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1.
南海北部陆缘位于特提斯与古太平洋两大构造域的叠合部位,构造特征十分复杂,其构造属性一直是国内外学者争论的焦点,从主动陆缘到被动陆缘,火山型被动陆缘到非火山型被动陆缘等均有表述。南海复杂的形成机制以及东、西部构造差异性所引起的地球物理、岩浆活动等认识的异同,是造成南海北部陆缘构造属性认识差异的主要原因。通过与全球典型地区的比较研究,进一步加强对南海形成演化过程分析,开展大洋钻探与多学科综合分析,揭示南海海盆的多期扩张与多盆张裂特征,是认识南海北部陆缘构造属性的关键。探讨了南海三叉裂谷张裂模式,初步认为南海第1次扩张具有非火山型被动陆缘性质,第2次扩张具有火山型陆缘性质。  相似文献   

2.
在科技部的支持下, 中国在1998年加入国际大洋钻探计划(International Ocean Drilling Program, IODP), 迄今为止已组织了4+1个航次的大洋钻探。通过IODP-CPP (complimentary proposal project)项目, 我国科学家主导完成了349、367/368/368X多个钻探航次, 实现了对南海张裂—破裂—扩张发育历史的钻探和取样, 对南海生命史的研究起到了重要的约束作用。本文系统总结了367/368/368X航次在南海北部洋陆过渡带钻探取得的最新成果, 证实南海北部陆缘不同于伊比利亚型陆缘, 具有陆洋转换迅速的特点, 洋陆过渡带地壳内有一定程度的同张裂岩浆侵入和底侵。钻探航次在科学上取得了巨大的成功, 钻探结果提升了对陆洋转换过程和机制的认识。航次期间, 广泛而深入的国际交流与合作极大提升了中国科学家对钻探平台管理、国际大团队合作管理以及人才培养和科普互动等各方面的认识, 加快了中国海洋科考国际化的步伐。  相似文献   

3.
西太平洋聚集了地球上大量的边缘海盆和俯冲带,在全球地球动力学研究中占有举足轻重的地位,一直以来都是大洋钻探的重点区域。文章通过归纳过去40年来科学大洋钻探在西太平洋的地球动力学成果,分析当前大洋钻探的现状,进而探讨仍然存在的问题及未来钻探的区域。钻探成果揭示了边缘海盆的演化过程,包括日本海盆的弧后海底扩张成因,菲律宾海的弧后扩张和残留弧的形成模式及南海构造演化过程。深海沉积物的研究及玄武岩的地球化学分析为海盆的扩张成因提供依据,同时为了解海盆扩张过程中的地幔演化过程提供重要信息。大洋钻探成果表明,俯冲倾角大小不仅影响俯冲工厂的动力学机制,而且对俯冲板块耦合性具有控制作用。目前日本南海海槽发震带钻探项目的最大钻探深度为3056米,未来几年有望获得发震带的岩石样本。对于西太平洋的两个重要构造单元-Shatsky海隆和翁通—爪哇海台的成因机制问题,大洋钻探获取的依据仍不能单一地支持某一个假说。在南斐济海盆及赫布里斯海盆发现的大洋红层的形成主要受控于海盆的海底扩张事件。苏拉威西海和南海发现的大洋红层直接发育在大洋玄武岩之上,可能为海盆的扩张起标定作用。虽然过去进行了大量的钻探工作,但因西太平洋边缘海盆具有很大的构造多样性和复杂性,仍然有很多科学问题有待进一步开展研究。  相似文献   

4.
南海及其周缘中新生代火山活动时空特征与南海的形成模式   总被引:11,自引:2,他引:11  
根据南海海区、华南和中南半岛的地面露头、钻井、拖网及地球物理资料,分析了南海地区火山活动的时空分布特点。在南海陆缘和周边陆区中生代末期花岗岩分布非常广泛。新生代火山岩活动规模较小,主要是海底扩张之后在洋盆扩张脊、北部陆缘的陆洋边界附近、雷琼地区和中南半岛南部的玄武岩。在南海北部陆缘的深部地震调查中发现,在地壳下部存在小规模的高速异常体,结合浅部的晚第三纪一第四纪火山活动,认为该高速体形成于南海扩张之后。这些特征表明,在南海的拉张过程中岩浆供应不丰富,在陆缘未形成大规模的侵入和喷出岩。南海陆缘属于岩浆匮乏型被动大陆边缘。南海海区残留多个刚性断裂陆块,反映了裂谷拉张过程中脆性破裂。根据这些特征,南海形成难以用印藏碰撞引起的软流圈物质上涌导致岩石圈破裂这样的模式来解释。  相似文献   

