量的陆源碎屑沉积物涌入到四川前陆盆地中。强烈的断裂活动还引发了区域大地震的发生,在四川盆地西缘未完全固结沉积地层中形成了软沉积物变形。综合以往的研究结果,我们认为龙门山早期的逆冲—推覆和青藏高原东缘大地热流的升高伴随有区域岩石圈底部的拆沉导致软流圈高温物质的上涌。这种早期的构造格局对龙门山断裂带在新生代构造地貌的最终形成产生了深远的影响。  相似文献   

9.
于冬冬  汤良杰  余一欣  陈茜 《现代地质》2016,30(5):1085-1095
川西和川东北地区处于扬子地台西北缘,均具有褶皱冲断带-前陆盆地的二元结构,其构造特征具一定相似性。根据地震资料解释和典型气藏解剖,再结合前人研究成果,分析了川西和川东北地区构造演化差异性及其对各自成藏特征的影响,结果表明:川西地区主要受龙门山造山带影响,从印支期中晚期开始发育前陆盆地,之后主要受燕山中晚期和喜马拉雅期构造运动的影响;而川东北地区从燕山早期开始发育前陆盆地,之后在燕山中期和晚期受大巴山、米仓山和雪峰山联合作用影响,最后大巴山造山带在喜马拉雅期的强烈活动使其最终定型。上述差异构造演化对川西和川东北地区陆相层系的成藏特征的影响主要表现在4个方面:烃源岩的发育、输导体系的形成、气藏的保存和天然气成藏过程。川西地区主要发育须家河组烃源岩,形成了以NE向和SN向断裂及其伴生裂缝为主的输导体系,多期构造运动形成的大型通天断裂影响了山前断褶带气藏的保存,成藏经历了印支晚期、燕山中期、晚期和喜马拉雅期4个关键时刻。川东北地区发育须家河组和下侏罗统两套烃源岩,输导体系以NW向断裂为主,隆升剥蚀和大型断裂造成了山前断褶带较差的保存条件,成藏经历了燕山中期、燕山晚期和喜马拉雅期三个关键时刻。  相似文献   

10.
吴晨  陈宣华  丁林 《地学前缘》2023,(3):262-281
祁连造山带位于东特提斯北缘,蛇绿混杂岩带、(超)高压变质岩和弧岩浆岩等广泛发育,是前新生代华北克拉通与柴达木古地块之间多期次俯冲、碰撞和造山形成的复合造山带。现今的祁连山是青藏高原北缘高原隆升与扩展的关键构造带,具有复杂的陆内变形构造和深部结构,记录了新生代高原生长过程中不同阶段的构造变形和盆-山演化历史。本文在区域地质研究资料的综合分析基础上,讨论祁连造山带元古宙变质基底属性、新元古代—古生代古海洋演化和中—新生代构造变形特征,探讨祁连(山)造山带的构造演化过程和陆内变形历史。祁连造山带发育新元古代早期和早古生代两期岩浆弧,分别代表了古祁连洋和(南、北)祁连洋的俯冲-碰撞事件;亲华北的基底属性指示了祁连洋实属陆缘海。新生代青藏高原东北缘发育两阶段构造变形和盆-山演化,在中新世完成了由新生代早期以逆冲断裂活动为主向走滑断裂和逆冲断裂共同作用的转变,随着东昆仑山的快速隆起将古近纪大盆地隔开成两个盆地,即现今的柴达木盆地和可可西里盆地。中新世中晚期以来,青藏高原东北缘的构造格局主要受控于东昆仑和海原两个近乎平行的大型转换挤压构造系统的发育、顺时针旋转和侧向生长。大型走滑断裂系统在造山带内的...  相似文献   

11.
南大巴前陆冲断带位于秦岭造山带向四川盆地过渡的部位,是晚三叠世扬子-秦岭俯冲碰撞与中新生代以来陆内造山形成的。根据构造变形的几何学特点,自北东向南西发育紧靠城口断层的根带、坪坝断裂与鸡鸣寺断裂之间的中带、镇巴-鸡鸣寺断裂与铁溪-巫溪隐伏断裂之间的锋带。各带发育不同的构造变形:根带的冲断层系统以逆冲叠瓦构造为主控构造组合,同时发育构造三角带、冲起构造和双重构造等组合;中带的冲断褶皱系统以发育断层相关褶皱组合为主;锋带发育为滑脱褶皱系统,以类侏罗山式褶皱为主控构造,同时发育了箱状背斜、膝折构造、倒转背斜、平卧褶皱、紧闭背斜、同斜背斜、虚脱不协调背斜等滑脱褶皱。垂向上发育3套区域性滑脱层:震旦系泥页岩和寒武系泥页岩、志留系泥页岩、下三叠统膏盐岩;在南秦岭自北而南的推覆作用下,依次沿这3套滑脱层逐级抬升而向南滑脱,存在"推覆作用(叠层滑动)→冲断作用(切层滑动)→层滑作用(顺层滑动)"的滑脱变形序列,从而造就南大巴的多种构造变形类型及其有序分布特征。  相似文献   

