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1.
南海及周边部分地区特提斯构造遗迹:问题与思考   总被引:6,自引:1,他引:6  
对全球二叠纪-三叠纪古气候特征的研究表明,东特提斯地区晚三叠世古气候标志具有带状分布的特征。北巴拉望地块卡拉棉群岛科龙岛的晚三叠世沉积中发育反映较干燥古气候特征的鲕状灰岩,因此在古气候特征方面,北巴拉望地块晚三叠世地层不能与华南和印支地块同期地层对比,而应该与印度地块北缘喜马拉雅地区(向西)和琉球群岛(向东)对比。根据该古气候分析,北巴拉望地块在晚三叠世时应该位于南部亚热带较干燥气候带内,其晚三叠世的古地理位置比印支地块更靠南。对南海及南海周边部分地特提斯构造遗迹的研究,将有助于深入了解南海北部陆缘区相关构造带的性质及正确恢复南海扩张之前该区的地质发展历史。南海北部陆缘区也是研究解决特提斯构造向东延伸问题以及特提斯构造-太平洋构造时空转化问题的关键地区。  相似文献   

2.
华南中生代岩相变化及海相地层时空分布   总被引:17,自引:3,他引:17  
在搜集大量资料的基础上,分析了华南中生代地层时代、岩性、岩相对比关系,重点综述了中生代海相地层的时空分布特征。受所处构造部位的控制,华南中生代岩相时空变化总体上可分为3个区:东区(闽西南-粤东-粤北-粤中)、中区(粤西-桂东)、西区(滇西-滇东南)。中区在早三叠世以后完全隆升成陆,仅局部有山间盆地碎屑沉积。海相地层集中于东西两区,但存在明显的东西差异:海侵时间在东区为早三叠世、晚三叠世-早侏罗世和早白垩世,西区为中三叠世和中侏罗世;海侵方向在东区来自东南,西区则为中特提斯滇缅海的-部分。晚三叠世-早侏罗世的粤东海盆发育厚达5000m的海相和海陆交互相沉积,可能向南延伸到台西南盆地和南沙群岛东部,但它与南海西部围区的同时代海盆并不直接相通。  相似文献   

3.
古南海的展布范围以及俯冲消亡过程等一直是地质学家们争论的焦点问题。这不仅与南海扩张诱因密切相关,而且对南海地球动力学研究有重大的指导意义。在研究前人文献的基础上,对南海南部造山运动以及古南海俯冲过程之间的关系进行详细的论述。结果表明,南海南部构造活动主要分为两期:第一期运动从早白垩纪到晚白垩纪,古太平洋的洋壳俯冲到婆罗洲岛下方,俯冲带位于现今卢帕尔线一带,引起了曾母-南沙地块不断向西南婆罗洲靠近,并于晚白垩纪引发了碰撞造山运动。由于婆罗洲自身是由众多地块拼合而成,所以在始新世期间发生了多期碰撞之后的地块变形重组事件。最终在晚始新世(37 Ma)完成最后一期变形(沙捞越运动)。第二阶段是晚始新世(35 Ma)到中中新世(15.5 Ma),位于西巴拉姆线以东至菲律宾卡加延一带的古南海从西巴拉姆线以东,向婆罗洲岛下方俯冲,随后扩散到沙巴以及巴拉望岛以南的地区,直至菲律宾的民都洛岛一带停止俯冲。由此产生的拖曳力是南海扩张的主要诱因。与古太平洋板块俯冲产生的效果相似,古南海的俯冲使得婆罗洲岛与南沙地块不断靠近。在中中新世(15.5 Ma),引起南沙地块与婆罗洲岛在沙巴地区的碰撞(沙巴造山)以及巴拉望北部陆壳与菲律宾岛弧的碰撞而停止。由此带来的不整合面在南海南部普遍可见,甚至到达了巴拉望岛一带。而现今南沙海槽与巴拉望海槽并非是俯冲带的前渊,前者是对沙巴新近纪增生楔重力驱动变形的响应,后者是巴拉望岛北侧伸展背景下产生的半地堑盆地,在后期增生楔的作用下发生强烈沉降所形成。真正的俯冲带则分别位于南沙海槽东南部以及巴拉望海槽东南部。据现有证据推测,最少在10 Ma之前古南海就在菲律宾民都洛一带停止俯冲,从而完成了整个古南海的封闭。  相似文献   