5.
西太平洋若干沟-弧-盆体系及板内岩浆成因研究进展   总被引:1,自引:0,他引:1  
张国良  王帅  张吉  罗青  李铁刚 《海洋与湖沼》2017,48(6):1220-1234
板块俯冲和板内岩浆作用都是导致地表和地球内部物质大规模循环的重要地质过程。但是,两个地质过程的岩浆成因机制,以及成因上的内在联系都存在很大争议。西太平洋是全球沟-弧-盆体系最发育的地区,也是全球板内火山作用(海山和洋底高原)分布最集中的场所。为阐明西太平洋海盆的上地幔软流圈性质、岛弧岩浆形成的控制机制、以及板块内部火山作用(碱性火山岩)的成因机制,在中国科学院战略性先导科技专项(A类)"热带西太平洋海洋系统物质能量交换及其影响"项目的资助下,本文对西太平洋马里亚纳-雅浦俯冲系统、汤加-科玛迪克俯冲带及其俯冲前缘海盆的成因机制、南中国海扩张期海盆玄武岩和板内火山作用、西太平洋海盆上地幔的Dupal异常分布和成因机制等展开了系统的岩石学和地球化学研究,并取得了新的科学认识和成果。主要认识包括:(1)雅浦岛弧主要由变质岩-角闪岩组成,其形成于3—6Kbar温压条件下,代表岛弧下部来自帕里西维拉海盆的变质基底;(2)加洛林洋脊主要由玄武岩组成,其不是一个岛弧,而可能是一个地幔柱形成的洋底高原;(3)汤加-科玛迪克岛弧岩浆组成体现了西南太平洋俯冲板片俯冲速率的直接影响;(4)厘定了汤加-科玛迪克俯冲前缘板块的年龄(103.7Ma),并认识到其代表古太平洋扩张中心并消耗了Ontong Java超级地幔柱的组分;(5)首次在南海发现了碳酸盐化的硅酸岩岩浆向碱性玄武岩转化的现象,提出了板内碱性玄武岩成因的新链条;(6)西太平洋海盆的地幔广泛存在Dupal异常,该异常从西太平洋岛弧俯冲带一直延伸至南海海盆,其中南海海盆的Dupal异常主要受到大陆裂解和海南地幔柱作用的双重影响。通过以上认识,进一步揭示了西太平洋沟-弧-盆体系和板内岩浆体系作用机制,以及俯冲板片物质与板内火山活动之间的成因关联,这对于深刻理解板块构造导致的地球内外物质循环规律有一定的推动作用。  相似文献   

6.
南海大陆边缘动力学研究进展:从陆缘裂解到海底扩张   总被引:1,自引:0,他引:1  
南海处于印度—澳大利亚、欧亚和太平洋三大板块汇聚中心,地理位置独特,地质作用复杂,是研究大陆裂解—海底扩张过程以及大陆边缘动力学的天然地质实验室。通过总结近年来对南海大陆边缘动力学研究的最新进展认为:①南海北部陆缘为非火山型被动陆缘,其东段虽有岩浆底侵活动,但其为海底扩张结束后的产物,南部陆缘未发现下地壳高速层,也为非火山型陆缘;②南海陆缘上下地壳的拉张因子存在差异,表明陆缘的张裂变形在纵向上并非是均一的,而具有随深度变化的特点;③南海海盆是通过2期扩张形成的,具有由NE向SW渐进式扩张的特点,其东侧表现为成熟的洋盆,而西侧保留了更多陆缘裂谷的特征;④南海海盆形成的动力学模型存在碰撞挤出模型和古南海拖曳模型2种争论,2种模型各有优缺点,需要今后进一步综合研究。  相似文献   

7.
《海洋地质与第四纪地质》2007,27(3):F0002-F0002,F0003
同济大学海洋地质国家重点实验室以海洋及相邻陆区的环境演变与海底资源为总目标,以与国际接轨的深海基础研究为特色,围绕大洋钻探等大型国际研究计划,突出“地球系统科学”的思想,实现海洋与陆地相结合,古代与现代相结合,依靠国内外的广泛合作和学科的交叉渗透,采用高分辨率的测试和数值处理手段,探索和发展海洋地质研究中的新思路、新途径和新方法。  相似文献   

8.
同济大学海洋地质国家重点实验室以海洋及相邻陆区的环境演变与海底资源为总目标,以与国际接轨的深海基础研究为特色,围绕大洋钻探等大型国际研究计划,突出“地球系统科学”的思想,实现海洋与陆地相结合,古代与现代相结合,依靠国内外的广泛合作和学科的交叉渗透,采用高分辨率的  相似文献   

