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1.
川东南古蔺铁索桥剖面志留系兰多维列统沉积时的古地理位置处于滇黔桂古陆之北的陆表海环境。埃隆阶上部石牛栏组从下段薄层泥状灰岩形成之后,相变为上段的生屑-砂屑灰岩夹含少量粉砂质泥岩,展示海水深度变浅的过程。本文基于该剖面露头和灰岩薄片鉴定,专述石牛栏组上段生物-沉积类型并分析浅海环境指标。石牛栏组上段粉砂质泥岩中大化石稀少,而灰岩层中底栖型后生动物壳相化石具有中等多样性,少量出现能鉴定属级的大化石密集层,可识别3种不同水动力强度改造的腕足类介壳滩;该段上部赋存珊瑚-层孔海绵原地格架生长建造的小型点礁,标定了该时期最接近滇黔桂古陆的后生动物造礁群落生态域分布点。石牛栏组上段不同粒度的壳相生屑颗粒与泥状灰岩砂屑构成灰岩的重要组分;海底环境指标,特别是不同水动力强度作用主导了灰岩中颗粒与灰泥含量的差异。  相似文献   

2.
黔北石牛栏组上部的石牛栏段灰岩时代为志留纪兰多维列世埃隆晚期,是上扬子区浅海底栖壳相后生动物繁盛阶段的产物。桐梓代家沟剖面处于黔中古陆以北的近岸带,石牛栏段灰岩序列呈现海退过程,微相特征表明这里频繁出现各类近岸浅海带清澈环境中常见的生屑滩沉积。石牛栏段下部出现风暴浪基面附近腕足类Zygospiraella和Pentamerus密集的介壳滩,大多数的滩相灰岩以细颗粒生屑堆积为主,夹含薄层腹足类生屑滩和鲕粒滩,仅见少量珊瑚薄层,可以排除此地为后生动物礁的栖居区;石牛栏段上部见数期叠层石生长,形态呈穹窿状或平缓席状,每期厚度不超过1m,伴生的暗色泥质夹层中产出的腕足类Lingullela-Eospirifer群落指示澙湖相;潮间带特有的薄层灰岩交错层理以及石牛栏段顶部的喀斯特面进一步昭示区域性逐渐发生的桐梓上升事件结束了近岸沉积。  相似文献   

3.
华南板块上扬子区志留系兰多维列统鲁丹阶中部–埃隆阶中部香树园组的沉积环境背景有差异性。滇黔桂古陆以北的陆表海区,即黔东北铜仁地区分别出现近岸浅海的白沙型礁滩相和远岸偏深水的印江型灰岩-碎屑岩相。印江型沉积区的缠溪剖面香树园组露头实测厚度约27 m,中-薄层灰岩中常含石英细砂颗粒,选择12个岩石薄片作微相鉴定和图示。灰岩中的生物多样性和丰度偏低,均为常见的正常浅海壳相化石类型,破碎程度偏高的细颗粒生屑与钙质砂屑共同形成浅海滩相单元。缠溪很接近白沙型分布区,白沙型-印江型的生物-岩相转换是在浪基面附近的缓坡带发生的,白沙型后生动物造礁群落短期生长且限于石阡-思南的近岸海域,未能向北面的缠溪外海区拓展。  相似文献   

4.
奥陶纪末的生物冰川灾变事件结束后,华南板块上扬子区进入志留纪初的海进期。黔东北志留纪初期香树园组(兰多维列统鲁丹阶上部-埃隆阶中部)是壳相动物群复苏时沉积的灰岩相地层,具有显著的生物-岩相分异。"白沙型"后生动物化石密集的礁滩沉积仅限于近岸正常浪基面附近的浅海区展布。同期石阡枫香铺沟村剖面远岸带"印江型"香树园组薄层灰岩中壳相动物大化石的生物多样性和丰度低,没有原地绑结岩型的生物礁和粗颗粒堆积的生屑滩,岩相和生物相特征显示各种细颗粒的生屑呈碎片堆积。尽管这里海水清澈度较高,但由于水深偏大且水动力偏低的环境指标抑制了"白沙型"造礁动物向广海区的空间拓展。这一实例凸显了黔东北陆表海区海水深度对香树园组底栖生态组合多样性的控制,导致志留纪最早复苏的生物礁古地理分布的局限性。  相似文献   

