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1.
This study provides a reconstruction of the Late Permian and Triassic depositional history of the Arabian shelf in the northern United Arab Emirates based on facies analysis and foraminiferal biostratigraphy. The presented data show that sedimentation occurred in three major sequences. From the Late Permian to Olenekian carbonates and evaporites were deposited in restricted lagoons and tidal flats. After a hiatus, sedimentation resumed and continued until the Late Ladinian/Carnian, leading to the deposition of a carbonate platform dominated by peritidal dolostones. A period of shelf exposure and erosion, spanning from the Carnian to Norian, was followed by the third major sequence with sedimentation into the Early Jurassic. During this third depositional sequence sedimentation changed from pure carbonate into mixed carbonate–siliciclastic deposits. This transition reflects the global regression of the sea in the Late Triassic (Triasina hantkeni Zone) and the increased erosion of large parts of the Arabian hinterland. A comparison of the evolution of the Arabian shelf in the study area with chronostratigraphic reference schemes for the Arabian Plate reveals remarkable differences in the distribution of Middle and Upper Triassic sequences. These are most likely the result of poor biostratigraphic control on previously studied formations in the region.  相似文献   

2.
关于创口海百合(Traumatocrinus)的分类、分布及古生态   总被引:1,自引:0,他引:1  
在中国贵州关岭地区晚三叠世(卡尼期)小凹组(=瓦窑组)海生爬行动物和海百合化石库中产有大量完好保存的创口海百合(Traumatocrinus)(棘皮动物门,海百合纲)化石。根据对此类海百合分类、分布和形态构造及古生态的研究,特别是大量完好保存、且附着在漂浮木头上的群体化石标本的发现,进一步证明这种外形似海百合花的创口海百合营假浮游的生活方式。这类特化的海百合分枝起源于另一类底栖中三叠世石莲海百合科,很快占领了卡尼期初期的生态境,至卡尼期末创口海百合衰退以后,它的生态境在诺利期时为形态发生的趋同变异的链海百合(Seirocrinus)和五角海百合(Pentacrinites)所占领。  相似文献   

3.
THE RECOGNITION OF THE CHUXIONG FORELAND BASIN SYSTEM IN YUNNAN,CHINA  相似文献   

4.
史晓颖 《地质学报》2001,75(3):292-302
珠峰地区的三叠系形成于大陆拉伸背景。自下而上可划分为12个三级沉积层序和5个层序组,分属于2个中层序。发生在Induan阶初期(约250Ma),Anisian阶早期(约239Ma),Carnian阶初期(约231Ma)和Norian早期(约223Ma)的4个海侵事件最为重要。可作跨越板块的地层对比标志。藏南地区在三叠纪经历了从泛大陆到大陆裂谷的构造演化,早一中三叠世以陆表海盆地浅水环境为主,晚三叠世以深水断陷盆地为特征。晚三叠世晚期,与长期全球海平面下降相伴随,过量的陆源碎屑输入造成该地区由深水盆地转为河流作用明显的三角洲平原环境。  相似文献   

5.
In Central Iran, the mixed siliciclastic?carbonate Nakhlak Group of Triassic age is commonly seen to have a Cimmerian affinity, although it shows considerable resemblances with the Triassic Aghdarband Group in far northeastern Iran, east of Kopeh-Dagh area, with Eurasian affinity. The Nakhlak Group is composed of the Alam (Late Olenekian?Anisian), Baqoroq (Late Anisian??Early Ladinian), and Ashin (Ladinian??Early Carnian) formations consisting mainly of volcanoclastic sandstone and shale and fossiliferous limestone. The Baqoroq Formation contains also metamorphic detritus. Sandstone petrofacies reflect the detrital evolution from active volcanism to growing orogen and again active volcanism. Textural and modal analyses of volcanic lithic fragments from the Alam Formation reflect the eruption style and magma composition of a felsic to intermediate syn-sedimentary arc activity. The detrital modes of the Baqoroq Formation sediments suggest a recycled orogenic source followed by arc activity in a remnant fore-arc basin. The sandstone samples from the Ashin Formation demonstrate a continuity of felsic to intermediate arc activity. Major and trace element concentrations of the Nakhlak Group clastic samples support sediment supply from first-cycle material and felsic magmatic arc input. The enrichment in LREE, the negative Eu anomalies, and the flat HREE patterns indicate origination from the old upper continental crust and young arc material. The chemical index of alteration (CIA ~51–70 for sandstone and 64–76 for shale samples) indicates medium degrees of chemical weathering at the source. Petrographical and geochemical evidence together with facies analysis constructed the following depositional conditions for the Nakhlak Group sediments: In the Olenekian, a fore-arc shallow to deep marine depositional basin developed that later was filled by recycled and arc-related detritus and changed into a continental basin in the Anisian. Ladinian extension let to a deepening of the basin. With respect to the similarities between the Nakhlak and Aghdarband (NE Iran) groups and unusual present-day position of the Nakhlak Group with no stratigraphic connection to the surrounding area, the development of first a fore-arc basin and later change into a back-arc depositional basin in close relation with the Aghdarband basin at the southern Eurasian active margin in the Triassic are here proposed. Understanding the basin development recorded in the Nakhlak Group provides constraints on the closure history of Palaeotethys and of the tectonic evolution of early Mesozoic basins at the southern Eurasian margin before the Cimmerian Orogeny.  相似文献   