9.
南海在扩张前是否经历了陆内裂谷阶段是南海成因研究中一个重要的问题。三水盆地位于南海北部陆缘,其新生代以来喷发的双峰式火山岩具备大陆裂谷的岩石组合特征。通过对其中玄武岩主微量元素分析认为三水盆地玄武岩可以分为亚碱性和碱性玄武岩系列,两者均显示出明显的Nb、Ta正异常,相对于大陆地壳具有较低的Th/Sc、La/Nb和U/Al×1000,陆壳混染程度低;首次对盆地内玄武岩进行40Ar-39Ar测年,结合前人年代学结果表明玄武质岩浆强烈喷发的时段为61~54 Ma,其中亚碱性玄武岩喷发时间(60 Ma)早于碱性玄武岩(56 Ma);通过熔融柱模型反演得到亚碱性岩浆源区起止熔融温压分别为1 517℃(3.03 GPa)和1 471℃(2.25 GPa),深度为101~76 km,碱性岩浆源区起止熔融温压分别为1 555℃(3.33 GPa)和1 506℃(2.48 GPa),深度为110~84 km,整体为石榴石-尖晶石橄榄岩过渡区且呈逐渐变深的趋势。综合岩浆源区特征以及岩石组合特征认为三水盆地在古新世具备大陆裂谷特征。通过对比三水盆地与南海扩张期岩浆活动的分布时段及源区特征,发现三水盆地与南海扩张期岩浆活动时间分布存在较长间隔,深部过程差异较大,三水盆地岩浆活动与南海扩张并无直接因果联系。  相似文献   

10.
南海与大洋钻探计划   总被引:1,自引:0,他引:1  
1985年起开始执行的国际大洋钻探计划,是当今地球科学研究领域最大的国际联合领域研究计划,是地球科学深层次发展的重要手段。本文了大洋钻探计划的组织,运行机制,研究内容,研究目标及其科学意义,提出了南海开展大洋钻探的重要性、迫切性及其可望解决的与南海相关联的7个地球科学发展的重大问题。  相似文献   

11.
Recent progress in studies of the South China Sea circulation   总被引:13,自引:1,他引:12  
The South China Sea (SCS) is a semi-enclosed marginal sea with deep a basin. The SCS is located at low latitudes, where the ocean circulations are driven principally by the Asia-Australia monsoon. Ocean circulation in the SCS is very complex and plays an important role in both the marine environment and climate variability. Due to the monsoon-mountain interactions the seasonal spatial pattern of the sea surface wind stress curl is very specific. These distinct patterns induce different basin-scale circulation and gyre in summer and winter, respectively. The intensified western boundary currents associated with the cyclonic and anticyclonic gyres in the SCS play important roles in the sea surface temperature variability of the basin. The mesoscale eddies in the SCS are rather active and their formation mechanisms have been described in recent studies. The water exchange through the Luzon Strait and other straits could give rise to the relation between the Pacific and the SCS. This paper reviews the research results mentioned above.  相似文献   

12.
2015—2018年, 国家自然科学基金重大研究计划“南海深海过程演变”的重点支持项目“南海东部马尼拉俯冲带深部结构探测与研究”以马尼拉俯冲带为研究重点, 从深部地球物理的角度探索南海形成演化史与运行规律。项目执行期间, 在国家基金委共享航次协助下, 先后开展和参与5次综合地球物理探测, 共投放海底地震仪(Ocean Bottom Seismometer, OBS)台站73台次, 海底电磁仪(Ocean Bottom ElectroMagnetometers, OBEM)仪器5台次, 累积放炮达13872炮, 成功获得了60台OBS数据和5台OBEM数据。同时, 取得了一系列创新性研究成果: (1)基于人工地震探测及天然地震层析成像结果, 确定南海东北部的地壳属性为受到张裂后期岩浆活动影响的减薄陆壳(12~15km), 划分了南海北部陆缘洋陆边界(Continent-Ocean Boundary, COB); (2)根据多道地震反射剖面, 划分了马尼拉俯冲带北部增生楔前缘的精细结构; (3)圈定了南海停止扩张时洋壳范围; (4)初步构建了南海与菲律宾海板块构造演化模型。本项目为重大研究计划“南海深海过程演变”核心科学问题(海底扩张的年代与过程)提供了实质性的证据, 同时为南海构造演化生命史的“骨架”提供了重要的基础数据, 具有深远的科学意义。  相似文献   

