首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 375 毫秒
1.
第四纪洞庭盆地构造性质及动力机制探讨   总被引:6,自引:0,他引:6  
通过地表观察和第四系钻孔对第四纪洞庭盆地及周缘隆起区的地貌、沉积和断裂构造等进行调查研究,进而厘定洞庭盆地构造活动特征暨构造性质,并探讨其动力机制。研究表明,早更新世-中更新世中期洞庭盆地具断陷性质,具体表现在:①在边界正断裂控制下盆地及其次级凹陷强烈沉降并充填厚度较大的河、湖相沉积;②临澧次级凹陷发育典型封闭性断陷湖盆沉积;③NNE向、NW向、EW向、SN向等多组方向控盆断裂的发育指示区域伸展构造体制。中更新世晚期以来洞庭盆地具坳陷性质,主要表现在:①中更新世晚期洞庭盆地与周缘隆起区发生较大幅度的构造抬升并遭受剥蚀,同时产生构造掀斜与褶皱变形;②晚更新世-全新世洞庭盆地坳陷沉降并接受沉积。分析提出洞庭盆地第四纪构造活动机制:早更新世-中更新世中期盆地的断陷沉降与地幔上隆背景下的深部物质迁出有关;中更新世晚期盆地构造抬升、掀斜和褶皱变形与深部迁出物质的回返以及板块尺度的物质运动和挤压作用有关;晚更新世和全新世盆地坳陷沉降与区域挤压应力下的坳陷或拱坳变形有关,可能同时伴有NE向的深部物质流动与拉张;不同级次和不同规模范围的深部物质迁移运动,造成了第四纪洞庭盆地与其内部次级构造单元之间的叠加关系。  相似文献   

2.
洞庭盆地第四纪构造演化特征   总被引:9,自引:0,他引:9       下载免费PDF全文
通过地表观察和第四系钻探,以地貌和沉积为基础,对洞庭盆地及周缘地区第四纪构造活动特征进行了研究。认为第四纪洞庭盆地的构造演化经历了3个阶段。早更新世—中更新世中期洞庭盆地处于断陷阶段,区域构造活动的主要表现有:① 盆地及次级凹陷边界受NNE、NW、EW和SN向等4组正断裂控制;② 各次级凹陷强烈沉降并接受沉积,沉降中心位于凹陷内部或中央而远离边界断裂;断裂上盘局部可具明显沉降;③ 随着盆地逐渐扩张,断陷活动向东、西边缘迁移;④ 盆地断陷活动具幕式特征,总体可分为为早更新世早期、早更新世晚期和中更新世早—中期等3个裂陷幕;⑤ 盆地北面的华容隆起具明显构造沉降,盆地周缘其它隆起及盆地内部的赤山隆起具有脉动式抬升;⑥ 赤山隆起构造较稳定期和构造抬升期分别对应于安乡凹陷缓慢沉降期和快速沉降期。中更新世晚期以来洞庭盆地处于坳陷阶段,其中中更新世晚期洞庭盆地整体抬升并遭受剥蚀,在盆地东缘和西缘产生倾向盆地的构造掀斜,局部第四系变形形成褶皱;晚更新世—全新世洞庭盆地主体产生坳陷沉降并接受沉积,盆地周缘部分地区存在小幅度抬升。上述不同阶段构造活动特征可以通过盆地及周缘深部物质迁移以及板块尺度的物质运动和挤压来解释。  相似文献   

3.
哈广浩  吴中海  何林 《地质学报》2018,92(10):2051-2067
邛多江地堑构成了藏南近南北向裂谷带最东侧的错那-沃卡裂谷中段,是由地堑西缘高角度正断层主控的半地堑式断陷盆地。详细的地质、地貌调查表明,该地堑内主要充填有晚新生代以来的多套河湖相、冰碛及冰水沉积地层。河湖相地层底部以黏土和粉砂为主,上部以砾石层为主,向上砾石砾径逐渐变大,顶部为早更新世冲积砾石层;冰碛主要发育于地堑中部山前地带,构成宽缓的冰碛台地或者终碛垄、侧碛堤。地层的测年结果表明,该区主要发育两套晚新生代河湖相地层,早期沉积时代早于5Ma,晚期为晚第四纪;而冰碛及冰水沉积的时代主要为中更新世。综合该区地质地貌、沉积和构造等分析结果表明,早期的河湖相沉积与盆地发生初始裂陷后的主边界正断层发生强烈垂直活动有关,而晚期的河湖相沉积主要形成于盆地后期萎缩过程中,成因可能与中更新世以来的冰川堰塞湖有关。由于邛多江地堑受控于西侧主边界正断层,早期沉积应晚于其初始裂陷时代。因此,进一步综合现有年龄数据资料认为,藏南近南北裂谷的初始裂陷时代应早于5~10Ma,但晚于约15Ma。  相似文献   