6.
李勇  苏德辰  董顺利  颜照坤  贺佩  闫亮 《岩石学报》2011,27(8):2413-2422
晚三叠世龙门山前陆盆地是在扬子板块西缘被动大陆边缘的基础上由印支造山运动而形成的,盆地中地层充填厚度巨大,包括晚三叠世卡尼期至瑞提期的马鞍塘组、小塘子组和须家河组,持续时间达20Myr,显示为1个以不整合面为界的构造层序。位于晚三叠世龙门山前陆盆地构造层序与下伏古生代-中三叠世被动大陆边缘构造层序之间的不整合面属于龙门山前陆盆地的底部不整合面,标志了扬子板块西缘从被动大陆边缘盆地到前陆盆地的转换。该底部不整合面位于晚三叠世马鞍塘组与中三叠世雷口坡组之间,显示为平行不整合面或角度不整合面,在接触面上发育冲蚀坑、古喀斯特溶沟、溶洞、溶岩角砾、古风化壳的褐铁矿、黏土层及石英、燧石细砾岩等底砾岩。该不整合面向南东方向不断地切削下伏地层,且均发育岩溶风化面,上覆的晚三叠世地层沿不整合面向南东超覆,显示了从整合面到不整合面的变化过程,并随着逆冲楔的推进向南东方向迁移,其超覆线、侵蚀带和相带的走向线与龙门山冲断带的走向大致平行。底部不整合面显示为典型的前陆挠曲不整合面,标志着龙门山前陆盆地的形成和扬子板块西缘挠曲下降和淹没过程,底部为古喀斯特作用面,下部为碳酸盐缓坡和海绵礁建造,上部为进积过程中形成的三角洲沉积物,具有向上变粗的垂向结构,表明底部不整合面和前缘隆起的抬升是扬子板块西缘构造负载的挠曲变形的产物,显示了在卡尼期松潘-甘孜残留洋盆的迅速闭合和逆冲构造负载向扬子板块的推进过程。本次在对晚三叠世龙门山前陆盆地底部不整合面的风化壳、残留厚度、地层缺失、剥蚀厚度、地层超覆等研究的基础上,计算了底部不整合面迁移速率、前缘隆起迁移速率、地层上超速率和前缘隆起的剥蚀速率,并与逆冲楔推进速率进行了对比,结果表明,底部不整合面迁移速率、前缘隆起的迁移速率、地层上超速率均介于3~18mm·a-1之间,其与逆冲楔推进速率(5~15mm·a-1)相似,因此,可用底部不整合面迁移速率、前缘隆起的迁移速率和地层上超速率代表逆冲楔推进速率。但是前缘隆起的剥蚀速率很小,介于0.02~0.08mm·a-1之间,仅为逆冲楔推进速率的1/100。  相似文献   

7.
There is renewed interest in a series of Carnian-aged sandstone units across the UK because they represent a unique event in the Late Triassic, the Carnian Pluvial Episode (CPE), from 233 to 232 Ma. The North Curry Sandstone Member of the Mercia Mudstone Group in Somerset is of particular importance because it yielded a rich fauna of shark, bony fish and amphibian remains in coarse-grained sandstones to Charles Moore in the 1860s. However, the exact location and age of his important collection had not been identified. Here, we demonstrate that the Moore collection comes from the North Curry Sandstone Member in a location in the village of Ruishton, just east of Taunton, where a new road cutting reveals both the bone-rich units and a complete succession through the CPE, a time of major climatic and biotic upheaval. The 16 m section comprises several sandstones interbedded with red-green mudstones, representing a terrestrial environment with lacustrine, evaporitic mud flat and fluvial deposits.  相似文献   