12.
The Qinling Orogenic belt has been well documented that it was formed by multiple steps of convergence and subsequent collision between the North China and South China Blocks during Paleozoic and Late Triassic times. Following the collision in Late Triassic times, the whole range evolved into an intracontinental tectonic process. The geological, geophysical and geochronological data suggest that the intracontinental tectonic evolutionary history of the Qinling Orogenic Belt allow deduce three stages including strike-slip faulting during Early Jurrassic, N-S compressional deformation during Late Jurassic to Early Cretaceous and orogenic collapse during Late Cretaceous to Paleogene. The strike-slip faulting and the infills in Early Jurassic along some major boundary faults show flower structures and pull-apart basins, related to the continued compression after Late Triassic collision between the South Qinling Belt and the South China Block along the Mianlue suture. Late Jurassic to Early Cretaceous large scale of N-S compression and overthrusting progressed outwards from inner of Qinling Orogen to the North China Block and South China Block, due to the renewed southward intracontinental subduction of the North China Block beneath the Qinling Orogenic Belt and continuously northward subduction of the South China Block, respectively. After the Late Jurassic-Early Cretaceous compression and denudation, the Qinling Orogenic Belt evolved into Late Cretaceous to Paleogene orogen collapse and depression, and formed many large fault basins along the major faults.  相似文献   

13.
雪峰造山带位于江南造山带西南段,是研究和认识华南构造演化的重要窗口.本文在对雪峰造山带北段灰山港地区的构造变形特征系统调查的基础上,探讨了构造变形体制、成因机制和加里东运动及印支运动构造线方向横向变化的成因.调查发现,区内存在两个角度不整合面,据此划分3个构造层,即加里东构造层(Nh~S1)、海西-印支构造层(D2~P...  相似文献   

14.
Tectonically the Dabie orogenic belt consists mainly of the Dabieshan Yanshanian uplifted zone and the Beihuaiyang Variscan-Indosinian folding zone. In the north boundary adjoining the North China Block, there are an Early Palaeozoic ophiolitic mixtite belt and the Hefei Mesozoic-Cenozoic faulted basin which overlaps on the suture belt. In the south of Dabie orogen, there is a secondary tectonic unit called Foreland thrust-faulted structural zone which was mainly formed by the intracontinental subductions during Mesozoic era. The study shows that the Dabie Block is a part of mid-late Proterozoic palaeo-island arc at the north margin of Yangtze Block. During Caledonian period, as a submerged uplift at the northen continental margin of Yangtze Block, the Dabie Block collided with the early Palaeozoic palaeo-island arc at the south margin of North China Block, resulting in the convergence of the North and South China Blocks and the disappearance of oceanic crust. Since then,large-scale intracontinental subductions were followed. Dabie Orogenic Belt is the product of overlapping of Yangtze Block, Dabie Block and North China Block under the mechanism of intracontinental subduction. Indosinian period is the period of chief deformation and high pressure dynamic metamorphism for Dabie Block, and Yanshan period is the main orogenic period in which the remelting of crust caused by basement shearing resulted in large scale thermometamorphism. The present tectonic framework of the orogen was finally formed by the rapid uplifting of the Dabieshan mountains and gliding southwards, which result in the developing of thrust belt on south side and the extensional tectonic movement on north side.  相似文献   

15.
越南东北部早中生代构造事件的年代学约束   总被引:6,自引:3,他引:3  
越南东北部-海南岛-粤西南构造带整体上呈NW-SE走向展布于华南板块的南缘,是理解华南构造演化的关键地区.作为印支运动代表性地区的越南东北部地区Song Chay构造带上,下古生界浅变质沉积岩、上古生界至早-中三叠世未变质的沉积盖层中都发育向北东逆冲推覆,韧性变形域表现为NE-SW向的矿物拉伸线理和上部指NE的剪切变形,而脆性变形域则记录了大量NE极性的褶皱和冲断构造.两广交界的云开地体和海南岛地区存在着相同样式的构造变形.关于这期变形的时间,本文通过对野外地层以及所出露不同时期岩体变形特征的综合研究,并结合高质量的锆石U-Pb年代学数据,在越南的东北部厘定为237 ~ 228Ma.这期广泛分布于华南板块南缘构造事件的动力学机制同Day Nui Con Voi(大象山)微陆块与华南板块在早中生代的构造拼合事件相关.本文认为华南板块在早三叠世开始沿着越南东北部的Song Chay缝合带俯冲拼合于Day Nui Con Voi微陆块之下,因此在早-中三叠世时期,在作为俯冲盘的华南板块南缘发育一系列的褶皱和逆冲推覆构造,晚三叠世印支造山作用结束.因此,华南板块南缘的越南东北部-海南岛-粤西南构造带被一同卷入早-中三叠世同印支板块的碰撞造山体系之中.  相似文献   