4.
南海北部陆缘区中特提斯构造演化研究   总被引:9,自引:0,他引:9  
通过对南海及周边地区特提斯构造遗迹的综合分析,并与东亚、东南亚地区特提斯构造对比,认为南海北部陆缘区存在可以进行东、西向对比的中特提斯构造。相应的中特提斯洋因北巴拉望-礼乐-南沙地块与华南大陆边缘在白垩纪中期的碰撞而关闭。南海北部陆缘区中特提斯构造向西可以与加里曼丹的Metratus缝合线和苏门答腊的Woyla缝合线对比,向东经台湾海峡、琉球群岛与日本佐用带对比。南海北部陆缘区中特提斯构造的确认对正确解释南海北部陆缘区地壳结构在东西向和南北向的差异、重新认识华南陆域内地质构造演化以及对南海北部陆缘区油气资源勘探均具重要意义。  相似文献   

5.
南沙海域万安,曾母盆地的区域构造   总被引:2,自引:0,他引:2  
前新生代时,现在的印支地块和西婆罗洲地块,曾母块块属于印支陆地范畴,侏罗纪一早白垩世在纳土纳岛--西波罗洲博姜一带为一向西南的俯冲带,而在东马来半岛和加里曼丹岛斯赫瓦内的一带为岩浆-火山弧,两者为同一构造体制产物,中生代末,印支愉和缅泰马陆块南部,包括西波罗洲在内与北部分离构成巽他地块,并在白垩纪-早第三纪时(东部),渐新一早中新世时(西部)反时针旋转。其东部惠第三纪时从印支陆块上分离南移的曾母地  相似文献   

6.
南海南部海区前陆盆地形成与演化   总被引:8,自引:0,他引:8  
将南沙地块南缘与加里曼丹—巴拉望地块作为一个构造演化的整体进行研究,对南海南部构造边界的蛇绿—混杂岩及岩浆岩的分布和岩性,以及南海南部前陆盆地的构造与沉积特征加以描述、分析,发现前陆盆地系统的形成时间是自西南往东北,逐渐由晚始新世末—早中新世—中中新世,与南边的俯冲碰撞带形成时间相对应,认为南沙地块南缘与加里曼丹—巴拉望地块之间经历了一个与古南海消亡息息相关的连续演化的过程。  相似文献   

7.
自1997年以来,联邦德国地球科学和资源调查局(BGR)从南海,苏禄海地区的采集的地球科学数据连同可利用的商业钻井和大洋钻探计划(ODP)的井位资料一起作为综合数据进行了编辑和解释,用已解释的地震剖面对综合地层,岩性资料进行讨论和对比,以地层和构造分析的基础,把南海和苏禄发别划分为5个和4个主要的构造地层地体。南沙岛礁区(危险地块),礼乐滩,巴拉望-西北婆罗洲海槽及巴拉望岛是晚白垩世-早古新世期间  相似文献   

8.
礼乐盆地位于南沙海域东缘,为新生代大型含油气盆地,勘探前景可观。以礼乐-巴拉望地块区域构造事件及古地理演化为指导,结合钻井、拖网等资料,对礼乐盆地地震剖面T100、T70、T50三个关键界面进行了解释,分析了T70、T50两个界面的地震特征及地质意义。论证了在晚渐新世至早中新世南海扩张时期,礼乐-巴拉望地块为远离物源的浅水环境,适宜碳酸盐岩沉积,碳酸盐岩的发育范围较为广泛。通过与邻区巴拉望盆地已证实生物礁对比,分析了礼乐盆地深水区生物礁的地震识别特征及平面展布规律。解决了礼乐盆地深水区是否存在大型储集体的问题,提升了礼乐盆地深水区的勘探潜力,为礼乐盆地下一步的油气勘探提供了有利的依据。  相似文献   