8.
盆山转换与沉积地质记录——以楚雄前陆盆地分析为例   总被引:3,自引:1,他引:3  
楚雄盆地位于扬子陆块的西南边缘,为一中生代周缘型前陆盆地。根据沉积相特征、层序地层结构和古地理演化的详细研究,结合古哀牢山造山带的构造演化,笔者认为楚雄盆地经历了从古生代被动大陆边缘沉积到中生代前陆盆地沉积的演化。前陆盆地演化的阶段性明显:晚三叠世卡尼期(云南驿组沉积期)和诺利早、中期(罗家大山组沉积期)为前陆复理石沉积;诺利晚期(花果山组沉积期)-古新世(赵家店组沉积期)为前陆磨拉石沉积。磨拉石  相似文献   

9.
塔里木盆地北缘晚三叠世孢粉组合及三叠系-侏罗系界线   总被引:2,自引:0,他引:2  
刘兆生 《地层学杂志》1999,23(2):96-106,T002
Dictyophylidites-Aratrisporites-Parataeniaesporites组合分布在塔里木盆地北缘上三叠统黄山街组和塔里奇克组内,上亚组合属于晚三叠世晚期。根据孢粉组合将塔里木盆地北缘三叠系-侏罗系的界线划在塔里奇克组与阿合组之间  相似文献   

10.
The Mesozoic sediments of Thakkhola (central Nepal) were deposited on a broad eastern north Gondwanan passive margin at mid-latitudes (28–41 °S) facing the Southern Tethys ocean to the north. The facies is strikingly similar over a distance of several thousand kilometres from Ladakh in the west to Tibet and to the paleogeographically adjacent north-west Australian margin (Exmouth Plateau, ODP Legs 122/123) and Timor in the east. Late Paleozoic rifting led to the opening of the Neo-Tethys ocean in Early Triassic times. An almost uninterrupted about 2 km thick sequence of syn-rift sediments was deposited on a slowly subsiding shelf and slope from Early Triassic to late Valanginian times when break-up between Gondwana (north-west Australia) and Greater India formed the proto-Indian Ocean. The sedimentation is controlled by (1) global events (eustasy; climatic/oceanographic changes due to latitudinal drift; plate reorganization leading to rift-type block-faulting) and (2) local factors, such as varying fluvio-deltaic sediment input, especially during Permian and late Norian times. Sea level was extremely low in Permian, high in Carnian and low again during Rhaeto-Liassic times. Third-order sea-level cycles may have occurred in the Early Triassic and late Norian to Rhaeto-Liassic. During the Permian pure quartz sand and gravel were deposited as shallowing upward series of submarine channel or barrier island sands. The high compositional maturity is typical of a stable craton-type hinterland, uplifted during a major rifting episode. During the early Triassic a 20–30 m thick condensed sequence of nodular ‘ammonitico rosso’-type marlstone with a ‘pelagic’ fauna was deposited (Tamba Kurkur Formation). This indicates tectonic subsidence and sediment starvation during the transgression of the Neo-Tethys ocean. During Carnian times a 400 m thick sequence of fining upward, filament-rich wackestone/shale cycles was deposited in a bathyal environment (Mukut Formation). This is overlain by about 300 m of sandy shale and siltstone intercalated with quartz-rich bioclastic grain- to rudstone (Tarap Shale Formation, late Carnian-Norian). The upper Norian to (?lower) Rhaetian Quartzite Formation consists of (sub)arkosic sandstones and pure quartz arenites, indicating different sediment sources. The fluvio-deltaic sandstones are intercalated with silty shale, coal and bioclastic limestone, as well as mixed siliciclastic-bioclastic rocks. The depositional environment was marginal marine to shallow subtidal. The fluvio-deltaic influence decreased towards the overlying carbonates of Rhaeto-Liassic (?) age (Jomosom Formation correlative with the Kioto Limestone), when the region entered tropical paleolatitudes resulting in platform carbonates.  相似文献   

11.
欧洲学者基于阿尔卑斯地区上三叠统卡尼阶地质研究提出卡尼期碳酸盐生产危机(carbonate productivity crisis)或者卡尼期洪水事件(Carnian Pluvial Event)的概念,其主要表现为黑色页岩(或绿色页岩、放射虫硅质岩)覆盖于特提斯范围的碳酸盐岩之上,反映了早、晚卡尼期界面处一次明显的碳酸盐沉积中止事件,之上沉积有厚度逐步增加的硅质碎屑岩;这一地质现象在东特提斯地区(中国)卡尼阶中亦有显现,但远未引起重视。实际野外地质调查与前人文献显示,与古特提斯西部、喜马拉雅等地卡尼阶类似,在中国西南部古特提斯范围内的四川盆地西缘、黔中、滇西北、金沙江沿岸等地,卡尼期碳酸盐岩沉积多被一套灰黑色、深灰色页岩(或深色板岩)及之上的陆源碎屑岩覆盖,显示该时期碳酸盐生产的突然中止和生物礁的突然死亡。卡尼期特提斯范围的构造变动很可能对晚三叠世巨型季风气候造成巨大影响,古太平洋暖流向特提斯地区水汽输入增强,相对干旱的气候向相对潮湿的气候转换,大陆风化速率增加,陆源硅质碎屑输入增多,造成了这一显著的地质事件。  相似文献   

