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1.
中扬子地区自震旦纪以来陆壳裂陷,至中三叠世沉积了厚逾5000米的海相地层,各地层之间多大整合或平行不整合接触.晚三叠世起,转大陆相.印支构造阶段各地层之间,中三叠统与下三叠统连续沉积,上三叠统与中三叠统接触关系不明,侏罗系与上三叠统为平行不整合或局部轻微角度不整合接触.鉴于三叠系上统与下统接触关系的被覆盖和侏罗系对这一接触带的超覆掩盖,致使对该区震旦系一中三叠统褶皱发生的时期、印支运动的性质、规模等重要基础地质问题长期争论不休.事实上,由于对某些地质现象的错误理解和对构造运动的传统分析方法,已形成了一种优势意见,即中三叠统至晚三叠统为一渐变的海退序列,震旦系至中侏罗统组成统一褶皱体系,由燕山运动完成.印支运动被埋没了.  相似文献   

2.
洛伊地区三叠系沉积体系是近年来研究的重点,利用岩心、录井、测井及野外露头资料,并结合前人研究成果,对其进行分析.通过研究发现:洛伊地区三叠系沉积时期主要发育3种沉积体系类型,分别是曲流河沉积体系、三角洲沉积体系及湖泊沉积体系.中下三叠统主要发育曲流河沉积,上三叠统发育湖泊三角洲沉积,且从上三叠统沉积早期到晚期伴随着湖水面的上涨和湖盆面积的扩大.三叠系的沉积体系演化主要受控与中三叠世末印支运动的影响,印支运动造成扬子板块向华北板块俯冲,使洛伊地区周边隆起成山,并在洛伊地区形成深水湖盆.在对比洛伊地区与鄂尔多斯盆地上三叠统沉积特征及圈闭特征基础上,认为洛伊地区有较大的勘探潜力.洛伊地区沉积特征及演化规律的研究,为该地区未来的勘探提供了较为有利的地质依据.   相似文献   

3.
云南德钦鲁春—红坡牛场上叠裂谷盆地演化   总被引:12,自引:0,他引:12  
鲁春-红坡牛场上叠裂谷盆地是在金沙江弧-陆碰撞之后的地壳伸展环境下形成,时间上发育于中三叠世晚期至晚三叠世,空间上叠置于江达-德钦-维西陆缘火山弧上。盆地中发育由浅水→深水→浅水的沉积组合序列和由玄武岩--流纹岩组合成的“双峰式”火山岩系,岩石地球化学特征和Nd,Sr同位素结果表明玄武岩与流纹岩为同一岩浆源,从早期的基性岩浆演化为晚期的酸性岩浆。鲁春-红坡牛场上叠裂谷盆地的拉裂速度为0.43cm/a,扩宽距离为140km。中三叠世晚期至晚三叠世的上叠裂谷盆地已成为金沙江带中生代重要的赋矿盆地。  相似文献   

4.
西藏冈底斯西段措勤地区海相三叠系的划分   总被引:2,自引:7,他引:2  
西藏措勤县江让乡敌布错北缘敌布错组之下的碳酸盐岩并非原来推断的中二叠世"下拉组",研究结果显示其中含有三叠系。新发现的三叠系自下而上划分为:早三叠世印度期至中三叠世拉丁期末期的嘎仁错组(新建)、中三叠世拉丁期末期至晚三叠世卡尼期的珠龙组(新建)和晚三叠世诺利期的江让组。措勤地区海相三叠系的发现说明冈底斯西部发育早三叠世印度期—晚三叠世诺利期的海相碳酸盐岩地层,而非原来认为的三叠系缺失。  相似文献   