9.
南海东北部中生代海相地层的分布及其地质地球物理特征   总被引:1,自引:0,他引:1  
南海东北部的珠江口盆地珠一坳陷、东沙隆起、潮汕坳陷和台西南盆地等4个地质构造单元中,除发育巨厚新生代地层外,还发育并保留较厚的早白垩世和早侏罗世海相地层.这些地层的地震反射特征表现为大角度倾斜、可连续追踪和中低频的反射层序.由叠加速度推算的层速度为4.3-5.0km·s-1.这些中生代地层具坳陷型沉积特征而与新生代断陷型充填式沉积明显不同,残存厚度约4 000-5 000m.东沙-澎湖-北港隆起带是中生代华南地块与南海地块的缝合拼接带.该拼接带显示为地壳增厚和高磁异常,古特提斯在此消亡.  相似文献   

10.
东海陆架盆地南部邻近陆域主要包括福建东南部以及广东东北部的广大地区。结合野外地质考察、岩石薄片镜鉴及样品地球化学测试结果等资料,研究了该地区晚三叠世—早侏罗世沉积古环境。研究区晚三叠世—早侏罗世时期,属于温湿气候环境,南部的粤东地区沉积水体深度较大,因此,大部分样品指示厌氧环境。晚三叠世时,整个东海陆架南部邻近陆域自南向北水体逐渐变浅,南部主要为滨海—浅海陆棚—深水陆棚环境,北部主要表现为受海侵作用影响的海陆过渡相环境;早侏罗世时,南部主要表现为水体较深的深水陆棚环境,北部主要表现为海陆过渡相—陆相沉积环境。通过对具有相同大地构造背景的邻近陆域沉积古环境的研究,从而可以推断缺乏钻井资料的东海陆架盆地南部沉积古环境自北向南由陆及海,为后续开展海域中生界油气地质条件研究提供依据。  相似文献   

11.
南沙海区中生界岩相分布及构造特征   总被引:3,自引:0,他引:3       下载免费PDF全文
为了了解南中国海南部南沙群岛陆架-陆坡区中生代地层发育情况,作者通过综合分析该海区钻井、拖网及1987年以来采集的20000多公里的多道反射地震勘探等资料,得到了对该区中生界基本特征的如下新认识:空间分布上,南沙的中生界具有从北部的郑和-礼乐隆起南缘向南增厚的趋势;沉积岩相方面,东部三叠纪时为深海相,侏罗纪为浅海与三角洲相,白垩纪为浅海-内浅海相,而往西南部中生代的海水深度有变深的趋势;中-新生代变形上,在南沙西部的曾母盆地,中生界褶皱为复式的、非协调性的,南沙中部多为舒缓褶皱,东部仅在近巴拉望海槽地带出现小幅度的褶皱。结合围区中生界及特提斯构造域的发育特征,作者提出南沙地块上的海相中生界在大地构造上归属于残留在中特提斯洋北部减薄陆缘地壳上的中特提斯期海相沉积地层,是该海域油气资源勘探不可忽视的对象。  相似文献   

12.
南沙海域礼乐盆地中生界油气资源潜力   总被引:4,自引:0,他引:4  
位于南沙东部海域的礼乐盆地是一大型的中、新生代叠置盆地,其特有的地质背景及巨厚的中生代地层显示了其与南沙海域其他新生代沉积盆地的差异。盆地内发育的厚度超过4 000 m的中生代海相地层,主要包括了上侏罗统—下白垩统的滨—浅海相含煤碎屑岩或半深海相页岩、上三叠统—下侏罗统三角洲—浅海相砂泥岩和中三叠统深海硅质页岩等3套地层,展示出盆地具有良好的油气生成潜力。而早期位于华南陆缘、现今位于南沙东部海域的礼乐盆地中生界,完全具备了形成油气藏的基本石油地质条件,具有较为良好的油气资源潜力,其中生界油气资源勘探具有非常重要的意义,将成为我国海域油气勘探的一个重要新领域。  相似文献   

