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1.
琼东南盆地西南部新生代裂陷特征与岩浆活动机理   总被引:8,自引:4,他引:4  
琼东南盆地是南海西北陆缘上一个北东走向的伸展裂陷带,向西与北西走向的莺歌海盆地相接,因此其西南部的构造演化包含了较多红河断裂走滑活动的信息。综合地质分析,我们发现琼东南盆地的发育既受控于南海北部陆缘的南东-南南东向伸展作用,又受到红河断裂左行走滑作用的控制和影响。盆地西南部裂陷带内发育了复式裂陷结构,由复式半地堑和复式地堑构成;裂陷带边缘的斜坡带和隆起上,以半地堑样式为主。始新世-早渐新世岩浆活动较多,主要表现为顺层充填的火山活动;中中新世后的岩浆活动分布较广,主要沿北西走向大断裂分布,在地震剖面上主要表现为尖锥状火山式活动特点。海盆扩张期,凹陷内缺乏岩浆活动。推测复式裂陷特点和较多的岩浆活动与陆坡区地幔上涌较高,具有较高的地温梯度,导致岩石圈弹性厚度降低有关。  相似文献   

2.
利用地震资料、油气勘探资料分析了南海北部大陆边缘珠江口-琼东南新生代盆地断裂系统的时空差异及动力学成因机制.珠江口-琼东南盆地古近系裂陷构造层以NE向、近EW向基底正断层构成的伸展断裂系统的几何学、运动学沿着盆地走向有明显变化,盆地内部隐伏的区域性和局部的NW向断裂及相关构造变形带构成伸展断裂系统之间的构造变换带.在空间上,区域性的云开、松涛-松南等NW向构造变换带以西为NE-NEE向正断层构成的"非拆离"伸展断层系,以东为NE向正断层、近EW向正断层(走滑正断层)复合而成的拆离伸展断层系.在时间上,古近纪裂陷作用可划分为早(文昌组沉积期)、中(恩平组/崖城组沉积期)、晚(珠海组/陵水组沉积期)3个有明显差异的裂陷期.裂陷早期,盆地西部以平面式正断层控制的简单地堑、半地堑为主,伸展量相对较小,东部则以铲式正断层控制的复式地堑、半地堑为主,伸展量相对大,断层向深部收敛在中地壳韧性层构成拆离的伸展断层系统.裂陷中期,琼东南盆地、珠江口盆地西部断裂具有继承性活动特点,珠江口盆地东部发育NWW-EW向伸展断层,并向深层切割早期浅层拆离断层,形成深层拆离伸展断层系统,而沿着云开构造变换带发育反转构造.裂陷晚期,琼东南盆地、珠江口盆地西部断裂具有活动性减弱特点,琼东南盆地东部发育NWW-EW向伸展断层,形成深层拆离伸展断层系统,而沿着琼中央构造变换带发育反转、走滑构造.珠江口-琼东南盆地不同区段断裂系统及其构造演化的差异性受盆地基底先存构造、地壳及岩石圈结构及伸展量等多方面因素的影响,拆离伸展断层系统与发育NWW向"贯穿"断裂的基底构造薄弱带、现今地壳局部减薄带相关,南海扩展由东而西的迁移诱导北部大陆边缘块体沿着先存NW向深大断裂发生走滑旋转是导致变换构造带两侧差异伸展的动力学原因,应力场及岩石圈热结构变化是引起拆离断层深度变化的重要因素.  相似文献   

3.
海南岛周邻发育有4个重要的新生代沉积盆地,即莺歌海盆地、北部湾盆地、琼东南盆地和珠江口盆地珠三凹陷。根据最新的地球物理数据,重新厘定这些盆地的构造与沉积演化及其与海南岛陆上构造的关联。这些盆地发育NE和NW向断裂构造,但存在极大差异性。前者受红河哀牢山断裂构造影响,表现为张扭性的拉分盆地。而后三个盆地则总体表现为裂陷盆地,夹于江绍 博白断裂与丽水 南澳断裂南段之间。伸展始于古新世,具有四次裂陷作用,并发育NW向走滑伸展断层。晚期岩浆对沉积盆地具有一定改造作用,表现岩浆喷发、热流值高。我们厘定了这些NE向断裂在海南岛延伸,滨海断裂可能延至海南岛东南缘,并表现出明显的地震活动性,推断海南岛新生代构造演化与南海北部陆缘演化具有一致性。  相似文献   