5.
黔北凤岗硐卡拉剖面下—中奥陶统湄潭组泥岩、粉砂岩中夹含一套47.5m的连续灰岩建造,是区内迄今所测得厚度最大的"中灰岩"段。中灰岩的岩石学特征显示其成分多为分异度很高的生屑、鲕粒(豆粒)和核形石等,颗粒破碎程度偏高,丰度高时可达颗粒支撑,灰泥基质和亮晶方解石胶结均有。这些颗粒堆积形成中—高能带生屑、内碎屑浅滩,纵向上略显旋回,亦见两层较薄含瓶筐石格架的生物层。这些特征皆属浅海带暖水型沉积的标志,将该剖面的湄潭组中灰岩与之同期的大湾组和紫台组中的灰岩相比较,后者形成于偏深的相带,灰泥和泥级、粉砂级陆源碎屑含量高,也缺乏典型的暖水成因标志,故可推知扬子区陆表海的灰岩沉积相存在深度控制的海水温差分异现象。  相似文献   

6.
奥陶纪末赫南特冰期和生物大灭绝事件结束后,扬子陆表海区志留纪兰多维列世早期的海进序列伴随着生物逐渐复苏的过程。在黔中古陆北缘石阡一带鲁丹晚期至晚埃隆早期的香树园组属近岸浅水带灰岩—碎屑岩沉积区。石阡县城北香树园剖面的香树园组以灰岩为主,夹含少量粉砂质、泥质陆源碎屑岩,频繁出现含丰富壳相后生动物化石碎片形成的薄层滩相单元。与大颗粒壳相化石为主形成的各类生物层状礁类似,生屑滩多为动荡流水改造的后生动物碎片近源沉积。滩相具有较高的生物多样性和化石丰度,是奥陶纪末生物礁复苏前浅海暖水区广泛分布的生态单元。此地香树园组缺少粗砂级以上的陆源碎屑颗粒,也无岩屑颗粒,指示沉积物具有较高的成熟度。推测黔中古陆靠近石阡的部位已经夷平,黔东北浅海区在香树园组灰岩沉积期具有偏低的海水浑浊度和碎屑岩沉积速率,生屑滩相灰岩单元是在正常盐度和高清洁度的环境下堆积的,附近有粉砂-泥级颗粒注入,但无大型河流输入丰富的淡水和陆源粗碎屑。  相似文献   

7.
罗平生物群产出于关岭组二段,该段大凹子精细剖面细致的沉积学描述记录显示,剖面岩性变化趋势为:从生物扰动灰岩到含硅质结核的条带泥晶灰岩(钙屑浊积岩)向白云岩演化.剖面详细的牙形石生物地层研究表明,牙形石带属于Nicoraella kockeli带,同时该带可分两个亚带,即Nicoraella kockeli type 1亚带和Nicoraella kocke-li type 2亚带.牙形石生物地层年代确定在Anisian期的Pelsonian亚期.通过大凹子剖面含牙形石段产出环境分析表明:深灰色具脉状层理含泥质灰岩的开阔台地相沉积环境牙形石产出较少且保存一般,而深黑色纹层状泥晶灰岩段台间盆地相沉积环境中牙形石产出丰富且保持完好.大凹子剖面沉积构造研究表明:罗平生物群产出于台间盆地相钙屑浊流沉积环境.  相似文献   

8.
塔里木板块西北柯坪地层区中-上奥陶统萨尔干组的分布和相变受控于当时西浅东深的海底深度差异。萨尔干组的厚度10米左右,为富含有机物的黑色页岩并夹少量灰岩薄层或透镜体。位于研究区西南的伽师西克尔剖面缺失大部分奥陶纪地层,上奥陶统铁热克阿瓦提组碎屑岩不整合于下-中奥陶统鹰山组灰岩之上,中-晚奥陶世的大部分时段属于暴露海面的剥蚀区;北部乌什的亚科瑞克剖面无萨尔干组岩性单元,为红色居多且粒度偏粗的碎屑岩夹白云岩薄层,属于近岸带碎屑岩为主的沉积区。西克尔向东北延伸150km至柯坪羊吉坎亦无萨尔干组,与萨尔干组同期沉积的地层在此表现为大湾沟组上部浅海灰岩的相变,且与上奥陶统桑比阶坎岭组偏深水相的红色薄层含泥瘤状灰岩之间呈整合接触;由西向东出露于柯坪苏巴什沟、柯坪大湾沟、阿克苏四石厂3个剖面的萨尔干组黑色泥页岩指示典型的滞流盆地相,而夹含于萨尔干组下部和上部的薄层灰岩之微相特征差异甚为显著,表现为该组下部可见数层密集砂屑颗粒形成泥粒状灰岩或颗粒灰岩,可解释为西部相邻的浅海碳酸盐岩台地区灰岩经重力流搬运后的再沉积;而该组上部含生屑泥状灰岩则属滞流盆地相区类似于黑色页岩环境的正常沉积。从羊吉坎灰岩台地到苏巴什沟滞流盆地相之间距离仅20余千米,坡度偏大是导致重力流形成的主要原因。  相似文献   