12.
在西藏措勤断块新建了中三叠统—上三叠统卡尼阶岩石地层单位——嘎热扎地组.在建组剖面上,嘎热扎地组厚约485 m,下部岩性以碎屑岩为主,上部岩性为碎屑岩夹灰岩.嘎热扎地组与下伏上二叠统—下三叠统木纠错组、上覆上三叠统诺利阶麦龙岗组均为整合接触关系.该组尚未发现指示地层时代的化石,但前人在其下伏的木纠错组中发现了早三叠世牙...  相似文献   

13.
A dropstone‐bearing, Middle Permian to Early Triassic peri‐glacial sedimentary unit was first discovered from the Khangai–Khentei Belt in Mongolia, Central Asian Orogenic Belt. The unit, Urmegtei Formation, is assumed to cover the early Carboniferous Khangai–Khentei accretionary complex, and is an upward‐fining sequence, consisting of conglomerates, sandstones, and varved sandstone and mudstone beds with granite dropstones in ascending order. The formation was cut by a felsic dike, and was deformed and metamorphosed together with the felsic dike. An undeformed porphyritic granite batholith finally cut all the deformed and metamorphosed rocks. LA‐ICP‐MS, U–Pb zircon dating has revealed the following 206Pb/238U weighted mean igneous ages: (i) a granite dropstone in the Urmegtei Formation is 273 ± 5 Ma (Kungurian of Early Permian); (ii) the deformed felsic dike is 247 ± 4 Ma (Olenekian of Early Triassic); and (iii) the undeformed granite batholith is 218 ± 9 Ma (Carnian of Late Triassic). From these data, the age of sedimentation of the Urmegtei Formation is constrained between the Kungurian and the Olenekian (273–247 Ma), and the age of deformation and metamorphism is constrained between the Olenekian and the Carnian (247–218 Ma). In Permian and Triassic times, the global climate was in a warming trend from the Serpukhovian (early Late Carboniferous) to the Kungurian long and severe cool mode (328–271 Ma) to the Roadian to Bajocian (Middle Jurassic) warm mode (271–168 Ma), with an interruption with the Capitanian Kamura cooling event (266–260 Ma). The dropstone‐bearing strata of the Urmegtei Formation, together with the glacier‐related deposits in the Verkhoyansk, Kolyma, and Omolon areas of northeastern Siberia (said to be of Middle to Late Permian age), must be products of the Capitanian cooling event. Although further study is needed, the dropstone‐bearing strata we found can be explained in two ways: (i) the Urmegtei Formation is an autochthonous formation indicating a short‐term expansion of land glacier to the central part of Siberia in Capitanian age; or (ii) the Urmegtei Formation was deposited in or around a limited ice‐covered continent in northeast Siberia in the Capitanian and was displaced to the present position by the Carnian.  相似文献   

14.
燕山板内造山带东部辽西、冀北地区,晚三叠世末—中侏罗世期间发生了两次大规模的滑坡、泥石流沉积和成群的巨大岩块崩塌事件。辽西晚三叠世—早侏罗世邓杖子组是一套以碳酸盐岩砾岩为主的崩塌、泥石流、滑坡及深水浊积岩序列,邓杖子组中砾岩的砾石成分自下而上表现出明显的变化规律,即邓杖子组下部砾岩砾石时代新而上部砾岩砾石时代老。其中最新的砾石成分是来自于邓杖子组之下的晚三叠世水泉沟组的安山岩,砾石时代的倒序显示同构造剥蚀-沉积的特点。同时,邓杖子组沉积组合也反映出伸展盆地的沉积特点。邓杖子组沉积后不久,在辽西—冀北的其他地区,还发育许多早—中侏罗世巨大的崩塌岩块,野外见到的最大岩块延伸长度超过4km。崩塌、滑坡、泥石流及成群发育的巨大崩塌岩块都是在地壳快速隆升过程中发生的同构造沉积记录,这从构造-沉积学的角度显示燕山地区在早中生代曾经发生过强烈快速隆升。  相似文献   

