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1.
阴山中生代地壳逆冲推覆与伸展变形作用   总被引:3,自引:0,他引:3  
研究区属燕山—阴山中生代板内造山带西段的重要组成部分。依据变形特征和物质组成,可以分为北部构造活动带、中部隆起带和南部构造活动带3个不同的构造区。以中部隆起带为中心,在南北两侧的构造活动带中的构造样式和变形机制呈反向对称出现。逆冲构造和伸展构造在时间和空间上密切共生。在印支期—燕山早期地壳以逆冲挤压变形机制为主,形成了色尔腾山逆冲推覆体系和大青山逆冲推覆体系,而燕山晚期阶段在逆冲岩席上产生了背向伸展变形作用,形成了同构造的早白垩世呼和浩特—包头盆地和固阳盆地。  相似文献   

2.
研究区属燕山-阴山中生代板内造山带西段的重要组成部分.依据变形特征和物质组成,可以分为北部构造活动带、中部隆起带和南部构造活动带3个不同的构造区.以中部隆起带为中心,在南北两侧的构造活动带中的构造样式和变形机制呈反向对称出现.逆冲构造和伸展构造在时间和空间上密切共生.在印支期-燕山早期地壳以逆冲挤压变形机制为主,形成了色尔腾山逆冲推覆体系和大青山逆冲推覆体系,而燕山晚期阶段在逆冲岩席上产生了背向伸展变形作用,形成了同构造的早白垩世呼和浩特-包头盆地和固阳盆地.  相似文献   

3.
阴山中生代地壳逆冲推覆与伸展变形作用   总被引:13,自引:2,他引:13  
研究区属燕山-阴山中生代板内造山带西段的重要组成部分。依据变形特征和物质组成,可以分为北部构造活动带、中部隆起带和南部构造活动3个不同的构造区。以中部隆起带为中心,在南北两侧的构造活动带中的构造样式和变形机制呈反向对称出现。逆冲构造和伸展构造在时间和空间上的密切共生。在印支期-燕山早期地壳以逆冲挤压变形机制为主,形成了色尔腾山逆冲推覆体系和大青山逆冲推覆体系,而燕山晚期阶段在逆冲岩席上产生了背向伸展变形作用,形成了同构造的早白垩世呼和浩特-包头盆地和固阳盆地。  相似文献   

4.
阴山地区印支期地壳构造变形研究   总被引:9,自引:4,他引:9  
阴山地区位于阴山-燕山中生代板内造山带西部。印支期地壳活动以南北向水平挤压变形为主,形成一系列东西方向展布的大型褶皱构造和逆冲推覆构造,构成阴山地区中生代造山带主体构造格架。根据沉积作用、岩浆活动和不同构造要素之间叠加改造关系,把阴山地区印支期地壳构造演化划分为三同阶段:早期以小型山间盆地沉积作用为主,其内堆积了一套陆相粗碎屑沉积建造和火山沉积建造;中期以褶皱作用为主,形成了大青山复式向斜和一些紧闭同斜褶皱构造;晚期以逆冲作用为主,并伴随有强烈的岩浆活动,形成了大型逆冲推覆构造。  相似文献   

5.
内蒙古石拐中生代断陷盆地形成与成因初探   总被引:1,自引:0,他引:1  
石拐中生代断陷盆地发育在大青山逆冲推覆体系前缘,其形成与发展主要受早侏罗世南北向伸展变形作用和晚侏罗世逆冲挤压构造变形作用控制.根据地壳构造变形特点、沉积建造和沉积环境不同,把盆地演化分为3个阶段:早、中侏罗世五当沟时期,地壳以伸展变形机制为主,盆地快速堆积,沉积了一套巨厚的含煤碎屑建造;在中侏罗世长汉沟时期,地壳构造变形不强烈,处于稳定湖相沉积环境,沉积一套滨浅湖相的泥岩和淡水灰岩;晚侏罗世大青山时期区内发生了强烈南北向挤压变形作用,形成了同构造前陆挤压沉积盆地,形成了紫红色-灰紫色粗碎屑岩.盆地内部岩相变化、沉积建造特点、地层之间接触关系和构造变形特征都记录了地壳构造变形的重要信息.  相似文献   

6.
鄂尔多斯北缘石合拉沟逆冲推覆构造的发现及意义   总被引:12,自引:0,他引:12  
最近在包头市幅1/25万区域地质调查工作中,在黄河南部鄂尔多斯北缘隆起带中发现了由北向南逆冲的石合拉沟推覆构造。上盘逆冲推覆体由基底浅变质的石英岩、黑云变粒岩和大理岩构成,推覆在晚石炭统太原组和中三叠统二马营组之上。野外地质关系表明逆冲推覆变形作用发生在晚侏罗世,与河套新生代断陷盆地北缘大青山逆冲推覆构造晚期逆冲推覆变形作用是同时的,逆冲推覆方向相反,构成了以现代河套盆地为中心的晚侏罗世背冲型逆冲推覆构造。该逆冲推覆构造的发现对探讨华北地台北缘中生代地壳构造变形特点和新生代河套断陷盆地基底构造性质具有重要意义。  相似文献   