4.
运用丰富的三维地震资料, 在断裂体系静态刻画与动态分析的基础上, 分析珠一坳陷新生代断裂发育的时空差异性, 并就断裂转型机制进行探讨.结果表明: 断裂体系发育差异性及转型受控于不同区域动力学背景及岩石圈的差异伸展机制.裂陷期(E2w-E2e), 控盆断裂由始新世的北北东、北东-北东东向向近东西、北西西向转变, 岩石圈伸展作用由宽裂谷方式向窄裂谷方式转变以及由陆(北)向海(南)的迁移, 造成了断裂活动北强南弱及其向北扩展, 推测是因为印支地块的旋转挤出和古南海的俯冲导致区域应力场由北西向顺时针转变为近南北向拉张, 进而产生了断裂的幕式特征变化; 裂后拗陷期(E3z-N1z-N1h), 断裂活动微弱, 推测与岩石圈伸展中心逐渐向南迁移至南海扩张中心, 南海北部陆缘整体处于裂后沉降阶段有关; 构造活化期(N1y-N2w-Q), 先期北西西向、近东西向控盆断裂复活, 近东西、北东和北西向走滑断裂形成, 推测与弧-陆碰撞作用产生的北东东向右旋走滑作用有关.现今断裂体系特征体现了多期构造运动的叠加效应, 明确断裂发育的时空差异性对于珠一坳陷油气勘探具有重要指导意义.  相似文献   

5.
M盆地位于塔拉斯—费尔干纳(卡拉套)大型走滑断裂最北端,构造特征表明其具有复杂的形成演化过程。笔者从控盆断裂的发育历史出发,分析了盆地发育的构造背景,厘定了盆地类型,进一步研究了盆地演化特征。研究结果表明,控盆断裂受板块构造运动影响,存在早期左行走滑和后期右行走滑;M盆地为早中侏罗世的走滑-拉分盆地,属于走滑-伸展叠瓦扇构造系统。盆地中新生代地质演化大体经历了初始张裂(晚三叠世)、断陷发育(早中侏罗世)、断坳转换(晚侏罗世)、坳陷发育(白垩纪)和萎缩隆起(古近纪)等5个阶段,其中早中侏罗世为盆地断陷伸展、沉积与沉降的主要时期,白垩纪主要为坳陷期。  相似文献   

6.
唐渊  刘俊来 《岩石学报》2010,26(6):1925-1937
青藏高原隆升、周边地貌形成是新生代时期印度-欧亚板块碰撞后的重要响应。在滇西北地区发育了一系列由晚新生代(上新世以来)活动断裂所控制的盆地,例如宾川盆地、洱海盆地、鹤庆盆地、弥渡盆地等。宾川盆地是近南北向程海左行走滑断裂在走滑剪切作用下产生的北西向正断层和北东向走滑断层共同作用而形成的一个较大的拉分盆地。洱海盆地是由两组陡立的共轭张剪性(Transtensional)断层组限定的,为一伸展断陷盆地,总体上反映了近E-W向的区域伸展。滇西北地区发育的其它晚新生代盆地,如弥渡盆地、鹤庆盆地、剑川盆地等,也为区域走滑断裂及其分支断裂所控制,并且这些分支断裂在区域上为一组NE-SW和NW-SE向的共轭正断裂,反映了该区域近E-W向的伸展。将藏东南三江地区发育的活动断裂按照其走向分为三组:(1)NW-SE走向的断裂,如红河断裂、无量山-营盘山断裂等;(2)近N-S向断裂系,以程海断裂、小江断裂等为代表;(3)NE-SW走向的断裂,如丽江-剑川断裂、鹤庆-洱源断裂和南定河断裂等。这些断裂的震源机制解表明地震断裂活动性或者是走滑性质或者是伸展属性,它们的组合型式也揭示出藏东南三江地区在上新世以来表现为近E-W向的伸展。区域上,在藏东北部地区发育的断层构造组合普遍反映了以近E-W向挤压为主导的应力场。推测这一现象为上新世以来藏东地区上地壳围绕喜马拉雅东构造结做顺时针旋转所致,区域上受印度-欧亚会聚过程中印度板块顺时针旋转诱发的差异性应力场制约。  相似文献   

