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1.
秦岭造山带是横贯我国中部著名的大陆造山带,是大陆构造中典型的陆内造山带。这种类型的造山带没有经历洋壳俯冲形成的那种主缝合带性质的造山带;也不是华北与扬子"板块"相互作用形成的对接或碰撞造山带;更不是所谓的复合型造山带。从秦岭造山带的组成、不同深度的结构特征、立交桥构造、盆-山转换中的结构样式、商丹带与勉略带的构造特征以及中央造山系(秦岭)中独特的南北向构造,深入讨论这些特征在秦岭造山带中的非板块构造属性;综合分析这些资料的基础上,建立了秦岭陆内造山带形成的抽拉-逆冲岩片构造(抽拉构造)模式。  相似文献   

2.
通过对华北地块南缘向北的薄皮推覆构造及北秦岭构造带结构、构造特征分析,认为它们同属于加里东期造山作用产物。北秦岭属于加里东造山带根带(即核部),华北地块南缘小秦岭(及豫西)地区属于该期造山带的外带,渭北褶皱隆起区则属于其前锋冲断褶带。秦岭造山带现今几何模型是一个复合型不对称扇状大陆造山带。  相似文献   

3.
造山带与前陆盆地结构构造及动力学研究思路和进展   总被引:5,自引:0,他引:5  
运用大量的研究成果,综合分析了大陆岩石圈结构和动力学特征,在此基础上探讨了造山带研究的思路和方法,总结了造山带结构、构造及其形成演化研究的新进展。指出前陆盆地的研究是深入研究造山带的关键,前陆盆地是前陆冲断作用引起岩石圈挠曲变形的结果,阐述了前陆盆地形成机制的研究进展  相似文献   

4.
造山带与前陆盆地结构构造及动力学研究思路和进展   总被引:4,自引:0,他引:4  
运用大量的研究成果,综合分析了大陆岩石圈结构和动力学特征,在此基础上探讨了造山带研究的思路和方法,总结了造山带结构、构造及其形成演化研究的新进展。指出前陆盆地的研究是深入研究造山带的关键,前陆盆地是前陆冲断作用引起岩石圈挠曲变形的结果,阐述了前陆盆地形成机制的研究进展。  相似文献   

5.
基性岩墙群是大陆和大陆造山带内发育的特殊地质体,包含丰富的地球动力学信息。造山带内基底岩块是造山作用过程卷入造山带的外来或原地地块(陆块),基底岩块中基性岩墙群的发育及其变形、变质特征,既为造山带内存在古老陆块和古陆块的裂离提供了证据,也为造山过程的构造动力学研究提供了重要信息。加强造山带基底岩块中基性岩墙群的多学科综合研究,对于探讨大陆造山带的形成、演化及其动力学过程具重要意义。  相似文献   

6.
秦岭造山带作为典型的陆内复合造山带,发生过强烈的构造变形,与北部的渭河地堑形成独具特色的盆山构造体系,目前其深部结构状态与盆山耦合响应缺乏深层动力学过程的理解,为此以跨越秦岭造山带、渭河地堑布设一条170 km的大地电磁测深剖面,通过宽频带和长周期大地电磁观测,构建秦岭造山带和渭河地堑深部地电结构,研究结果表明:1)秦岭造山带存在多重叠置的巨厚岩石圈,南秦岭与北秦岭地壳尺度存在明显的结构化差异; 2)扬子地块向北楔入到南秦岭岩石圈地幔中,南、北秦岭之间在上地幔存在低阻条带痕迹表明了楔入作用的前缘位置; 3)渭河地堑存在巨厚的沉积盖层,厚度由南向北逐渐减薄,由南侧的7~8 km减到北侧的3~4 km。渭河地堑下地壳至上地幔区域分布的两个低阻块体表明其岩石圈存在明显的电性差异,这种差异性的存在表征了华北地块南向挤压作用背景下软流圈上涌的贡献。  相似文献   