13.
南海是西太平洋最大的边缘海, 通过一系列的海峡与西太平洋和印度洋相联通, 其不同时空尺度的海洋环流动力过程及其生态环境效应是南海区域海洋学研究的重要内容。自20世纪50年代末全国第一次海洋普查开始, 我国对海洋调查的支持力度不断加大, 以科学考察船为代表的海洋科学观测平台建设不断加强; 进入新千年以来, 国内海洋科考船依托的各主要研究所和院校本着开放的理念, 先后组织多单位联合进行海上观测。尤其是最近10年, 国家自然科学基金委员会支持实施了船时共享航次计划, 进一步促进了国内海洋界的交流和合作, 南海区域海洋学的相关研究取得了很多重要的成果。从多尺度环流动力学的角度出发, 本文简要回顾了南海海洋观测的发展历程, 并初步总结了近些年来南海关键科学问题的研究进展, 包括南海和西太平洋的水体交换过程、南海中小尺度过程、多尺度相互作用及其生态环境效应等; 并且在现有的研究基础上, 对未来南海的观测和科学问题提出若干思考与展望。  相似文献   

14.
The continental breakup which gave way to the formation of the oceanic South China Sea (SCS) basin began in the latest Cretaceous in the northeastern SCS and propagated in southern and western direction over a long period of time, possibly more than 40 m.y. The seafloor spreading history of the South China Sea has been interpreted in different ways in the past and the debate over the correct timing of the major tectonic events continues. We review the different models that have been published and present a revised interpretation of seafloor spreading anomalies based on three datasets with documented high quality which cover all of the SCS but the northernmost and southernmost parts. We can precisely date the onset of seafloor spreading in the central part of the SCS at 32 Ma. After a ridge jump at 25 Ma spreading also began in the southwestern sub-basin and spreading ended at 20.5 Ma in the entire basin, followed by a phase of magmatic seamount formation mainly along the abandoned spreading ridge. Spreading rates vary from 56 mm/yr in the early stages to 72 mm/yr after the ridge jump to 80 mm/yr in the southwestern sub-basin. We find indications for a stepwise propagation of the seafloor spreading from northeast to southwest in segments bounded by major fracture zones. Seafloor spreading ended abruptly probably because the subduction zone along the eastern and southern boundary of the SCS (of which today the Manila Trench remains) was blocked by collision with a continental fragment, possibly the northern part of Palawan or a part of the Dangerous Grounds.  相似文献   

15.
Understanding the development from syn-rift to spreading in the South China Sea (SCS) is important in elucidating the western Pacific's tectonic evolution because the SCS is a major tectonic constituent of the many marginal seas in the region. This paper describes research examining the transition from rifting to spreading along the northern margin of the SCS, made possible by the amalgamation of newly acquired and existing geophysical data. The northernmost SCS was surveyed as part of a joint Japan-China cooperative project (JCCP) in two phases in 1993 and 1994. The purpose of the investigation was to reveal seismic and magnetic characteristics of the transitional zone between continental crust and the abyssal basin. Compilation of marine gravity and geomagnetic data of the South China Sea clarify structural characteristics of its rifted continental and convergent margins, both past and present. Total and three component magnetic data clearly indicate the magnetic lineations of the oceanic basin and the magnetic characteristics of its varied margins. The analyses of magnetic, gravity and seismic data and other geophysical and geological information from the SCS led up to the following results: (1) N-S direction seafloor spreading started from early Eocene. There were at least four separate evolutional stages. Directions and rates of the spreading are fluctuating and unstable and spreading continued from 32 to 17 Ma. (2) The apparent difference in the present tectonism of the eastern and western parts of Continent Ocean Boundary (COB) implies that in the east of the continental breakup is governed by a strike slip faulting. (3) The seismic high velocity layer in the lower crust seems to be underplated beneath the stretched continental crust. (4) Magnetic anomaly of the continental margin area seems to be rooted in the uppermost sediment and upper part of lower crust based on the tertiary volcanism. (5) Magnetic quiet zone (MQZ) anomaly in the continental margin area coincides with COB. (6) The non-magnetic or very weakly magnetized layer is probably responsible for MQZ. One of the causes of demagnetization of the layer is due to hydrothermal alteration while high temperature mantle materials being underplated. Another explanation is that horizontal sequences of basalt each with flip-flop magnetization polarity cancel out to the resultant magnetic field on the surface. We are currently developing a synthetic database system containing datasets of seismicity, potential field data, crustal and thermal structures, and other geophysical data to facilitate the study of past, contemporary and future changes in the deep sea environment around Japan; i.e. trench, trough, subduction zones, marginal basins and island arcs. Several special characteristics are an object-oriented approach to the collection and multi-faceted studies of global data from a variety of sources.  相似文献   