7.
济阳坳陷构造特征及形成机制讨论   总被引:28,自引:12,他引:16  
济阳坳陷总体表现为由多个次一级北断南超的半地堑凹陷组成。坳陷内的凸起构造呈近NE向的排列,单个凸起构造呈东西向展布。东西向构造为东营凹陷的主体构造方向,西部的几个凹陷则为北东向展布,坳陷区内的断裂构造以NE向断层为主。坳陷以伸展构造为主,同时发育有走滑构造和重力滑动构造。盆地演化经历了印支期NE向挤压、中生代中期裂陷、中生代晚期构造抬升、古近纪强烈断陷和新近纪整体坳陷等几个阶段。盆地的最终成型是地幔抬升产生的裂陷和走滑断裂产生的拉分联合作用的结果,来自东南方向的挤压作用是形成区内北断南超半地堑盆地的重要因素。  相似文献   

8.
梁瀚  唐浩  冉崎  陈康  马兵山  黄天俊  邬光辉 《地质学报》2023,97(8):2609-2620
近期研究发现四川克拉通盆地内存在大型走滑断裂带,是断控油气藏勘探开发的有利新领域,走滑断裂的分布与成因对油气目标评价具有重要意义。本文在三维结合二维地震资料解释的基础上,分析走滑断裂的分布与成因类型,并探讨走滑断裂的形成机制。结果表明,川中三维地震工区发育北西向走向为主的大型板内走滑断裂系统;走滑断裂呈雁列、斜列的不连续的带状分布,断裂发育成熟度低,具有断裂样式的多样性与分层分布的差异性;四川盆地存在川中克拉通内走滑断层、川东南帚状走滑构造、川东调节走滑带、川东北楔入走滑带、川西北斜向冲断走滑带等5个地区发育5种类型走滑断裂带;走滑断裂形成于震旦系灯影组沉积晚期,受控于原特提斯洋俯冲背景下的斜向伸展作用,基底北西向先存断裂构造复活,形成了调节斜向伸展裂陷槽的川中板内走滑断裂系统。结果揭示克拉通盆地可能发育大型的板内走滑断裂系统,不同于常规的板缘与板内调节走滑断裂系统。  相似文献   

9.
基于地震地质解释,根据断裂带发育的位置、产状及构造样式,将琼东南盆地深水区中央坳陷自西向东划分为3个断裂体系:乐东—陵水伸展南倾调节断裂体系、北礁—松南—宝岛伸展北倾调节断裂体系以及宝岛—长昌张扭走滑断裂体系。断裂体系控制了生烃凹陷的分布和储集砂体的发育,形成了多种类型的圈闭,提供了油气垂向运移的通道,有利于油气聚集成藏。陵水凹陷—北礁凹陷结合部圈闭发育带、宝岛凹陷南部断阶带、长昌凹陷西部圈闭发育带是有利勘探区带。  相似文献   