7.
西秦岭造山带的演化、构造格局和性质   总被引:59,自引:6,他引:53  
简要论述了西秦岭造山带显生宙以来的构造演化和格局,讨论了西秦岭造山带的性质。西秦岭造山带自800Ma左右以来,经历了超大陆裂解、洋陆演化、碰撞造山、板内伸展和陆内叠覆造山后才形成现今的西秦岭造山带。在不同的构造演化阶段,西秦岭有着完全不同的构造体制和格局。在洋陆演化阶段属板块构造体制,以多陆块洋为特征的洋陆格局;在板内伸展阶段属板内裂谷和裂陷盆地体制,以板内伸展盆地体系为特征的海陆格局;在陆内叠覆造山阶段属陆内盆山体制和陆内盆山格局。西秦岭造山带是一个“碰撞—陆内型”复合造山带。  相似文献   

8.
秦岭造山带新生代构造隆升与区域环境效应研究   总被引:16,自引:0,他引:16  
据沉积,构造、地貌并结合地球物理资料综合研究认为,秦岭造山带新生代构造隆升是在中生代白垩纪晚期构造隆升基础上,于晚第三纪中新世迅速隆升,而早更新世早期则是新构造活动最强烈时期。秦岭造山带的新生代构造隆升的方式主要有地垒式、掀斜式、振荡式和翘板式4种。诱发这一地区新构造抬升的主要原因和动力学机制是华北地块自北而南,扬子地块自南而北相向向秦岭造山带之下陆内俯冲和秦岭地块深部软流圈抬升共同作用所致。  相似文献   

9.
松潘地块位于青藏高原的东缘,处于中国大陆东西向构造与南北向构造的结合部位,特殊的构造环境使其长期控制并影响着中国大陆的形成与演化。探测松潘地块的岩石圈细结构,揭示其与东昆仑-西秦岭造山带的关系,既可为研究青藏高原东北缘板块碰撞的深部过程奠定基础,同时又关联着松潘地块的油气远景评价。2004年完成了第一条横过松潘地块北缘若尔盖盆地和西秦岭造山带的长约257km的深地震反射剖面,首次揭露出若尔盖盆地和西秦岭造山带岩石圈的细结构。发现若尔盖盆地和西秦岭造山带同属统一的稳定的大陆地块,并且下地壳均以北倾的强反射为主要特征。这种北倾的反射为松潘地块向西秦岭下地壳俯冲提供了地震学证据。近于平坦的Moho反射特征反映出西秦岭造山带在造山后又经历了强烈的伸展作用。  相似文献   

10.
长江中下游地区中生代陆内构造作用与成因分析   总被引:4,自引:0,他引:4       下载免费PDF全文
长江中下游地区多期构造叠加、复合联合作用明显,中生代以来地壳运动频繁、构造活动强烈,地表为桐柏-大别造山带,九岭-江南隆起带,其间为对冲样式构造组合的长江复合构造带。大别造山带前陆深地震反射剖面揭示长江中下游深部为“双鳄鱼构造”状态,大量前陆断褶带的物质被掩盖在大别造山带之下,岩片叠置、断裂交错的镶嵌构造极为发育,下地壳切过莫霍面向北俯冲,是后期岩浆的活动通道和就位空间。综合地球物理剖面揭示下扬子地区南北岩石圈结构差异明显,上地壳南北对冲构造发育;下地壳为向北倾斜的构造带,北部仍向南逆冲,南部切过莫霍面向北俯冲。长江中下游地区上述构造的形成受控于长江陆内异化带的作用,该带是一条陆内岩石圈规模的向北倾斜的破裂带,发生在中国大陆形成之后,不受早期板块界线的控制,是岩石圈规模的大陆异化、物质重建、结构重组的产物;主要结构特征为上地壳对冲式逆断层组合,中地壳为水平流变层,下地壳切过莫霍面由南向北俯冲;形成过程是印支晚期-燕山早期中国陆内近南北向挤压,地壳破碎,岩石圈加厚;燕山晚期大规模伸展拉张,岩浆活动,壳幔混熔。特殊成因机制和演化过程的综合效应是长江陆内异化带的地质内涵。深部物质沿长江陆内异化带上升,在上部地壳内多期叠加构成的构造格架中就位,岩体形态在深部近东西向呈带状,中部状态复杂,浅表受控于多种构造组合形式,见空即灌。  相似文献   