16.
边缘海氮循环过程研究是全球海洋氮循环研究的重要组成部分,对全球氮源汇格局有显著影响,进而对全球气候变化产生反馈。人为活动和气候变化又是影响边缘海关键氮循环过程速率的重要因素。南海作为中国和西北太平洋最大的边缘海,是边缘海氮循环研究的理想场所。本文详细总结了南海近岸和海盆区的氮源汇过程及其内循环过程的最新研究进展,结果显示人为活动对上述过程的显著扰动。此外,全球变暖和海洋酸化正改变不同的氮循环过程速率,并可能引起南海氮收支平衡的不确定性。文章最后提出了边缘海氮循环研究的重要发展方向。  相似文献   

17.
Igneous rocks in the northern margin of the South China Sea (SCS) have been identified via high resolution multi-channel seismic data in addition to other geophysical and drilling well data. This study identified intrusive and extrusive structures including seamounts and buried volcanoes, and their seismic characteristics. Intrusive features consist of piercement and implicit-piercement type structures, indicating different energy input associated with diapir formation. Extrusive structures are divided into flat-topped and conical-topped seamounts. Three main criteria (the overlying strata, the contact relationship and sills) were used to distinguish between intrusive rocks and buried volcanos. Three criteria are also used to estimate the timing of igneous rock formation: the contact relationship, the overlying sedimentary thickness and seismic reflection characteristics. These criteria are applied to recognize and distinguish between three periods of Cenozoic magmatism in the northern margin of the SCS: before seafloor spreading (Paleocene and Eocene), during seafloor spreading (Early Oligocene–Mid Miocene) and after cessation of seafloor spreading (Mid Miocene–Recent). Among them, greater attention is given to the extensive magmatism since 5.5 Ma, which is present throughout nearly all of the study area, making it a significant event in the SCS. Almost all of the Cenozoic igneous rocks were located below the 1500 m bathymetric contour. In contrast with the wide distribution of igneous rocks in the volcanic rifted margin, igneous rocks in the syn-rift stage of the northern margin of the SCS are extremely sporadic, and they could only be found in the southern Pearl River Mouth basin and NW sub-sea basin. The ocean–continent transition of the northern SCS exhibits high-angle listric faults, concentrated on the seaward side of the magmatic zone, and a sharply decreased crust, with little influence from a mantle plume. These observations provide further evidence to suggest that the northern margin of the SCS is a magma-poor rifted margin.  相似文献   

18.
本文简要回顾大洋钻探计划实施十余年来所取得的成果,评述了西太平洋边缘海盆的研究概况,提出东海大陆边缘的重大地质问题是陆缘的构造演化历史和动力学过程,弧后扩张中心的热液成矿作用以及海洋沉积层序记录的古气候和古海洋环境变化,指出矿物-地球化学在大洋钻探研究中的重要性。  相似文献   

19.
The 853 m thick sediment sequence recovered at ODP Site 1148 provides an unprecedented record of tectonic and paleoceanographic evolution in the South China Sea over the past 33 Ma. Litho-, bio-, and chemo-stratigraphic studies helped identify six periods of changes marking the major steps of the South China Sea geohistory. Rapid deposition with sedimentation rates of 60 m/Ma or more characterized the early Oligocene rifting. Several unconformities from the slumped unit between 457 and 495 mcd together erased about 3 Ma late Oligocene record, providing solid evidence of tectonic transition from rifting/slow spreading to rapid spreading in the South China Sea. Slow sedimentation of 20–30 m/Ma signifies stable seafloor spreading in the early Miocene. Dissolution may have affected the completeness of Miocene–Pleistocene succession with short-term hiatuses beyond current biostratigraphical resolution. Five major dissolution events, D-1 to D-5, characterize the stepwise development of deep water masses in close association to post-Oligocene South China Sea basin transformation. The concurrence of local and global dissolution events in the Miocene and Pliocene suggests climatic forcing as the main mechanism causing deep water circulation changes concomitantly in world oceans and in marginal seas. A return of high sedimentation rate of 60 m/Ma to the late Pliocene and Pleistocene South China Sea was caused by intensified down-slope transport due to frequent sea level fluctuations and exposure of a large shelf area during sea level low-stands. The six paleoceanographic stages, respectively corresponding to rifting (33–28.5 Ma), changing spreading southward (28.5–23 Ma), stable spreading to end of spreading (23–15 Ma), post-spreading balance (15–9 Ma), further modification and monsoon influence (9–5 Ma), and glacial prevalence (5–0 Ma), had transformed the South China Sea from a series of deep grabens to a rapidly expanding open gulf and finally to a semi-enclosed marginal sea in the past 33 Ma.  相似文献   

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