10.
华南北东向断裂在南海北部陆架的延伸   总被引:1,自引:0,他引:1  
南海北部陆缘发育大量含油气盆地,且南海北部陆坡存在丰富的天然气水合物资源,厘清其总体构造格局,对理解南海北部陆缘的构造演化及动力学机制、地震灾害评估与资源开发等具有十分重要的意义。本文通过重磁异常、二维地震资料解译,结合地震活动及构造地貌特征分析,发现华南陆块和南海北部陆缘的NE向主干断裂延伸方向一致且特征可进行对比,即华南发育的滨海、长乐-南澳、政和-大埔及邵武-河源-阳江四条NE向主干断裂可自然延伸至南海北部陆缘。延伸至南海北部的四条主干断裂控制了相应盆地的发育,其中,滨海断裂为珠二凹陷的东界,长乐-南澳断裂横穿珠江口盆地的珠一和珠二凹陷,政和-大埔断裂位于珠一、珠二坳陷的西界以及北礁凹陷的东界,河源-阳江断裂为琼东南盆地的西界。南海北部陆缘盆地群与华南陆缘盆地群在成因上具有相似性,皆为拉分盆地。南海北部陆缘分布的NE向右行断裂对盆地的发育以及展布起决定性作用,为控盆断裂。NEE向断裂控制盆地内部坳陷的充填样式,为控坳断裂。  相似文献   

11.
The Yinggehai basin is located on the northwestern shelf of the South China Sea. It is the seaward elongation of the Red River Fault Zone (RRFZ). The orientation and rift shape of the Yinggehai basin are mainly controlled by NW-, NNW- and nearly NS-trending basal faults. The depocenter migrated southeastward when the basin developed. The depocenter trended northwest before about 36 Ma, then jumped southward and became nearly N–S trending and migrated toward the southeast up to 21 Ma; thereafter, the depocenter trended northwest again. Based on above and structural evolution in neighbor areas, it is believed that the Yinggehai basin formation was mainly controlled by the extrusion accompanied by clockwise rotation of Indochina. We set up analogue models (thin basal plate model and thick basal plate model) to investigate the evolution of Yinggehai basin. From the experiments, we consider that the basin evolution was related to the extrusion and clockwise rotation of the Indochina block, which was caused by the collision of the Indian plate and Tibet. This process took place in four main stages: (1) Slow rifting stage (before 36 Ma) with a NW-trending depocenter; (2) rifting stage formed by sinistral slip of the Indochina block accompanied by rapid clockwise rotation between 36 and 21 Ma; (3) rifting-thermal subsidence stage affected by sinistral slip of the Indochina (21–5 Ma) block and (4) dextral strike–slip (5–0 Ma).  相似文献   

12.
南海西部晚渐新世主要断裂活动特征及与红河断裂之关系   总被引:2,自引:2,他引:0  
南海的形成演化是众多被动型边缘海中最复杂的,而南海西部的断裂带构造活动特征又是南海中最复杂的构造之一。本文针对前人提出的红河断裂带出莺歌海盆地后的东延、南延以及东南延问题,通过晚渐新世-早中新世琼东南盆地受到南北向挤压的区域应力场分析,认为这期的应力主要来自南海西部近南北向断裂带的右旋剪切活动,结合红河断裂带的构造运动特征,提出晚渐新世末南海西部发生断裂构造置换,红河断裂带17°30′N以南近SN走向部分被南海西缘断裂带所置换,并且构造活动特征与北部红河断裂带明显不同,南海西部晚渐新世前后两个时期不同的断裂构造活动特征反映了印度板块与欧亚板块碰撞造成的两种不同影响效应。  相似文献   

13.
莺歌海盆地构造演化与强烈沉降机制的分析和模拟   总被引:12,自引:3,他引:9  
孙珍  钟志洪  周蒂 《地球科学》2007,32(3):347-356
莺歌海盆地新生代发生了快速沉降, 盆内充填了最厚达17 km的沉积, 根据模拟实验, 印支地块或之上刚性地块的存在对莺歌海盆地的强烈沉降具有重要的贡献, 可能是造成莺歌海盆地裂陷期强烈沉降的重要原因之一.结合地质分析和物理模拟实验, 莺歌海盆地的演化大致可以分为以下4个主要阶段: 早期(42 Ma以前) 主要受到南海北部陆缘(主要是北部湾盆地) 裂解造成的右旋转换伸展作用的影响, 但影响范围较小, 主要为莺歌海盆地西北部和东部边界.42~21 Ma期间, 主要受控于印支地块左行走滑和顺时针旋转作用的影响, 莺歌海盆地在此期间发育了主体裂陷体系, 东侧受到右旋转换伸展应力场的叠加影响而导致沉降加强; 21~10.4 Ma期间, 受印支地块逐渐减弱直至停止的左行走滑作用的影响, 盆地西北部在21~15.5 Ma期间发生局部反转褶皱, 但盆地整体进入以热沉降为主的时期; 10.4 Ma以后, 盆地受华南地块沿红河断裂右旋走滑作用和5 Ma以后新一期热事件的影响.   相似文献   