11.
This paper considers the lithospheric rheological structure of the East Qinling orogenic belt to explore its geodynamics. The lithospheric rheological structure was calculated by the constraints of the lithospheric temperature structure. The thermal-rheological stratification structures of the lithosphere in the East Qinling orogenic belt present different features from each other within different tectonic units. The hinterland fault-bounded fold zone (HLZ) and the North Qinling thick-skinned imbricated thrust zone (NQL) in the northern half part of the Qinling orogen, with a temperature of 305°C for the Moho boundary, are characterized by “cold” geotherm, thickened lithosphere and the model C for rheological stratification structure. The South Qinling tectonic zone (SQL), with a mean temperature of 642°C and a high temperature of 826°C for the Moho boundary, has obvious features with the model H of “hot” geotherm, thinned lithosphere and intensive rheological behavior within moderate-lower crust and top of the upper mantle. During post-orogenesis, the NQL, being the convergent frontal region of continental subduction beneath the Qinling orogen by both the North China craton (NC) and Yangtze craton (YZ), is in a coexistence period of a dominantly thickened lithosphere and an initial delamination, and the SQL, probably under pluming, has been developing new delamination and underplating and partial melting within the crust in its axel area and recycling for mass and energy (in the forms of heat transfer and convection) between the crust and mantle. Translated from Journal of Northwest University (Natural Science Edition), 2005, 35(5): 601–605 [译自: 西北大学学报 (自然科学版)]  相似文献   

12.
秦岭造山带基本组成与结构及其构造演化   总被引:51,自引:7,他引:51  
秦岭造山带主要由三大套构造岩石地层单元组成,经历了三个主要演化阶段:1.前寒武纪古老基底形成演化阶段,2.主造山期(Pt3—T2)板块构造演化阶段,3.中新生代陆内构造演化阶段。在早中元古代以扩张构造体制占主导,形成裂谷与小洋盆兼杂并存的基本构造格局,经10—8亿年晋宁期从扩张垂向加积增生构造体制为主向以侧向增生为主的板块构造体制的过渡,于晚元古代中晚期开始进入板块构造演化阶段。在晚古生代早期由于东古特提斯洋的形成,扬子板块北缘沿秦岭南部扩张打开,形成华北板块、扬子板块及其间的秦岭微板块,沿商丹和勉略二缝合带自南向北俯冲消减碰撞,于中三叠世最后全面陆陆碰撞造山,而后又发生了强烈陆内造山作用,终成今日之秦岭山脉面貌。现今的秦岭造山带岩石圈结构是一正在调整演化中的具流变学分层的“立交桥式”三维结构,上部地壳呈多层逆冲推覆迭置的不对称扇形几何学模式,岩石圈中部则是成水平状流变层,而深部地幔则是最新调整的近南北向的地球物理异常状态与结构,形成从下到上构造方向近乎正交的圈层非耦合关系。  相似文献   

13.
The Tibet Geoscience Transect (Yadong-Golmud-Ejin) has revealed the basic structures, tectonic evolution and geodynamic process of the lithosphere of the Qinghai-Tibet plateau. The evidence of northward thrusting of the Indian plate beneath the Himalayans on the southern margin and to southward compression of the Alxa block on the northern margin has been found. They were the driving forces causing the plateau uplift. The plateau is a continent resulting from amalgamation of eight terranes. These tenanes are separated by sutures or large-scale faults, and different terranes have different lateral inhomogeneities and multi-layered lithospheric structures. At depths of about 20-30 km of the crust in the ulterior of the plateau there commonly exists a low-velocity layer. It is an uncoupled layer of the tectonic stress; above the layer, the upper crustal slices were thrust and overlapped each other and the rocks underwent brittle deformation, thus leading to shortening and thickening of the upper crust Belo  相似文献   