5.
幕阜山地区发育燕山期大型花岗岩体,形成了大量花岗伟晶岩脉及相关稀有金属矿床或矿化体。尽管前人对该地区花岗岩、伟晶岩和稀有金属矿床的地质地球化学特征、形成时代、空间展布和演化过程等进行了系统研究并取得大量成果,但地质构造对花岗岩和稀有金属伟晶岩的控制作用尚缺乏研究。鉴此,笔者等通过跨幕阜山岩体接触带的多个地质剖面调查,结合区域地质和矿产发育特征,对幕阜山地区中生代构造—岩浆演化过程以及构造对花岗岩体、伟晶岩脉和接触变质带的控制作用等进行了研究,形成以下主要认识:(1)中生代—新生代早期,研究区自早至晚经历了早—中三叠世海相盆地、中三叠世后期—晚三叠世印支运动、晚三叠世晚期—中侏罗世早期类前陆盆地、中侏罗世晚期早燕山运动、晚侏罗世—早白垩世早期花岗质岩浆活动与成矿、早白垩世晚期—古近纪中期区域伸展与断陷盆地、古近纪中晚期NE向挤压等7个构造阶段。(2)幕阜山岩体边界主要受NW向、NE向和NEE向等3组断裂控制,其构造机制实质为岩体区断块和岩体外断块对岩浆侵位过程的控制。(3)岩体侵位构造可定性划分为低侵位缓倾接触构造、低侵位陡倾接触构造、高侵位缓倾接触构造和高侵位陡倾接触构造等4类,其中低...  相似文献   

6.
楚雄盆地处在扬子地台西缘,发育在早—中三叠世古隆起上。晚三叠世早—中期伸展裂陷,沉积形成了近海泥质、灰质生油岩、含中基性火山碎屑复理石建造;晚三叠世晚期—早白垩世整体坳陷,四川盆地与楚雄盆地一度连为统一的巨型坳陷,沉积形成了内陆含煤磨拉石建  相似文献   

7.
西南三江地区洋板块地层特征及构造演化   总被引:3,自引:3,他引:0  
以大地构造研究为主导,初步梳理了三江地区洋板块地层系统的分布及其构造演化规律。本文阐述了三江地区经历原-古特提斯大洋连续演化、分阶段拼贴增生至最终俯冲消亡的地质演化历程。甘孜-理塘弧后洋盆于早石炭世打开,二叠纪—中三叠世进入顶峰扩张期,晚三叠世洋盆萎缩引起向西俯冲,最终在晚三叠世末局部地区保留残留海。哀牢山弧后洋盆不晚于早石炭世形成,早石炭世—早二叠世整体扩张发育,早二叠世末或晚二叠世初开始向西俯冲,晚三叠世最终完全关闭。金沙江洋盆早石炭世时已扩张成洋,到早二叠世晚期开始俯冲,石炭纪—早二叠世早期是金沙江洋盆扩张的主体时期,早二叠世晚期至早、中三叠世俯冲消亡。澜沧江弧后洋盆中晚泥盆世开始扩张,在石炭纪—早二叠世发育为成熟洋盆,早二叠世晚期洋内俯冲形成洋内弧,晚二叠世—早、中三叠世双向俯冲消亡。昌宁-孟连洋为特提斯洋主带,具有原-古特提斯洋连续演化的地质记录,晚奥陶世开始向东俯冲消减,二叠纪末、早三叠世发生弧-陆碰撞作用,昌宁-孟连洋盆闭合。  相似文献   

8.
本文简要总结了西藏措勤盆地相关区域的地层学研究进展。近年来,笔者及研究团队对措勤盆地及邻区进行了多次野外地质调查和室内古生物鉴定和研究,获得了一些新的发现和认识,在结合前人在相关地区取得的地层学成果和资料的基础上,厘定了该地区上二叠统—侏罗系的地层序列。措勤盆地的上二叠统是以文布当桑组为代表的灰岩和以木纠错组为代表的白云岩。三叠系存在着广海陆棚相和碳酸盐岩台地两种地层序列:前者自下而上划分为下三叠统嘎仁错组、中三叠统至上三叠统卡尼阶珠龙组、上三叠统诺利阶江让组、上三叠统瑞替阶至下侏罗统敌布错组;后者自下而上划分为木纠错组、待建的中三叠统、上三叠统诺利阶麦隆岗组和上三叠统瑞替阶至下侏罗统的确哈拉组。下侏罗统与上三叠统瑞替阶难以区分开。中侏罗统的岩性为深海-半深海相泥岩夹有基性-超基性岩。上侏罗统自下而上划分为萨波直不勒组和吐卡日组,目前尚未发现提唐阶的化石,因此推测下白垩统多尼组和吐卡日组之间有沉积间断。措勤盆地在晚二叠世—早三叠世、晚三叠世诺利期和晚侏罗世牛津期—基默里奇期都处于碳酸盐岩台地环境,冈底斯地区在中三叠世和中侏罗世发生了2期构造伸展事件,在晚三叠世诺利期末期和晚侏罗世基默里奇期晚期发生了两次构造抬升事件。构造伸展和挤压抬升造成了海平面的反复升降变化,导致了深水和浅水沉积相的垂向叠置,为油气成藏创造了良好的沉积建造组合条件。上二叠统—侏罗系地层序列还有待于进一步完善,应该加大地层古生物学的投入力度。  相似文献   