7.
内蒙古大青山印支运动厘定   总被引:8,自引:1,他引:8  
根据中下侏罗统五当沟组与下伏地层之间角度不整合接触关系,结合同位素年代与岩浆活动特征和各种构造要素之间叠加改造关系,证实了大青山地区存在强烈印支运动。构造样式和构造要素组合特点表明大青山印支运动是一次强烈逆冲推覆、褶皱造山运动,形成了东西向展布的大型逆冲推覆构造和褶皱构造,构成了大青山地区中生代造山带主体构造格架。在地壳构造变形过程中伴随有强烈岩浆活动,形成了一系列的岩株和岩墙。大青山地区印支构造运动的确定对研究阴山—燕山板内造山带形成演化历史和地球动力学机制具有重要意义。  相似文献   

8.
大青山逆冲推覆构造下盘发育一套泥质板岩,它们是由二叠系泥岩、粉砂质泥岩和粉砂岩、细砂岩遭受逆冲推覆变形引起的动力变质作用改造形成的,发育一组透入性劈理构造.通过岩石薄片鉴定,沿劈理面形成绢云母、白云母和绿泥石等同构造新生矿物.对其中新生白云母矿物进行了激光微区40Ar/39Ar测年,获得了(121.6±1.6)Ma的等时线年龄.野外地质证据表明了大青山逆冲断层发生过两期逆冲推覆变形作用,早期发生在印支期,晚期发生在燕山期.(121.6±1.6)Ma年龄代表燕山期逆冲推覆事件发生时间.  相似文献   

9.
大青山逆冲推覆体系含义及地质特征   总被引:10,自引:0,他引:10  
大青山逆冲推覆体系是三叠纪中后期至白垩纪漫长的脉动式的造山过程形成的一套完整的逆冲推覆体系,是由一系列由南向北逆冲推覆构造岩片相互叠置构成。它涉及了前寒武纪变质杂岩,古生代沉积地层和中生代陆相沉积地层,并伴随有印支期岩浆活动。在变形旋回上表现为多期和多阶段的脉动式,印支期表现为南向北逆冲推覆和强烈的岩浆活动,燕山期表现为南南东向北北西推覆,形成了褶皱系统和劈理系统。  相似文献   

10.
燕山地区燕山期的挤压与伸展作用   总被引:16,自引:2,他引:16  
燕山地区中生代断裂演化、区域性不整合界面和盆地演化的地质事实显示,燕山期不仅存在强烈的挤压作用,而且存在强烈的伸展作用。如果把整个侏罗、白垩纪期间的构造运动理解为燕山运动的话,那么燕山运动既形成强烈褶皱和逆冲推覆,又形成断陷地和为质核杂岩。整个燕山运动(旋回)包括3次挤压事件和3个伸展阶段,即早侏罗世末挤压事件(北票组沉积之后,海房沟组沉积之前)、晚株罗世末挤压事件(土城子组沉积之后,义县组沉积之前)和白垩末挤压事件(第三系沉积之前);早侏罗世盆地伸展阶段、中晚侏罗世盆地伸展阶段和白垩纪盆地伸展阶段。燕山期内发生了3次由伸展到挤压的转换。  相似文献   

11.
冀中坳陷中生代构造变形的转换及油气   总被引:15,自引:3,他引:15  
冀中坳陷中生代构造变形主要包括印支期古亚洲域的北西西向和燕山期环太平洋域的北东、北北东向压性构造及其配套的北西向张性构造。前者主要是残存的徐水─任丘古隆起带,次要则如留西─大王庄古隆起带等;后者除了北东向的高阳─无极隆起带以外,则以同向的断裂构造为主。西界为太行山东伸展断层,而东界为 (古 )马西逆冲断层和 (古 )里坦逆冲断层以及 (古 )宁晋逆冲断层、 (古 )新河逆冲断层等构成叠瓦状逆冲系统。古亚洲域向环太平洋域的转换时期在中侏罗─早白垩世之间。中生代构造研究可以为冀中坳陷深层油气提供潜山圈闭、下第三系披覆背斜圈闭和岩性圈闭等有利勘探目标。  相似文献   

12.
鄂尔多斯盆地西缘前陆盆地构造-沉积响应   总被引:2,自引:0,他引:2  
鄂尔多斯盆地西缘前陆地区在晚三叠世-中侏罗世经历了印支运动和燕山运动早期的影响,西缘整体抬升,西南和西北两个造山带开始显现,古地理为继承性的南湖北河格局,此时秦岭造山带的形成使西南地区由滨海相向湖沼相过渡。晚侏罗世-早白垩世是西缘地区前陆盆地形成时期,燕山中期逆冲推覆作用强烈,该区地层角度不整合发育,沉积记录的响应表现为南北向隆坳相间的前陆盆地格局,有别于前陆盆地形成始于晚三叠世的认识。晚白垩世-新生代是喜山运动的后期改造时期,地层角度不整合发育,沉积响应为平原沼泽相沉积。  相似文献   