14.
秦岭陆内造山带岩石圈结构   总被引:4,自引:2,他引:2       下载免费PDF全文
重新处理和解释叶县—南漳反射地震剖面,并综合利用油气勘探地震剖面,地震层析、大地电磁测深、地热流、气体测量等地球物理和地球化学数据,得到秦岭造山带岩石圈构造模型。识别出秦岭地壳不同时代的重要构造:(1)加里东期华北克拉通向秦岭微板块的俯冲,并造成中上地壳内华北地壳和北秦岭地壳形成锯齿状楔入构造。(2)印支—燕山期扬子克拉通与秦岭微陆块的对冲走滑软碰撞,形成了以南阳地区为中心由一系列规模宏大的逆冲断层组成的负花状构造。(3)白垩纪后,由正副片麻岩交互成层的结晶基底形成的穹隆。(4)盖在结晶基底上的近透明浅变质元古宙地层形成的褶皱基底。白垩纪后,秦岭地区和中国东部其他地区一样,岩石圈地幔遭受到软流圈上升形成蘑菇云构造,岩石圈活化,严重影响构造演化过程。  相似文献   

15.
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   

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.
青藏高原东北缘岩石圈密度与磁化强度及动力学含义   总被引:4,自引:0,他引:4  
利用横贯柴达木盆地南北的格尔木—花海子剖面岩石圈二维P波速度结构以及地震波速度与介质密度之间的关系,建立了该剖面岩石圈二维密度结构与二维磁化强度的初始模型。依据重磁同源原理,在柴达木盆地重、磁异常的二重约束下完成了重磁联合反演,获得了该剖面岩石圈二维密度结构与二维磁化强度分布。结果表明:柴达木盆地地壳厚度沿测线变化较大,平均厚度约60km。在柴达木盆地南缘地壳厚约50km,达布逊湖附近地壳最厚为63km左右,大柴旦附近地壳较薄,为50km左右。柴达木盆地的地壳纵向上可分为三层,即上地壳、中地壳与下地壳。位于盆地中部的中、下地壳分别发育大范围的壳内低密度体,并处于上地幔隆起的背景之上;横向上可将盆地分成南北两个部分,分界在达布逊湖附近。整个剖面结晶基底埋深变化也很大,在达布逊湖附近为12km,在昆仑山北缘基底几乎出露地表。结晶基底的展布形态与地壳底界,即莫霍面呈近似镜像对称。综合研究认为,柴达木盆地的岩石圈结构存在着明显的南北差异,其分界在达布逊湖的北面。在盆地南部,岩石圈介质横向变化较小,各层介质分布正常;在盆地的北侧,岩石圈结构特别在中、下地壳和上地幔顶部横向上发生了变化。壳内低密度体的存在意味着柴达木盆地具有较热的岩石圈和上地幔,加之基底界面与莫霍面的镜像对称分布,形成与准噶尔盆地和塔里木盆地的构造差异。多种地球物理参数所揭示的地壳上地幔结构及其横向变化特点为柴达木盆地构造演化及青藏高原北部边界的地球动力学研究提供了岩石圈尺度的地球物理证据。  相似文献   

18.
长江中下游成矿带是我国最重要的矿产资源生产基地之一。为了深入理解和认识此成矿带形成的深部构造背景及其岩浆活动与成矿作用过程,本文利用NW-SE向利辛-宜兴地球物理探测剖面的重力场资料构建了跨越长江中下游成矿带地域的二维深部地壳密度结构模型。并在结合其他已有研究成果的基础上,从Moho界面的展布形态、密度分布特征与壳内低密度区的存在等方面探讨了该区的深部构造格局与成矿作用过程。研究结果表明:长江中下游成矿带地域下方的地壳密度结构与其两侧地域存在显著差异;在宁芜矿集区下方的Moho界面呈上隆形态,矿集区存在密度值略低于两侧地域的低密度异常区。幔源岩浆的上涌底侵与MASH成矿作用可较好地解释该区的结构与构造形态以及在地表所见到的岩浆广泛存在和矿产资源富集的特征。岩石圈地幔物质在宁芜矿集区下方的上涌导致了Moho界面的抬升,而脆性上地壳中的伸展断裂则为岩浆的向上运移与矿产资源的形成提供了有利场所与环境。  相似文献   

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