9.
塔里木板块古城4井中奥陶统一间房组的海进序列   总被引:1,自引:0,他引:1  
塔里木板块中央隆起区奥陶系碳酸盐岩台地东南缘的古城4井钻遇约130m厚的中奥陶统达瑞威尔阶一间房组灰岩。该组下部为表附藻-肾形钙藻-瓶筐石礁丘群落,间夹有薄层砂屑滩,海水深度推测位于10-30m的潮下带至正常波浪带之间;上部为中-低能带藻屑砂屑组合,灰泥含量增高,大致指示正常波浪带之下到最大浪基面之间30-60m的深度。古城4井与中央隆起区西北部巴楚露头区同期沉积均显示海水逐渐加深的过程,到上奥陶统桑比阶吐木休克组沉积期两地都达到了奥陶系的最大海泛面。  相似文献   

10.
甘肃平凉官庄剖面为上奥陶统平凉组的建组剖面,出露其完整的地层序列,主要由细砂、粉砂级颗粒的碎屑岩和灰岩构成。该地区在平凉组沉积时期的构造背景属华北板块西部,位于鄂尔多斯古陆西缘。对官庄剖面平凉组灰岩夹层开展的微相分析显示其中含有丰富的泥状灰岩砂屑,生屑种类含量偏低且破碎程度高,无浅海区特有的沉积构造,海水深度不利于底栖生态群落栖居。灰岩的沉积学机制指示鄂尔多斯古陆西南海区存在较陡的海底地貌,这些内碎屑不是原地或近原地沉积的,它们最初产生于浅海碳酸盐岩台地,经重力流、等深流长距离搬运后到达接近秦岭-祁连海槽的深水区沉积。  相似文献   

11.
黔东北石阡志留系兰多维列统埃隆阶上部的雷家屯组属灰岩和碎屑岩混合相,其分布限于滇黔桂古陆以北离岸几十千米范围内的浅海区。出露于枫香铺子沟、雷家屯、白沙龙口—筷子山、白沙均田和本庄岩门的5个剖面存在生物-沉积相的差异性。铺沟村粉砂岩—泥岩含量高于灰岩,达到4∶1,壳相化石丰度最低且无生物礁滩灰岩沉积;其它4个剖面的碎屑岩—灰岩比例约1∶1,雷家屯壳相化石最丰富,上部出现米级厚度的珊瑚-层孔虫点礁;筷子山剖面的雷家屯组下部开始出现雏形礁,之上的礁核灰岩现已被剥蚀掉,但从礁基的菲利普构造和礁翼塌积岩推测,点礁的正向隆起规模是很明显的;均田剖面仅出露雷家屯组上部约7m的地层,多为粉砂岩和生屑灰岩薄层;岩门剖面多为薄层细颗粒生屑滩相灰岩,近顶部出现钙质微生物形成的叠层石。偏西剖面的雷家屯组顶部展现侵蚀面、泥裂等现象,是桐梓上升期海底暴露的证据,唯有最靠东的铺沟村雷家屯组顶部未见暴露标志,与之上马脚冲组呈整合接触。  相似文献   

12.
《Comptes Rendus Palevol》2014,13(5):403-420
The Canjuers conservation Lagerstätte represents a Late Jurassic lagoonal environment. The sedimentology and stratigraphy of the locality show three different depositional sequences. Fossils are mainly found in the basalmost layers that correspond to the first phase of deposition in the lithographic limestones sensu stricto. The fossil biodiversity is rich. So far, more than 1000 specimens including 38 invertebrate and 18 vertebrate taxa have been recovered from the limestones. The depositional information suggests that most invertebrates and vertebrates were not autochthonous to the lagoon, but swept in during storm events from the open sea or nearby emerged reef environments.  相似文献   