13.
大巴山构造带是秦岭造山带南部发育的一个以逆冲推覆构造为特征的构造带。通过在大巴山弧形构造带中段渔渡地区进行的详细构造解析发现,大巴山构造带在侏罗纪以来经历了至少两期变形叠加,变形地层三叠系嘉陵江组—侏罗系沙溪庙组。早期变形以与滑脱构造相关的轴向北西—北北西向箱状或隔挡状褶皱为主,并在深部发育顺层滑脱构造,变形时代为晚侏罗世到早白垩世。晚期变形与北侧逆冲相关,导致右行走滑变形,主要形成右行走滑断层和北西—北北西向紧闭褶皱,变形时代比第一期稍晚,为晚侏罗世之后到早白垩世。两期变形形成的褶皱延伸方向一致,与区域构造线的方向协调,而且在远离北侧镇巴断裂的地区变形强度有减弱的趋势,两期变形叠加形成共轴或斜交叠加构造。研究表明,变形与大巴山冲断—推覆构造带向南逆冲有关。  相似文献   

14.
西南三江构造体系突出表现为以昌都-兰坪-思茅地块为中轴的不对称走滑对冲构造,次为与走滑断裂相伴的伸展滑脱、走滑拉分盆地构造体系,再次为块体内部的近北东、北西向走滑断裂系。西南三江造山带构造体系演化分为挤压收缩变形、走滑深熔热隆、走滑剪切伸展、走滑剥蚀隆升等4个阶段。自晚白垩世开始,印度板块与欧亚板块碰撞,西南三江造山带对冲体构造体系初始形成。自渐新世开始,印度板块持续向北楔入欧亚大陆,印度板块与扬子克拉通构成力偶,两者相向、相对运动,挤压与剪切特提斯大洋缝合带及两大陆边缘弧盆系等地质体,西南三江造山带对冲体构造体系进一步发展,近南北向剪切走滑构造体系形成,构造方向也由近东西转为近南北向。而与近南北向主走滑断裂带之相伴的伸展滑脱构造、拉分盆地,块体内部近北东、北西“X”型剪切走滑断裂同时相伴形成。这样,就形成了西南三江造山带大规模的对冲、走滑、旋转及其伴生的伸展、拉分盆地构造的构造体系。  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.
By analyzing the balanced cross sections and subsidence history of the Longmen Mountain thrust belt, China, we concluded that it had experienced five tectonic stages: (1) the formation stage (T3x) of the miniature of Longmen Mountain, early Indosinian movement, and Anxian tectonic movement created the Longmen Mountain; (2) the stable tectonic stage (J1) where weaker tectonic movement resulted in the Longmen Mountain thrust belt being slightly uplifted and slightly subsiding the foreland basin; (3) the intense tectonic stage (J2-3), namely the early Yanshan movement; (4) continuous tectonic movement (K–E), namely the late Yanshan movement and early Himalayan movement; and (5) the formation of Longmen Mountain (N–Q), namely the late Himalayan movement. During those tectonic deformation stages, the Anxian movement and Himalayan movement played important roles in the Longmen Mountain’s formation. The Himalayan movement affected Longmen Mountain the most; the strata thrust intensively and were eroded severely. There are some klippes in the middle part of the Longmen Mountain thrust belt because a few nappes were pushed southeastward in later tectonic deformation.  相似文献   

18.
By analyzing the balanced cross sections and subsidence history of the Longmen Mountain thrust belt,China,we concluded that it had experienced five tectonic stages:(1)the formation stage (T3x) of the miniature of Longmen Mountain, early Indosinian movement, and Anxian tectonic movement created the Longmen Mountain;(2)the stable tectonic stage(J1)where weaker tectonic movement resulted in the Longmen Mountain thrust belt being slightly uplifted and slightly subsiding the foreland basin;(3)the intense tectonic stage(J2-3),namely the early Yanshan movement;(4) continuous tectonic movement(K-E),namely the late Yaushan movement and early Himalayan movement;and(5)the formation of Longrnen Mountain(N-Q),namely the late Himalayan movement. During those tectonic deformation stages, the Anxian movement and Himalayan movement played important roles in the Longmen Mountain'S formation.The Himalayan movement affected Longmen Mountain the most;the strata thrust intensively and were eroded severely.There are some klippes in the middle part of the Longmen Mountain thrust belt because a few nappes were pushed southeastward in later tectonic deformation.  相似文献   

19.
内蒙古中部石拐侏罗纪陆相含煤盆地构造变形   总被引:1,自引:1,他引:0  
对华北陆块北缘大青山推覆构造前缘石拐侏罗纪陆相含煤盆地的构造进行了分析。结果表明:早侏罗世早期,石拐盆地受NNE-SSW方向的拉张作用力,形成近东西走向的断陷盆地,而后沉积了早-中侏罗世五当沟组含煤沉积;中侏罗世末受近东西向挤压,在早先沉积地层中形成一套共轭节理;晚侏罗世受大青山推覆构造影响,盆地内侏罗系形成一系列代表推覆构造体系前缘带的紧闭同斜-直立宽缓褶皱及断层相关断层,具明显构造分带性。早侏罗世早期的拉张可能是印支造山后地壳的伸展垮塌,而晚侏罗世的挤压可能是板缘碰撞的板内响应。   相似文献   

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