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1.
新疆北部晚古生代沉积盆地类型及其沉积特征   总被引:2,自引:1,他引:2  
新疆北部晚古生代,构造岩浆活动十分强烈并发育复杂且变迁迅速的众多沉积盆地。沉积盆地可划分为7类(大陆边缘裂谷类、岩浆弧类、弧前盆地类、边缘海盆地类、弧后前陆盆地类、边缘前陆盆地类、海沟-洋盆类)19型。沉积组合复杂多变,不同类型的沉积盆地各具特色。沉积盆地的演化经历了5次重大变革。新疆北部晚古生代沉积盆地随新疆北部板块的拉张-俯冲-碰撞而产生、发展、消亡。  相似文献   

2.
湘西地区志留纪沉积体系及典型前陆盆地的形成模式研究   总被引:5,自引:0,他引:5  
李斌  胡博文  石小虎 《地学前缘》2015,22(6):167-176
湘西地区发育志留系中、下志留统碎屑岩地层,缺失上志留统。经沉积学综合研究,可以划分出滞留盆地、浊积扇、三角洲、潮坪滨岸等沉积体系,从下向上海平面逐渐下降,其物源来自于东南部雪峰隆起。湘西地区志留纪沉积盆地构造演化经历了前陆盆地的形成期、发展期及萎缩期、消亡期几个阶段。其沉积构造演化规律为:前陆盆地初始形成期发育深水滞留盆地沉积体系;前陆盆地发展期发育海相浊积扇沉积体系;前陆盆地萎缩期发育三角洲沉积体系,前陆盆地消亡期发育潮坪沙坝滨岸沉积体系。  相似文献   

3.
陶启云 《安徽地质》2005,15(1):8-13
皖南地区从晚奥陶世-志留纪末以来,由于受加里东运动的影响.造成盆地性质由沉积盆地突然转变为构造盆地,形成冲断带和前陆盆地。扬子东南边缘从被动大陆边缘沉积盆地演化成为前陆盆地,是在挤压收缩构造背号下铸就了特有的古地理构造和演化特征,为典型的前陆盆地充填和向上变浅序列。通过对前陆盆地内露头层序地层的研究,将中奥陶统至志留纪系划分为1个二级沉积层序,以海平面相对变化和沉积物的转变进一步划分成3个三级层序。详细分析了每个沉积层序各体系域的特征。区内的晚奥陶世-志留纪总体为一变深往上又变浅的沉积层序。  相似文献   

4.
简述了国外前陆盆地研究的新进展。对前陆盆地类型划分、沉积、构造特征进行了研究。确定了四川前陆盆地的形成时间。在与国外前陆盆地对比的基础上,得出四川盆地是一个受多方向挤压应力综合作用的前陆盆地。  相似文献   

5.
前陆盆地的识别及形成演化   总被引:6,自引:1,他引:6  
杜小弟  左权 《世界地质》1994,13(3):11-14
前陆盆地的识别及形成演化杜小弟,左权,刘万洙(能源地质系)(博物馆)(能源地质系)0前言前陆盆地是介于褶皱山系与相邻克拉通之间的沉积盆地。其组成三要素是:褶皱山系、克拉通和盆地,缺一不可,典型实例是环绕瑞士阿尔卑斯山的磨拉石盆地。前陆盆地这一概念是D...  相似文献   

6.
楚雄前陆盆地的构造特征与沉积演化   总被引:13,自引:6,他引:7  
对楚雄前陆盆地西部及相邻构造格架进行了分析 ,认为原形盆地的西南部及相邻造山带受到了新生代红河断裂的强烈改造 ,而盆地西北部的盆 -山体系保留了盆地演化时期的基本格架。利用当代前陆盆地演化模式理论 ,对原形盆地的沉积特征及其与西部推覆构造的耦合关系进行了综合分析 ,认为扬子西部被动陆缘向楚雄前陆盆地转化的时期发生在晚三叠世卡尼早期 ,前陆盆地经历了 3个发展阶段 :卡尼期深水复理石沉积、诺利期浅水复理石沉积和瑞替期磨拉石沉积 ,并提出了相应的沉积 -构造演化模式。  相似文献   