9.
童金南 《地球学报》2015,36(5):546-558
华东地区三叠纪海相沉积仅存在于早―中三叠世时期。它们既是区域构造控盆沉积作用下的产物,也能够反演区域印支构造运动的作用型式和演变历程。华东地区的海相三叠系可以划分为2个地层区和6个地层分区。各地层分区内的地层序列可以按照地层的时间属性和连续的空间沉积古地理分异,整合为一套统一的岩石地层单元,仅局部岩相差异较大的地质体可采用单独的地层名称。借助于生物和环境事件标志,可以进行区域地层对比。地层序列的时空分异表明,印支构造运动的第一幕或序幕可能始于早三叠世晚期,这时在扬子地块的北部已与华北地块对接形成一系列局限的次级边缘海盆,并于最后于中三叠世晚期彻底关闭;与此同时,扬子地块南缘与华夏地块之间也于早三叠世晚期逐步被挤压变陡,形成台-坡-盆沉积体系,并且于早三叠世末被关闭,从而在中三叠世形成统一的沉积盆地。  相似文献   

10.
本文将我国西北地区的印支运动划分为两期两幕。其早期包括早、中三叠世期间,印支运动第一幕发生在中、晚三叠世之间;晚期包括晚三叠世期间,印支运动第二幕发生在晚三叠世与早侏罗世之间。作者认为,西北地区的印支运动不仅使秦祁昆和巴颜喀拉海洋关闭,海槽内沉积物全部褶皱成山,并镶嵌于华北—塔里木地台的旁侧,而且使区内地壳运动的性质发生了根本的改变,即开始全部转为地台内部的造陆运动和断块差异升降运动,从而奠定了中新生代的构造格局。  相似文献   

11.
Silurian sandstone in Tarim Basin has good reservoir properties and active oil and gas shows, especially thick widely-distributed bituminous sandstone. Currently, the Silurian was found containing both bitumen and conventional reservoirs, with petroleum originating from terrestrial and marine source rocks. The diversity of their distribution was the result of "three sources, three stages" accumulation and adjustment processes. "Three sources" refers to two sets of marine rocks in Cambrian and Middle-Upper Ordovician, and a set of terrestrial rock formed in Triassic in the Kuqa depression. "Three stages" represents three stages of accumulation, adjustment and reformation occurring in Late Caledonian, Late Hercynian and Late Himalayan, respectively. The study suggests that the Silurian bitumen is remnants of oil generated from Cambrian and Ordovician source rocks and accumulated in the sandstone reservoir during Late Caledonian-Early Hercynian and Late Hercynian stages, and then damaged by the subsequent two stages of tectonic uplift movements in Early Hercynian and Pre-Triassic. The authors presumed that the primary paleo-reservoirs formed during these two stages might be preserved in the Silurian in the southern deep part of the Tabei area. Except for the Yingmaili area where the Triassic terrestrial oil was from the Kuqa Depression during Late Himalayan Stage, all movable oil reservoirs originated from marine sources. They were secondary accumulations from underlying Ordovician after structure reverse during the Yanshan-Himalayan stage. Oil/gas shows mixed-source characteristics, and was mainly from Middle-Upper Ordovician. The complexity and diversity of the Silurian marine primary properties were just defined by these three stages of oil-gas charging and tectonic movements in the Tabei area.  相似文献   