13.
Jurassic–Cretaceous siliceous–volcanogenic rocks from nappes of tectonostratigraphic sequences of the East Asia Middle Cretaceous Okhotsk–Koryak orogenic belt are represented by a wide range of geodynamic sedimentation settings: oceanic (near-spreading zones, seamounts, and deep-water basins), marginal seas, and island arcs. The taxonomic compositions of radiolarian communities are used as paleolatitude indicators in the Northern Pacific. In addition, a tendency toward climate change in the Mesozoic is revealed based on these communities: from the warm Triassic to the cold Jurassic with intense warming from the Late Jurassic to the Early Cretaceous. Cretaceous warming led to heating of ocean waters even at moderately high latitudes and to the development of Tethyan radiolarians there. These data are confirmed by a global Cretaceous temperature peak coinciding with a high-activity pulse of the planetary mantle superplume system, which created thermal anomalies and the greenhouse effect. In addition, the Pacific superplume attributed to this system caused accelerated movement of oceanic plates, which resulted in a compression setting on the periphery of the Pacific and the formation of the Okhotsk–Koryak orogenic belt on its northwestern framing in the Middle Cretaceous, where Mesozoic rocks of different geodynamic and latitudinal–climate settings were juxtaposed into allochthonous units.  相似文献   

14.
Multiphase rifts tend to produce fault populations that evolve by the formation of new faults and reactivation of earlier faults. The resulting fault patterns tend to be complex and difficult to decipher. In this work we use seismic reflection data to examine the evolution of a normal fault network in the Oseberg Fault Block in the northern North Sea Rift System – a rift system that experienced Permian – Early Triassic and Middle Jurassic – Early Cretaceous rifting and exhibits N-S, NW-SE and NE-SW oriented faults.Both N-S- and NW-SE-striking faults were established during the Permian – Early Triassic rifting, as indicated by Triassic growth packages in their hanging walls. In contrast, the NE-SW-striking faults are younger, as they show no evidence of Permian – Early Triassic growth, and offset several N-S- and NW-SE-striking faults. Structural analysis show that a new population of NW-SE-striking faults formed in the Lower – Middle Jurassic (inter-rift period) together with reactivation of N-S-striking Permian – Early Triassic faults, indicating a NE-SW inter-rift extension direction.During the Middle Jurassic – Early Cretaceous rifting, faults of all orientations (N-S, NW-SE and NE-SW) were active. However, faults initiated during the Middle Jurassic – Early Cretaceous rifting show mainly N-S orientation, indicating E-W extension during this phase. These observations suggest a reorientation of the stress field from E-W during the Permian – Early Triassic rift phase to NE-SW during inter-rift fault growth and back to E-W during the Middle Jurassic – Early Cretaceous rift phase in the Oseberg area. Hence, the current study demonstrates that rift activity between established rift phases can locally develop faults with new orientations that add to the geometric and kinematic complexity of the final fault population.  相似文献   

15.
The Sørkapp Basin (NW Barents Shelf) contains a comprehensive sedimentary succession that provides insight into regional tectonics and depositional development of the shelf from the Devonian to the Cretaceous. With its location east of the mid-Atlantic spreading ridge and south of Svalbard, the Basin serves as an important link between the offshore and onshore realms.This study subdivides this sparsely studied basin into six main seismic units (three Paleozoic and three Mesozoic). A metamorphic basement together with assumed Devonian sedimentary deposits form the foundation for a chiefly Carboniferous basin. The Basin forms a syncline with infill showing limited fault-influence. Overlying the early infill are Late Carboniferous deposits which show less lateral variation in thickness but also active growth on the few faults showing significant displacement. The overlying platform deposits of the latest Carboniferous and Permian show a change in depositional geometry, with onlapping deposits towards the east probably resulting from uplift of the Stappen High and regional flooding. Subsequent, particularly Late, Triassic sedimentation shows a more distinctly progradational pattern with a dominantly southeastern source for sediments. During this shallow shelf-filling stage, the Sørkapp Basin is sheltered by the Gardarbanken High, blocking the Early Triassic clinoform development. The High was transgressed in the Middle Triassic and the platform-edge progressively approached the present Svalbard coastline.The youngest Mesozoic unit forms a separate saucer-shaped depocenter west of the Sørkapp Basin, where deposits are truncated by the seafloor in a mid-basin position and across the Gardarbanken High. The depositional pattern for this succession correlates with the outcrop pattern of the Adventdalen Group implying a post Middle Jurassic to Cretaceous age. The Sørkapp Basin has been referred to as a Cretaceous feature based in this depocenter. However, the foundations are much older and the Cretaceous depression is located west of the deeper basin. Accordingly, we propose the informal term Sørkapp Depression for the Cretaceous basin.  相似文献   