7.
十万山盆地位于广西西南部,大地构造位置属于华南板块的西北缘,是在华南板块与杨子板块拼接的加里东运动之后,早古生代华南洋再一次打开形成被动大陆边缘。晚二叠世末,该地区变成孤后盆地,进一步转化成前陆盆地。在盆山转换过程中,经历了三次沉积-构造盆山转换过程:泥盆纪-二早叠世分地新生与被动大陆边缘拉张裂谷;晚二叠世与中三叠世间盆地构造性质转换与前陆盆地;晚三叠世至侏罗纪的晚期前陆磨拉石沉积。在碎屑岩陆架沉积阶段,生成碎屑岩烃源岩层。在碳酸盐台地沉阶段,发育硝屑灰岩、藻灰岩、礁灰岩和暴露作用生成的白云岩储集岩。因而其早期被动大陆边缘阶段构了古生新储组合。前陆盆地早期在前渊盆地内沉积了一套碎屑岩烃源岩。它与早期的储集层构成了新生古储组合。同时也对下伏地层起到了封闭作用。沉积地层逐层向克拉通斜坡上超覆,发育地层圈闭。前渊阶段中期快速沉积的巨厚的复理石沉积和晚期快速沉积形成的磨拉石沉积有利于早期沉积的迅速埋藏、成熟和保存。  相似文献   

8.
十万大山盆地中生代沉积充填特征及其演化   总被引:2,自引:0,他引:2  
十万大山盆地是印支期以来发展起来的中、新生代陆相盆地。盆地自晚三叠世-白垩纪具有比较典型的碰撞前陆盆地特征。该时期盆地的地层、沉积相类型及时空展布、沉积旋回和沉积边界的迁移具有明显的规律性。盆地的沉积地层多以山麓相、河流相为主,尚有少量滨浅湖相沉积,具近物源沉积特征;沉积相展布自晚三叠世至白垩纪具有沉积范围小-大-小-大的规律;沉积旋回呈现了浅-深-浅的规律;沉积边界和沉降中心不断向北和北东方向迁移。这些规律反映了十万大山前陆盆地的构造演化,即晚三叠世碰撞逆冲活动启动,盆地进入前陆盆地发育阶段;早、中侏罗世造山活动强烈,盆地沉降幅度大,物源供应充足;晚侏罗世造山活动减缓,盆地相对萎缩;白垩纪造山活动再次加强,盆地处于第二个发育期。  相似文献   

9.
中国地处三大陆板块的交汇部位,盆地形成,展布,沉积构造特征明显受其相互作用的控制。该文据中国中、新生代陆相盆地的特征及三大应力状态,将其分为相对应的裂谷盆地,前陆盆地与压隐盆地,走滑拉分盆地及类克拉通盆地等类型。  相似文献   

10.
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   

11.
ABSTRACT
An anomalous sequence of thick fossiliferous marine shale of late Oligocene-early Miocene age, here termed the Opuama Shale Member, occurs within the paralic Agbada Formation in the subsurface of the western Niger Delta. The Opuama Shale fills a deep palaeochannel which was cut into Eocene-early Oligocene paralic beds. Planktonic and benthic foraminifera suggest that deposition in the channel began in the late Oligocene-early Miocene at outer shelf-slope depths, and that by the late early Miocene the channel had filled to shallow neritic depths. The channel, which is believed to be of submarine origin, is termed the Opuama canyon. The Opuama canyon originated during the pronounced early-Middle Oligocene drop in sea-level, and was cut by turbidity currents. It was filled, during the major late Oligocene-early Miocene rise of sea-level.
The location of the Opuama canyon in the western re-entrant of the Niger Delta supports Burke's (1972) conclusion that the western and eastern (where ancient submarine canyon fills are known) re-entrants of the delta are potential sites for ancient submarine canyons. Burke based his conclusion on the observation that the eastern and western re-entrants of the modern delta are areas where opposing longshore drifts converge and generate turbidity currents which cut submarine canyons.  相似文献   