13.
塔里木板块中央隆起区的塔中低隆带上奥陶统凯迪阶良里塔格组礁相群落是晚奥陶世生物礁演化阶段的例证。该组分为5个岩性段。塔中16井区位于塔中Ⅰ号断裂坡折带向台地内部延伸的缓坡区,海水深度和水流能量显著控制碳酸盐岩的岩相分布。良里塔格组所赋存的典型动物格架礁集中于台地边缘的高能区,而塔中16井区不属于大型动物格架礁建造的富集区域,其早期多以低能带沉积为主,特别是塔中16井和塔中166井灰泥坪常见;晚期常见高能滩相和灰泥丘以及近礁沉积,可划归为台缘坡折带大型格架礁建造向台内的延伸区,这里的水深和能量变化更频繁。偏西北的井在良二段沉积之后抬升较早,东南的塔中161井则保存部分良一段沉积。  相似文献   

14.
Summary A local intraplatform basin developed in the Gartnerkofel-Zielkofel area of the Carnic Alps (southern Carinthia, Austria) during the Middle Triassic (Ladinian). This basin was filled with a transgressive basinal sequence composed of the Uggowitz Formation and overlying Buchenstein Formation. At the northwestern slope of the Gartnerkofel, the platform carbonates of the Schlern Dolomite interfinger with the Buchenstein Formation, causing the formation of two depositional sequences. The Uggowitz Formation consists of the Uggowitz Breccia and the Kühweg Member. Sediments of the Uggowitz Breccia were formed by different types of gravity induced processes. The Kühweg Member is a thin sequence of silt-and fine-grained sandstones which were deposited in a slope to basin margin environment by turbidity currents. The overlying Buchenstein Formation consists of hemipelagic to pelagic limestones of Fassanian age with intercalated pyroclastic rocks (Pietra verde). Nodular limestones were deposited under slow rates of accumulation during a relative sea-level highstand. The uppermost Buchenstein Formation is composed of hemipelagic limestone beds with intercalated graded calcarenites and breccias of platform-derived debris, showing characteristics features of a fore-reef slope of the prograding Schlern Dolomite. Uggowitz Formation and basal Buchenstein Formation are interpreted as a transgressive systems tract, nodular limestones from the middle part of the Buchenstein Formation mark an early highstand systems tract, forereef slope sediments of the upper Buchenstein Formation formed during the beginning regression of a late highstand systems tract, the basal part of the overlying Schlern Dolomite probably reflects a lowstand systems tract. The intercalated bedded limestone facies within the Schlern Dolomite is characterized by large, platform derived blocks, slump structures, breccia beds, graded calcarenites and hemipelagic limestones indicating a forereef slope environent. This intercalated facies belongs to the Buchenstein Formation and interfingers with the Schlern Dolomite. Conodonts from this intercalated slope facies point to Late Fassanian age. Therefore, the two Middle Triassic depositional sequences of the Gartnerkofel area can be correlated with the depositional sequences ‘Ladinian 1’ and ‘Ladinian 2’ of the Dolomites, proposed byDe Zanche et al. (1993). A brief comparison with the basinal sequences of similar age of the karawanken Mountains and the Carnia is presented.  相似文献   

15.
The Jahrum Formation was deposited in the foreland basin in southwest Iran (Zagros Basin). The Zagros mountain belt of Iran, a part of the Alpine–Himalayan system, extends from the NW Iranian border through to SW Iran, up to the strait of Hormuz. The various facies of the Jahrum Formation were deposited in four main genetically related depositional environments, including: tidal flat, lagoon, shoal and open marine. These are represented by 14 microfacies. The Jahrum Formation represents sedimentation on a carbonate ramp. Tidal flat facies are represented by fenestral fabric, stromatolitic boundstone and thin-bedded planes. Carbonate deposition in a shallow marine lagoon was characterised by wacke–packstone, dominated by various taxa of imperforate foraminifer. The shoals are made up of medium- to coarse-grained skeletal and peloidal grainstone. This facies was deposited predominantly in an active high energy wave and current regime, and grades basinward into middle ramps facies are represented by wackestones–packstones with a diverse assemblage of echinoderm and large benthic foraminifers with perforate wall. Outer ramp facies consist of alternating marl and limestones rich in pelagic foraminifera. There is no evidence for resedimentation processes in this facies belt. The sequence stratigraphy study has led to recognition of three third-order depositional sequences.  相似文献   