14.
琼东南盆地西部环崖南凹陷的油气勘探亟需寻找接替领域.针对勘探研究中存在的3个地质问题,利用丰富的钻井和地震资料对红河断裂活动特征及其对环崖南凹陷构造-沉积-成藏的影响开展深入分析.认为红河断裂的走滑活动通过F1断层向琼东南盆地西部传递剪切应力,其演化与环崖南凹陷的构造-沉积作用具有良好的时空耦合关系,并控制了环崖南凹陷...  相似文献   

15.
《地学前缘(英文版)》2020,11(4):1231-1251
The tectonic evolution history of the South China Sea(SCS) is important for understanding the interaction between the Pacific Tectonic Domain and the Tethyan Tectonic Domain,as well as the regional tectonics and geodynamics during the multi-plate convergence in the Cenozoic.Several Cenozoic basins formed in the northern margin of the SCS,which preserve the sedimentary tectonic records of the opening of the SCS.Due to the spatial non-uniformity among different basins,a systematic study on the various basins in the northern margin of the SCS constituting the Northern Cenozoic Basin Group(NCBG) is essential.Here we present results from a detailed evaluation of the spatial-temporal migration of the boundary faults and primary unconformities to unravel the mechanism of formation of the NCBG.The NCBG is composed of the Beibu Gulf Basin(BBGB),Qiongdongnan Basin(QDNB),Pearl River Mouth Basin(PRMB) and Taixinan Basin(TXNB).Based on seismic profiles and gravity-magnetic anomalies,we confirm that the NE-striking onshore boundary faults propagated into the northern margin of the SCS.Combining the fault slip rate,fault combination and a comparison of the unconformities in different basins,we identify NE-striking rift composed of two-stage rifting events in the NCBG:an early-stage rifting(from the Paleocene to the Early Oligocene) and a late-stage rifting(from the Late Eocene to the beginning of the Miocene).Spatially only the late-stage faults occurs in the western part of the NCBG(the BBGB,the QDNB and the western PRMB),but the early-stage rifting is distributed in the whole NCBG.Temporally,the early-stage rifting can be subdivided into three phases which show an eastward migration,resulting in the same trend of the primary unconformities and peak faulting within the NCBG.The late-stage rifting is subdivided into two phases,which took place simultaneously in different basins.The first and second phase of the early-stage rifting is related to back-arc extension of the Pacific subduction retreat system.The third phase of the earlystage rifting resulted from the joint effect of slab-pull force due to southward subduction of the proto-SCS and the back-arc extension of the Pacific subduction retreat system.In addition,the first phase of the late-stage faulting corresponds with the combined effect of the post-collision extension along the Red River Fault and slab-pull force of the proto-SCS subduction.The second phase of the late-stage faulting fits well with the sinistral faulting of the Red River Fault in response to the Indochina Block escape tectonics and the slab-pull force of the proto-SCS.  相似文献   