12.
依据丰富翔实的地层古生物资料,首次在内蒙古西部建立了比较完整的第三纪地层层序:命名或厘订了中始新统乌兰乌珠尔组、上始新统查干布拉格组、下渐新统乌兰塔塔尔组、上渐新统、下中新统乌尔图组、上中新统呼和好来组和上新统昂冈浩特组等7个地层单元;区分出了中始新世乌兰乌珠尔、晚始新世查干布拉格、早渐新世早期克克阿木、早渐新世晚期乌兰塔塔尔、晚渐新世因德里沟、早中新世乌尔图、晚中新世呼和好来和上新世昂冈浩特等8个动物群(组合)。  相似文献   

13.
李杰  徐钰林 《现代地质》1998,12(3):336-343,T002
研究了菲律宾海盆东北部“大洋钻探工程”125航次782A孔晚始新世以来的放射虫化石。根据Sanfilippo等1985年的分带,将研究区自下而上划分为10个带。讨论了始新世与渐新世、渐新世与中新世、中中新世与晚中新世、中新世与上新世以及上新世与第四纪的界线。研究区存在两个沉积间断,分别位于晚渐新世与早中新世晚期之间和中中新世与晚中新世之间。研究区第四纪放射虫化石仍以暖水分子为主,冷水分子分布较浅。依据放射虫化石分异度曲线得出,晚第三纪以来本区存在5个相对暖水期和5个相对较凉期,渐新世时处于冷水期,这与钙质超微化石复合分异度和碳酸钙含量曲线的变化是一致的。晚渐新世与早中新世晚期之间的沉积间断是由于中新世南极冰盖扩展造成大洋底层洋流活动加剧而形成的。  相似文献   

14.
受近南北向扩张机制控制,南海陆缘盆地或凹陷多呈NE向带状展布,总体上具有“南三北三”平行排列、外窄内宽的特点。新生代发生的4次重要区域构造运动具有穿时性,共发育3期盆地破裂不整合面,分别是早渐新世与晚渐新世之间、古近纪与新近纪之间、中中新世与晚中新世之间;由东往西,盆地破裂不整合面的时代逐渐变新。受构造运动与海平面升降影响,南海海域发育湖相、海陆过渡相和陆源海相3类烃源岩。由南北两侧向中央海盆,烃源岩类型由湖相逐渐过渡到海陆过渡相与陆源海相;从东向西,盆地主力烃源岩层位逐渐变新,由始新统-渐新统逐渐过渡到渐新统-中新统。南海海域烃源岩的分布规律与盆地破裂不整面存在密切关系:破裂不整合面形成早(早渐新世与晚渐新世之间)的盆地,主力烃源岩形成早(始新统湖相烃源岩);反之,破裂不整合面形成晚(中中新世与晚中新世之间)的盆地,则烃源岩形成晚(渐新统-中新统海陆过渡相到陆源海相烃源岩)。  相似文献   

15.
Eight lithofacies representing a westward trending, deep sea fan, dominantly deposited from mass flow mechanisms, are recognised in geologic sections in the lower part of the Sarava Formation, of Late Oligocene/Early Miocene age, on Maewo Island, Vanuatu, New Hebrides. Also present representing the floor on which the deep sea fan prograded are non-calcareous, red siltstone and minor green siltstone which indicate deposition beyond the calcareous compensation depth, i.e. a depth greater than 4.25 km, and rare thin airfall ash.Previous workers proposed that rifting occurred in the area now occupied by Maewo during the Mid Miocene. However, the great depth at which the Late Oligocene/Early Miocene strata were deposited suggests that rifting occurred prior to the Late Oligocene. Rifting may have occurred even earlier because Pentecost Island, which lies south of Maewo, has a dismembered ophiolite suite which ranges in age from 35-28 Ma (Oligocene). The ophiolite suite may have formed in an interarc environment.The writer's reconstruction of the Oligocene arc system of the New Hebrides is an analogue of the present day Mariana Arc System. Interarc rifting ceased by the Early Miocene and during the Mid-Late Miocene the subduction of zone may have migrated westwards to lie along the Maewo-Pentecost axis.  相似文献   