16.
从地质演化特征探讨墨西哥湾地区油气富集的基本规律   总被引:2,自引:0,他引:2  
墨西哥湾东部主体经历了中生代裂谷拉张、中侏罗世裂谷和地壳衰减、晚侏罗世洋壳形成及早白垩世的区域沉降4个演化阶段;西部主要受中生代太平洋板块向北美板块的俯冲影响,属弧后拉张。由于持续稳定的沉降,墨西哥湾沉积了巨厚的以海相地层为主的中生代地层,并提供了有利的烃源岩、储层和盖层。大量的构造、地层和复合型圈闭为油气富集提供了有利的场所。墨西哥湾盆地为典型的高演化拉张盆地,巴西东部(包括海区)为中等演化拉张盆地,二者均已成为重要的油气富集区。我国东部海区中生界南部以海相地层为主,北部以陆相地层为主,为一个低—中等演化的拉张盆地。前二者的油气富集规律为我国东部海区中生代盆地的找油提供了借鉴作用。  相似文献   

17.
This paper divided the age of Mesozoic strata in the Northern South China Sea into epochs by the stratigraphic correlation between land and sea areas. A Mesozoic stratigraphic profile from South China to the northern continental slope of the South China Sea was constructed by ground and seismic surveys. The depositional process was illustrated by the chronostratigraphic framework of the Mesozoic basin, and the oil and gas exploration prospect was discussed. Results indicate that the depositional process from the initial transgression in the Late Triassic to the Mesozoic maximum flooding event that occurred in the Early Jurassic period formed a continuous transgression when the depositional environment varied from littoral to semi-closed gulf and shelf. After this maximum flooding event, a continuous marine regressive process developed, including seawater withdrawal from the South China epicontinental region at the end of the Early Jurassic period, seawater withdrawal to the outer shelf of the Northern South China Sea at the end of the Early Cretaceous period, and seawater withdrawal to the slope trough at the end of the Cretaceous period. Research achievement not only connects major Mesozoic geological events but also specifies the time nodes of such events. Thus, an investigation of this event is significant to the Mesozoic tectonic evolution study of the South China Sea and Paleo-Pacific Ocean.  相似文献   

18.
我国南海历史性水域线的地质特征   总被引:3,自引:1,他引:2  
40a的海洋地质、地球物理实测研究表明,九段线不仅是显示我国南海主权的历史性水域线,而且总体上也是南海与东部、南部和西部陆区及岛区的巨型地质边界线。根据实测数据,本文将从地质成因、来源、演化的角度论述此南海历史性水域线的合理性。主要结论包括:历史性水域线的东段在地形上基本与马尼拉海沟一致,海沟西侧为南海中央海盆洋壳区,东侧为菲律宾群岛。根据国际地质研究的资料,菲律宾群岛始新世以前位于较偏南的纬度,后来于中晚中新世(距今16~10Ma)仰冲于南海中央海盆之上,因此菲律宾群岛是一个外来群岛。而黄岩岛在马尼拉海沟以西,是中央海盆洋壳区的一个岛礁,与菲律宾群岛成因不同。南海历史性水域线的南段在地形上基本与南沙海槽一致,伴随南沙地块由北部陆缘向南裂离,古南海洋壳沿此海槽以南俯冲至加里曼丹岛陆壳之下,因此南沙地块与加里曼丹陆块为两个来历不同的地块。南海历史性水域线西段的分布在地形上与越东巨型走滑断裂带基本一致,可能与西沙地块、中沙地块、南沙地块从南海北部陆缘向南滑移有关。南沙地块北缘陡直的正断层结构,突显中央海盆是拉裂形成,其基底和中新生代地层与北部珠江口盆地的地层结构可以对比,说明南沙岛礁原属我国华南大陆南缘,后因南海的形成裂离至现今的位置。  相似文献   

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