16.
Qiongdongnan Basin is a Cenozoic rift basin located on the northern passive continental margin of the South China Sea. Due to a lack of geologic observations, its evolution was not clear in the past. However, recently acquired 2-D seismic reflection data provide an opportunity to investigate its tectonic evolution. It shows that the Qiongdongnan Basin comprises a main rift zone which is 50–100 km wide and more than 400 km long. The main rift zone is arcuate in map view and its orientation changes from ENE–WSW in the west to nearly E–W in the east. It can be divided into three major segments. The generally linear fault trace shown by many border faults in map view implies that the eastern and middle segments were controlled by faults reactivated from NE to ENE trending and nearly E–W trending pre-existing fabrics, respectively. The western segment was controlled by a left-lateral strike-slip fault. The fault patterns shown by the central and eastern segments indicate that the extension direction for the opening of the rift basin was dominantly NW–SE. A semi-quantitative analysis of the fault cut-offs identifies three stages of rifting evolution: (1) 40.4–33.9 Ma, sparsely distributed NE-trending faults formed mainly in the western and the central part of the study area; (2) 33.9–28.4 Ma, the main rift zone formed and the area influenced by faulting was extended into the eastern part of the study area and (3) 28.4–20.4 Ma, the subsidence area was further enlarged but mainly extended into the flanking area of the main rift zone. In addition, Estimates of extensional strain along NW–SE-trending seismic profiles, which cross the main rift zone, vary between 15 and 39 km, which are generally comparable to the sinistral displacement on the Red River Fault Zone offshore, implying that this fault zone, in terms of sinistral motion, terminated at a location near the southern end of the Yinggehai Basin. Finally, these observations let us to favour a hybrid model for the opening of the South China Sea and probably the Qiongdongnan Basin.  相似文献   

17.
中国西南部红河断裂带的活动演化历史长期以来备受国内外学者的关注,该断裂从陆地向海域延伸进入莺歌海盆地,并对莺歌海盆地的形成和演化起重要的控制作用。目前,红河断裂带经历早期的左旋走滑运动和后期的右旋走滑运动已经得到公认,但对于其精细的构造演化历史及其左旋走滑向右旋走滑运动转换的时间还未能达成共识。本文利用构造控制沉积、沉积反映构造的思想,通过对莺歌海盆地三维地震资料的构造解析,从T27界面上下地层厚度存在"跷跷板"式的变化、沉积中心的迁移、沉积速率的变化、陆架-陆坡坡折带的出现、微小断裂的特征以及底辟构造等方面的研究,确定莺歌海盆地红河断裂带的左旋走滑运动停止于T40(10.5Ma);T40~T30(10.5~5.5Ma)是构造变形的平静期;T30~T27(5.5~2.4 Ma)为左旋走滑运动向右旋走滑运动转换时期;T27(2.4 Ma)以后右旋走滑活动开始,并控制坡折带(包括莺歌海盆地和琼东南盆地)和底辟构造等的形成;T20(1.9 Ma)以来,右旋走滑活动逐渐减弱。  相似文献   

18.
The Pearl River Mouth Basin (PRMB) is an important area for studying the evolution of continental marginal basins in the northern South China Sea (SCS), but the structural variability and spatiotemporal rifting process remains poorly understood. This study investigates the differential structural features of the eastern, middle and western PRMB, as well as the extensional deformation laws in operation during the rifting stage, according to an integrated analysis of geometric characteristics and kinematic parameters, i.e., horizontal displacement and stretching factors of basin and crust. The PRMB underwent at least three phases of intense extension, which varied in time and space. (1) During the middle Eocene, most sags in the PRMB were intensely stretched and high-angle planar to listric boundary faults controlled the wedge-shaped stratigraphic geometry. (2) During the late Eocene-to-early Oligocene, the stratigraphic geometry of the sags was slightly wedge-shaped and continuously controlled by boundary faults, however, the extensional strength decreased relatively in the Northern depression zone, but increased in the Southern depression zone. (3) During the late Oligocene, the extension was extremely weak in the northeast PRMB, but relatively strong in the southwest PRMB, leading to tabular stratigraphic geometry in the northeast PRMB, but localized slightly wedge-shaped stratigraphic geometry in the southwest. The southwest PRMB still underwent relatively strong extension during the early Miocene. The southwest PRMB that was induced by a small-scale localized mantle convection system constantly rifted during the late Oligocene, controlled by the weak lithosphere, westward (southwestward) diachronous opening and southward jump of the ocean ridge. The applied quantitative parameters and spatiotemporal rifting process may be used as a reference with which to study the segmented continental margin rifts.  相似文献   

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