16.
Detailed stratigraphic analysis of the Omo I and Omo II fossil localities confirms both the relational and sequential context reported by Butzer in 1969. The two fossils derive from approximately the same level within upper Member I of the Kibish Formation. Additional features of the local stratigraphic sequences indicate a complex history of depositional events, minor erosional surfaces, and weak soil formation throughout upper Member I.  相似文献   

17.
Summary Modern carbonate sedimentation in the Caribbean Sea commonly occurs on banks that are surrounded and isolated by deep oceanic water. This depositional regime also occurred during the Tertiary, and many islands, such as Cayman Brac, have sequences that evolved in such settings. Cayman Brac is a small (about 39 km2) island, located on the Cayman Ridge, that has an exposed Oligocene to Pliocene succession which encompasses three unconformity-bounded formations. The upper Lower Oligocene Brac Formation is formed ofLepidocyclina limestones and sucrosis dolostones that locally contain numerous bivalves and gastropods. The overlying Lower to Middle Miocene Cayman Formation is formed of pervasively dolomitized mudstones to grainstones that contain an abundant, diverse biota of corals, gastropods, bivalves, foraminifera, and algae. Rhodolites are locally common. The Pliocene Pedro Castle Formation is formed of limestones, dolostones, and dolomitic limestones that contain a biota which is similar to that in the Cayman Formation. The unconformities between the formations represent substantial periods of time during which the previously deposited carbonates were lithified and eroded to produce karst terrains. All facies in the Brac, Cayman, and Pedro Castle formations on Cayman Brac developed on a bank that was no more than 20 km long and 3 km wide. There is no evidence of reef development other than isolated thickets ofStylophora and/orPorites and no systematic stratigraphic or geographic changes in the facies patterns of the formations. Comparison with modern Caribbean banks shows that the depositional regime was primarily controlled by water depth and energy levels. Limestones of the Brac Formation probably accumulated in low-energy conditions in water less than 10 m deep. The overlying Cayman Formation contains facies that formed in water 15 to 30 m deep with good cross-bank circulation. The Pedro Castle Formation formed in slightly shallower water (5–25 m) and lower energy conditions. The disconformities between the packages correlate with world wide eustatic drops in sea level.  相似文献   

18.
Based on microfacies analyses and sedimentological data, 17 facies are identified within the Middle Miocene carbonates at Siwa Oasis in the northern Western Desert of Egypt. These facies are attributed to five main facies belts. Within these facies and facies belts, five foraminiferal assemblages are recognized. A depositional model relates the reported facies and biofacies to a down-dip depositional profile of an inner to middle carbonate ramp. The facies of the peritidal to restricted lagoon (facies belt 1) and the less-restricted lagoon (facies belt 2) were deposited in the inner ramp behind the barrier/beach shoal facies belt 3. Basinward, lime mudstone of facies belts 4 and 5 accumulated in a proximal to distal middle ramp, respectively. The depositional evolution involved three stages, which are strongly controlled by tectonics and eustatic sea-level changes. The first stage comprises the transgressive Lower Miocene clastic-dominated fluvial facies of the Moghra Formation. The second stage heralds the deposition of the Langhian inner-ramp carbonate and shale facies of the basal Oasis Member of the Marmarica Formation under a relatively high stand of sea level, constrained clastic influx and climate warming. The final stage is represented by Langhian to Serravallian mid-ramp carbonate-dominated facies of the Siwa Escarpment and El Diffa Plateau members under fluctuating sea level, and a westward restriction in clastic supply and water turbidity.  相似文献   

19.
In the interior of northeastern Brazil there occurs the Santana Formation of Aptian age, composed lithologically of three members: Crato — an alternation of thin limestones and shales; Ipubi — gypsum; and Romualdo — almost pure limestone. The formation is very fossiliferous; pollen, plant remains, ostracodes, conchostracans, mollusks, echinoids, fishes and a few reptiles. The fishes and reptiles occur in limestone concretions. All data on sediment character and on fossils have been considered together for the interpretation of the palaeoenvironment of the formation.It was concluded that at the time of the Crato Member the deposition occurred in shallow lakes and swamps. Later (Ipubi Member), a marine invasion took place during a time of dry climate, causing anhydrite precipitation. Gradually the connection with the sea became obstructed so that the environment at the end of the depositional period became once more one of fresh water (Romualdo Member). Faunal assemblages and sediments point to a fairly great supply of river water during the whole time of basin deposition, under warm and dry climatic conditions. The connection with the sea persisted for a rather short period.  相似文献   

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