16.
The stratigraphic and structural evolution of the Pattani Basin, the most prolific petroleum basin in Thailand, reflects the extensional tectonic regime of continental Southeast Asia. E-W extension resulting from the northward collision of India with Eurasia since the Early Tertiary resulted in the formation of a series of N-S-trending sedimentary basins, which include the Pattani Basin. The sedimentary succession in the Pattani Basin is divisible into synrift and post-rift sequences. Deposition of the synrift sequence accompanied rifting and extension, with episodic block faulting and rapid subsidence. The synrift sequence comprises three stratigraphic units: (1) Upper Eocene to Lower Oligocene alluvial-fan, braidedriver, and floodplain deposits; (2) Upper Oligocene to Lower Miocene floodplain and channel deposits; and (3) a Lower Miocene regressive package consisting of marine to nonmarine sediments. Post-rift succession comprises: (1) a Lower to Middle Miocene regressive package of shallow marine sediments through floodplain and channel deposits; (2) an upper Lower Miocene transgressive sequence; and (3) an Upper Miocene to Pleistocene transgressive succession. The post-rift phase is characterized by slower subsidence and decreased sediment influx. The present-day shallow-marine condition in the Gulf of Thailand is the continuation of this latest transgressive phase.

The subsidence and thermal history of the Pattani Basin is consistent with a nonuniform lithospheric-stretching model. The amount of extension as well as surface heat flow generally increases from the margin to the basin center. The crustal stretching factor (β) varies from 1.3 at the basin margin to 2.8 in the center. The subcrustal stretching factor (5) ranges from 1.3 at the basin margin to more than 3.0 in the basin center. The stretching of the lithosphere may have extended the basement rocks by as much as 45 to 90 km and has led to passive upwelling of the aesthenosphere, resulting in high heat flow (1.9 to 2.5 Heat Flow Units [HFU]) and high geothermal gradient (45 to 60° C/km). The validity of nonuniform lithospheric stretching as a mechanism for the formation of the Pattani Basin is confirmed by the good agreement between the level of organic maturation modeled on the basis of the predicted heatflow history and measured vitrinite reflectance at various depths measured in some 30 boreholes.  相似文献   

17.
Basic volcanic rocks from Tafresh, west Kashan, and west Nain volcanic successions in the central part of Urumieh-Dokhtar Magmatic Assemblage (UDMA) of Iran yield K–Ar ages ranging from 26.8 to 18.2 Ma. These ages indicate significant Late Oligocene–Early Miocene basic volcanism in the UDMA. These ages, combined with K–Ar ages of 26.0 and 14.1 Ma, respectively, for associated low-silica and high-silica adakites, help constrain reconstructions of the UDMA geodynamic evolution. Late Oligocene–Early Miocene slab roll-back associated with an asthenospheric mantle influx are suggested as the major processes responsible for concurrent volcanism showing Nb–Ta-depleted, Nb–Ta-enriched and low-silica adakite signatures. Slab roll-back, the likely consequence of a decrease in subduction velocity, led to partial melting of the subducted slab and produced Early–Middle Miocene high-silica (dacitic) adakites. Oligocene to Miocene volcanic rocks do not conform to the Oligocene continental collisional model for the UDMA, rather they suggest a decrease in the subduction rate that prompted the asthenospheric mantle influx.  相似文献   