12.
试论横断山区印支旋回的构造特征   总被引:1,自引:0,他引:1  
<正> 横断山区系指青、藏、川、滇四省交界处南北向山脉的总称。因横隔东西间交通故名。这里岭谷相间。山岭自西而东有:伯舒拉岭(南延为高黎贡山)、怒山、宁静山(南延为云岭)、沙鲁里山、大雪山等。岭脊多出露花岗岩类及变质岩类。河流深切形成峡谷,有怒江、澜沧江、金沙江、雅砻江等流贯,峡谷地带大多有基性、超基性岩密集分布,实际上是一系列深断裂发育地带。  相似文献   

13.
西秦岭二叠纪-三叠纪遗迹化石及其环境意义   总被引:3,自引:1,他引:3       下载免费PDF全文
晋慧娟  李育慈 《地质科学》1995,30(4):321-328
本文系统描述和研究了西秦岭合作至夏河间晚二叠世和临潭至岷县以南早、中三叠世复理石相中发现的遗迹化石,并得出以下认识:1)各遗迹组合都属与浊流有关的深海“Nereites”遗迹相,都不具远洋沉积中遗迹组合特征;2)各遗迹组合所指示的海水深度都介于深水斜坡环境的中等水深范围内,最深不超过2000m;3)早三叠世遗迹化石潜穴管普遍细于中三叠世,表明前者属水体循环差的缺氧环境,后者为开放型海盆;4)根据遗迹组合空间分布的差异,认为在三叠纪时北特提斯北缘的深水斜坡带的海水深度呈现出西深东浅的变化趋势。  相似文献   

14.
The U–Pb (SHRIMP) age was determined for zircons collected from 26 observation and sampling sites of diamonds and index minerals in the northeastern Siberian Platform. This part of the region hosts 15 low-diamondiferous Paleozoic and Mesozoic kimberlite fields, excluding the near economic Triassic Malokuonapskaya pipe in the Kuranakh field. Four epochs of kimberlite formation (Silurian, Late Devonian to Early Carboniferous, Middle to Late Triassic, and Middle to Late Jurassic) of the Siberian Platform, including its northeastern part, are confirmed as a result of our studies. Most observation points, including economic Quaternary diamond placers, contain Middle to Late Triassic zircons, which confirms the abundant Late Triassic volcanism in this region. The positive correlation of diamonds and major index minerals of kimberlites (mostly, garnets) at some observation sites indicates the possible Triassic age of the predictable diamondiferous kimberlites.  相似文献   

15.
在1∶25万霍尔巴幅区域地质调查中,在雅鲁藏布江结合带穷果群上部及修康群中发现了较多的硅质板岩,其内含有较丰富的放射虫化石,共有48属35种,可识别为Cenosphaera-Phormocyrtis,Capnuchosphaera-Angulobracchia和Parahsuum-Citriduma 3个组合,时代为中—晚三叠世。厘定修康群的形成时代为晚三叠世,穷果群的形成时代为中三叠世。这一发现为确定蛇绿岩的时代提供了重要的古生物依据,表明该区蛇绿岩的形成时代应早于中三叠世。结合区域地质特征,修康群应形成于大陆斜坡-深海沉积环境,位于南带特提斯洋盆区的边部地带。  相似文献   

16.
Sedimentary response to an orogenic process is important for determining whether South China had compressional or extensional orogeny during the period from the Late Permian to the Middle Triassic besides the tectonic and magmatologic evidence. An intracontinental collision event took place between the Yangtze and Cathaysia blocks in the Late Permian. Beginning at the Late Triassic, the tectonic movement was completely changed in nature and entered a post-collisional extensional orogenic and basin-making process. This paper presents sedimentological evidence from the Late Permian to the Middle Triassic in the Shiwandashan basin at the southwestern end of the junction zone between the Yangtze and Cathaysia blocks.  相似文献   