15.
古生代-中生代之交生物灭绝后,三叠纪海洋长期、复杂的生物和环境变化过程受到高度关注.基于牙形石、菊石生物时代及土隆地区三叠系全岩稳定碳同位素曲线,识别出6次负偏和5次正偏.其中早三叠世碳同位素的N1-N4四次负偏和P1-P4四次正向偏移过程,能与我国华南、日本等多个剖面进行对应,反映我国藏南所在的高纬度地区经历了与低纬度地区相同的全球碳循环异常.首次报道了土隆剖面识别出的晚三叠世卡尼期碳同位素负偏,其幅度达到3.3‰,可对应意大利、日本以及我国川西北地区和华南南盘江盆地所记录的卡尼期极端气候事件.中卡尼期温度升高,降雨量急剧增多,风化作用显著加强,陆源硅质碎屑输入增强,可能是土隆剖面岩性剧烈变化的环境驱动因素.   相似文献   

16.
Evidence of rifting and continental break-up to form the S Neotethys is found within the volcanic-sedimentary Koçali Complex. This is a folded, thrust-imbricated succession that includes lavas, volcaniclastic sediments, pelagic carbonates, radiolarites and manganiferous deposits. Interbedded ribbon cherts contain radiolarians of Late Triassic to Late Jurassic age. The lower part of the succession of Mid?-Late Triassic age (Tarasa Formation) is dominated by enriched mid-ocean ridge basalt (E-MORB). The overlying Late Triassic to Mid-Jurassic interval (Konak Formation) is characterised by intercalations of ocean island basalt and E-MORB. Taking account of structural position, the basalts erupted within the outer part of a continent–ocean transition zone. Continental break-up probably occurred during the Late Triassic (Carnian–Norian). Early to Mid-Jurassic lavas and volcaniclastic sediments record volcanism probably after continental break-up. In addition, the Karadut Complex is a broken formation that is located at a relatively low structural position just above the Arabian foreland. Pelagic carbonates, redeposited carbonates and radiolarites predominate. Radiolarians are dated as Early to Mid-Jurassic and Late Cretaceous in age. The pelagic carbonates include planktic foraminifera of Late Cretaceous age. The Karadut Complex resulted from the accumulation of calcareous gravity flows, pelagic carbonate and radiolarites in a relatively proximal, base-of-slope setting. After continental break-up, MORB and ophiolitic rocks formed within the S Neotethys further north. Tectonic emplacement onto the Arabian platform took place by earliest Maastrichtian time. Regional interpretation is facilitated by comparisons with examples of Triassic rifting and continental break-up in the eastern Mediterranean region and elsewhere.  相似文献   

17.
18.
西藏东部昌都地区三叠纪岩相古地理   总被引:3,自引:0,他引:3       下载免费PDF全文
昌都地区三叠纪岩相古地理演化可划分为5个阶段,各阶段的古构造与古地理格架既有继承性,又有差异性。早三叠世承袭了晚二叠世末期的古地理,古陆面积扩大,海域沉积只占据狭窄部分,并且从这个时期起,已展现出弧-盆体系中的岛、海格架雏形;中三叠世沿袭了早三叠世弧-盆体系,弧内盆地发生强烈拗陷,堆积了巨厚的多物源浊积岩与幕式弧火山岩;晚三叠世卡尼早期因东侧金沙江洋的消亡,发育磨拉石沉积,仅在局部地区表现为陆棚→斜坡→盆地沉积;晚三叠世诺利早期,全区范围内发生一次规模空前的海侵,碳酸盐沉积向东西两侧古陆超覆,弧-盆区岛海格局从此消失;晚三叠世诺利晚期以后,海水自东向西退出,海陆过渡相与滨岸陆屑沉积广泛覆盖全区。研究表明,三叠纪时昌都地区曾经存在着一个类似于现今印度尼西亚岛、海的古地理格局。  相似文献   

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楚雄前陆盆地系统的构造单元及沉积标识   总被引:10,自引:1,他引:9  
谭富文  尹福光 《沉积学报》2000,18(4):573-579,610
楚雄盆地是一个中生代周缘前陆盆地。地表及深部地质资料显示,盆地内部以渔泡江-沙桥断裂为界可划分为西部推覆带和东部前陆带。本文运用前陆盆地系统新理论,结合沉积、构造和地化标识,认为西部推覆带是典型的楔顶沉积,而不是前人划分的前渊沉积,东部前陆带上经历了递进式前陆盆地系统沉积作用,早期典型的前渊沉积可能消减于西部推覆带之下。  相似文献   

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