18.
Sea-level fluctuations in the terminal Eocene, Oligocene, and Neogene of the Eastern Paratethys are quantitatively assessed on the basis of facies and old coastlines traced on the northern platform shelf, levels of river valley incisions, and the study of seismic profiles. The first data massif allows the characterization and correlation of transgression stages in the history of the Eastern Paratethys. The greatest transgressions fall within the first half of the Late Eocene, mid-Early Oligocene, initial Late Oligocene, initial Early Miocene, the initial Tchokrakian, Karaganian and Sarmatian in the Middle Miocene, the middle and late Sarmatian and early Pontian in the Late Miocene, and the Akchagylian in the Caspian basin of the Pliocene. In contrast, the greatest incisions of northern rivers running from the platform allow us to establish the time and extent of the main declines in the base levels of the erosion. Maximal incisions date back to the terminal Eocene-initial Oligocene, terminal Solenovian time in the terminal Rupelian, the terminal Maikop in the Early Miocene, the terminal Sarmatian and middle Pontian in the Late Miocene, and the Early Pliocene in the Caspian basin. Large regressions also formed unconformity surfaces, traced on seismic profiles as erosion boundaries of several orders. The surfaces are confined to the Eocene/Oligocene boundary, middle and late Maikop, Sarmatian/Meotian boundary, middle Pontian, and terminal Miocene-initial Pliocene, as well as being traced even in the most deep-water basins. The synthesis of these data suggests a preliminary version for the curve of transgression-regression cyclicity. Its correlation with the eustatic curve shows their similarity only in the lower part-prior to the initial Middle Miocene, when Paratethys became a semi-closed basin.  相似文献   

19.
The present study deals with the lithostratigraphy and planktonic foraminiferal biostratigraphy of the Late Eocene-Middle Miocene sequence in the Al Bardia area, northeast Libya. The lithostratigraphical studies carried out on three stratigraphical surface sections, namely Wade Al Rahib, Wadi Al Hash and Wadi Al Zeitun, led to the recognition of three rock units from base to top: (1) the Al Khowaymat Formation (Late Eocene-Early Oligocene); (2) the Al Faidiyah Formation (Late Oligocene-Early Miocene); and (3) the Al Jaghboub Formation (Early-Middle Miocene). The planktonic foraminiferal biostratigraphical analysis led also to the recognition of nine planktonic foraminiferal zones ranged in age from Late Eocene to Early Miocene with one larger foraminiferal zone of Middle Miocene age. These are, from base to top, as follows: Truncorotaloides rohri Zone (Late-Middle Eocene, Lutetian), Globigerinatheka semiinvoluta and Turborotalia cerroazulensis s.l. Zones (Late Eocene, Priaborian), Cassigerinella chipolensis/Pseudohasitgerina micra Zone (Early Oligocene, Rupelian), Globigerina ciperoensis ciperoensis, Globorotalia kugleri Zones (Late Oligocene, Chattian), Globigerinoides primordius Zone (Early Miocene, Aquitanian), Globigerinoides altiaperturus/Catapsydrax dissimilis and Globigerinoides trilobus Zones (Early Miocene, Burdigalian), and the larger benthonic foraminiferal zone, Borelis melo melo Zone (Middle Miocene, Langhian to Serravallian). The study of planktonic foraminifera proved the existence of a regional unconformity between the Early and Late Oligocene, with the Middle Oligocene deposits being absent (absence of Globigerina ampliapertura and Globorotalia opima opima Zones), and another, smaller unconformity located between the Late Eocene and Early Oligocene, in which the uppermost part of the Late Eocene is missing.  相似文献   

20.
南海北部深水区LS33a钻井微体古生物年代地层格架   总被引:1,自引:0,他引:1  
南海北部琼东南盆地深水区接收了渐新世以来数千米厚的海相沉积地层,蕴藏着丰富的微体古生物化石。对深水区LS33a钻井岩芯的取样和化石鉴定,识别出21个浮游有孔虫化石带(N22带~P19带)和12个钙质超微化石带(NN19带~NP24带)。通过与大洋钻探(ODP)在南海实施的184航次的钻探结果和“国际年代地层表(2012)”等的对比分析,探讨了化石事件的地质年代意义,构建了LS33a钻井生物年代地层格架。在此基础上,讨论了更新统与上新统、上上新统与下上新统、上新统与中新统、上中新统与中中新统、中中新统与下中新统、中新统与渐新统、上渐新统与下渐新统之间地层界线位置以及崖城组、陵水组、三亚组、梅山组、黄流组、莺歌海组和乐东组地层的时代归属,建立了适用于南海北部深水区的高分辨率综合年代地层格架。  相似文献   

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