17.
The Late Permian–early Middle Triassic strata of the northern West Qinling area, northeastern Tibetan Plateau, are composed of sediment gravity flow deposits. Detailed sedimentary facies analysis indicates these strata were deposited in three successive deep-marine environments. The Late Permian–early Early Triassic strata of the Maomaolong Formation and the lowest part of the Longwuhe Formation define a NW–SE trending proximal slope environment. Facies of the Early Triassic strata composing the middle and upper Longwuhe Formation are consistent with deposition in a base-of-slope apron environment, whereas facies of the Middle Triassic Anisian age Gulangdi Formation are more closely associated with a base-of-slope fan depositional environment. The lithofacies and the spatial–temporal changes in paleocurrent data from these strata suggest the opening of a continental margin back-arc basin system during Late Permian to early Middle Triassic time in the northern West Qinling. U–Pb zircon ages for geochemically varied igneous rocks with diabasic through granitic compositions intruded into these deep-marine strata range from 250 to 234 Ma. These observations are consistent with extensional back-arc basin development and rifting between the Permian–Triassic Eastern Kunlun arc and North China block during the continent–continent collision and underthrusting of the South China block northward beneath the Qinling terrane of the North China block. Deep-marine sedimentation ended in the northern West Qinling by the Middle Triassic Ladinian age, but started in the southern West Qinling and Songpan-Ganzi to the south. We attribute these observations to southward directed rollback of Paleo-Tethys oceanic lithosphere, continued attenuation of the West Qinling on the upper plate, local post-rift isostatic compensation in the northern West Qinling area, and continued opening of a back-arc basin in the southern West Qinling and Songpan-Ganzi. Rollback and back-arc basin development during Late Permian to early Middle Triassic time in the West Qinling area explains: the truncated map pattern of the Eastern Kunlun arc, the age difference of deep-marine sediment gravity flow deposits between the Late Permian–early Middle Triassic northern West Qinling and the late Middle Triassic–Late Triassic southern West Qinling and Songpan-Ganzi, and the discontinuous trace of ophiolitic rocks associated with the Anyemaqen-Kunlun suture.  相似文献   

18.
本区已获晚海西-早印支期花岗岩类6件锆石高精度测年数据和两件继承锆石年龄,确定了其活动时限305~242 Ma,主体分属早中三叠世岩石序列、晚二叠世岩石序列、中二叠世岩石序列相应的岩石单元.小四平岩体的年龄及其被晚三叠世地层不整合覆盖,指明古亚洲洋构造域完成在242~228 Ma间.基于上述岩石年龄及形成构造环境和邻近地区磨拉石相发育的层位,揭示古吉黑造山带晚海西-早印支期构造运动或构造-岩浆旋回具有多幕式的递进演化模式,并受显生宙泛大陆旋回所制约.  相似文献   

19.
长江源各拉丹冬一带晚三叠世那底岗日组   总被引:2,自引:0,他引:2  
长江源各拉丹冬一带那底岗日组,为一套基-中酸性的火山岩或火山碎屑岩-沉积岩组合,其上与中侏罗统雀莫错组不整合、与下晚三叠世巴贡组整合接触,火山岩u—Pb同位素年龄为212±1.7Ma,时代为晚三叠世诺利晚期-瑞替期,为晚三叠世拉竹龙-金沙江洋盆?向南消减形成的火山岩浆弧。  相似文献   

20.
扬子板块中部南山坪背斜的形成与演化   总被引:4,自引:0,他引:4       下载免费PDF全文
南山坪背斜位于扬子板块中部,核部上震旦统含有大量沥青,是一个被破坏的古油藏。笔者通过建造分析认为震旦纪至中三叠世属于古隆起发育阶段,进一步划分出震旦纪古隆起雏形期、早古生代古隆起保持期和晚古生代—中三叠世古隆起发展期。晚三叠世至新生代属于断裂褶皱发育阶段,进一步划分出晚三叠世—中侏罗世宽缓背斜发育期、燕山运动Ⅱ幕断展背斜发育期、燕山晚期和喜玛拉雅期背斜改造期。南山坪古油藏以上震旦统灯影组白云岩为储层,以上覆下寒武统牛蹄塘组黑色碳质泥岩和石煤为烃源岩,志留纪至中三叠世古隆起聚集油气,晚三叠世至中侏罗世是油气再分配和南山坪古油藏形成时期,之后是古油藏被破坏时期。  相似文献   

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