16.
Tectonically the Dabie orogenic belt consists mainly of the Dabieshan Yanshanian uplifted zone and the Beihuaiyang Variscan-Indosinian folding zone. In the north boundary adjoining the North China Block, there are an Early Palaeozoic ophiolitic mixtite belt and the Hefei Mesozoic-Cenozoic faulted basin which overlaps on the suture belt. In the south of Dabie orogen, there is a secondary tectonic unit called Foreland thrust-faulted structural zone which was mainly formed by the intracontinental subductions during Mesozoic era. The study shows that the Dabie Block is a part of mid-late Proterozoic palaeo-island arc at the north margin of Yangtze Block. During Caledonian period, as a submerged uplift at the northen continental margin of Yangtze Block, the Dabie Block collided with the early Palaeozoic palaeo-island arc at the south margin of North China Block, resulting in the convergence of the North and South China Blocks and the disappearance of oceanic crust. Since then,large-scale intracontinental subductions were followed. Dabie Orogenic Belt is the product of overlapping of Yangtze Block, Dabie Block and North China Block under the mechanism of intracontinental subduction. Indosinian period is the period of chief deformation and high pressure dynamic metamorphism for Dabie Block, and Yanshan period is the main orogenic period in which the remelting of crust caused by basement shearing resulted in large scale thermometamorphism. The present tectonic framework of the orogen was finally formed by the rapid uplifting of the Dabieshan mountains and gliding southwards, which result in the developing of thrust belt on south side and the extensional tectonic movement on north side.  相似文献   

17.
Many equiaxial dome-like structures developed in the north segment of the Xuefengshan orocline, Central China are obviously inconcordant with the NE-trending linear structures in this area, which contain important records for understanding the structural framework and evolution of this belt. In this paper, taking one of the typical dome-like structures in the Xuefengshan orcline (e.g. Moping dome-like structure) as an example, based on its structural framework interpratatoin, superposed deformation analysis and paleo-stress fields reconstruction, we propose the Moping dome-like structure is composed of two populations of different-striking thrust-fold structures, ~E-trending and NE-striking structures, indicative of two-stages shortening, ~N- and NW-striking, respectively. Together with the geochronological analysis, we suggest the first stage of shortening occurred in Late Triassic to Early Jurassic, due to the Indosinian intercollisional orogeny of the Yangtze Block and the North China Block. The second occurred during Late Jurassic Early Cretaceous owing to Yanshanian intracontinental orogeny, leading to the intensive superposition of the NE-trending structures onto the ~E-trending structures, and the final ocurrence of the Moping dome. Thus, our study indicates the Xuefengshan arc-shape belt also experienced two-phase deformation, and resulted from the superposition of NE SW structures onto ~E-W structures in Late Jurassic Early Cretaceous, which could provide new structural evidence for probing the Mesozoic tectonic framework and evolution of the Xuefengshan orocline.  相似文献   

18.
南大巴山前陆冲断带构造样式及变形机制分析   总被引:26,自引:9,他引:26  
大巴山构造带位于秦岭造山带和四川盆地的过渡部位,形成于印支-燕山期,定型于喜山期。按照构造变形样式及其组合特征,从北东向南西可依次划分为北大巴山逆冲推覆构造带、南大巴山前陆褶皱-冲断带(又包括叠瓦断层带、断层-褶皱带和滑脱褶皱带等3个亚带)和四川盆地东北部低缓构造区等3个构造带(区)。南大巴山冲断带地表构造以类侏罗山式褶皱为显著特征,主要发育叠瓦断层系、断层相关褶皱、被动顶板双重构造、反冲断层系和冲起构造等变形样式。北东-南西向挤压应力和滑脱层是控制南大巴山及其前缘构造变形的主要因素,结合区域地质研究成果,建立了南大巴山及其前缘地区依次从震旦系-下寒武统-志留系-中下三叠统逐渐抬高的多层次滑脱前展模式。  相似文献   

19.
上扬子北缘的大巴山地区是秦岭造山带和扬子地块长期相互作用的地区,构造变形和地貌特征记录了印支期、燕山期,尤其是喜山期构造运动和地貌响应过程。本文以地理信息系统(GIS)为平台,通过对数字高程数据(DEM)的处理,结合地质图、构造水系图等各种数据,对大巴山及其前缘盆地的构造地貌特征进行综合分析研究,以坡度、地形起伏度、高程图和剖面图的统计为主,分析其构造地貌特征。研究表明,大巴山自晚燕山—喜山期前陆褶皱冲断形成以来,经历了多次隆升过程,特别是自喜山期以来,大巴山共经历了至少三次大规模的隆升。  相似文献   

20.
秦岭造山带组成结构与演化的新认识   总被引:8,自引:1,他引:7  
据北秦岭及商丹带、南秦岭、勉略带、太白一佛坪一汉南带的组成、结构特征,结合深部资料,提出秦岭是由五类岩石地层地质体按非线性、混论动力学的关系组合在一起的拼贴、镶嵌、叠置、堆垛的综合构造体,是南北与东西共存的构造格局,经历了太古代一古无古代陆核或古陆块增生或拼贴的发展阶段;中一新元古代板块构造体制发展阶段;震旦纪一三叠纪饭内海相沉积盆地与造山带转换的发展阶段;印支或以来陆相沉积盆地与造山带转换的抽拉一道冲岩片构造(或抽拉构造)体制的发展阶段的发展演化。  相似文献   

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