4.
广东省及邻区新生代以来构造运动与地震活动分区的研究   总被引:3,自引:0,他引:3  
综合分析多年来地震地质调查资料,将广东省及部分邻区划分为具不同构造活动特点的6个区,分别论述、分析这些区内新生代以来的断裂构造、火山喷发、第四纪沉积及地震活动等。结果认为,由断层样品热释光测定确定的断层最近期活动年龄主要是在中更新世和晚更新世,沿海地带主要为晚更新世和全新世。新生代以来构造具继承性活动的地区是地震最活动地区,如琼雷地区。同时,由于历史上发生过强震,地震后至今具较大速率下沉地区,在今后相当长时间内可能是不易发生强震地区,如琼北东部和南澎-南澳地区;Ms6级地震将主要发生在晚更新世以来的新生盆地,如潮汕盆地和近岸海湾地区;Ms5级地震在一定条件下,几乎可能发生在省内的任何地区。  相似文献   

5.
台北盆地发育在弧陆碰撞的背景下,但长期以来对其构造特征一直认识不清,因此直接影响对盆地形成的认识.钻井、地震勘探等资料研究表明,山脚断层是控制盆地形成的主要正断层,而不是走滑断层,但并不是一条完整的正断层,而是由三个段落组成.各个段落控制一个沉积中心,彼此之间没有沟通.沉积中心的变化反映出山脚断层活动的各段落活动性并不一样,向北东方向随时间逐渐增强,目前最为活动的集中在中段和北段,南段已经停止活动.研究表明盆地中发育的一些北西向正断层是盆地中不同沉降中心沉降时的次生断层,而很难用走滑体系来解释.台北盆地并不是一个孤立发育的盆地,盆地是与金山断层东南的大屯火山群一同陷落的,具有一致的地球物理场背景、沉降规模以及正断层活动,因此广义的台北盆地从沉降范围和机制上还包括金山断层以南的大屯火山群.台北盆地的这些特征表明该盆地并不是走滑体系中形成的拉分盆地.  相似文献   

6.
晚新生代温泉沉积盆地,是青藏高原腹地在南北向挤压、东西向伸展的构造背景下,沿南北向边界走滑断层,经边界正断层和内部张剪断层的进一步发展而形成的近南北向单断单剪楔形半地堑活动沉积盆地。它可能代表了晚新生代青藏高原第三期强烈挤压隆升事件,是侧向向东剪切挤出的结果。笔者以盆地充填序列和TL、ESR测年资料为主要依据,推测唐古拉山在30 0~2 5 0ka前后全面进入冰冻圈;而以温泉活动沉积盆地为代表的中更新世晚期(2 2 4 .0~1 5 0 .2ka)的冰碛 冰水堆积则对应于青藏高原第三期隆升的断陷盆地发育阶段;中更新世晚期—晚更新世中期(1 4 4 .0~5 6ka)为湖相沉积;晚更新世中期至今(35~0ka)对应于高原缓慢隆升与夷平发育阶段。长江溯源在35ka切割通天河盆地,形成通天河;而在1 6ka侵蚀切穿雁石坪 温泉兵站峡谷,形成布曲河。  相似文献   

7.
晚新生代温泉沉积盆地,是青藏高原腹地在南北向挤压、东西向伸展的构造背景下,沿南北向边界走滑断层,经边界正断层和内部张剪断层的进一步发展而形成的近南北向单断单剪楔形半地堑活动沉积盆地.它可能代表了晚新生代青藏高原第三期强烈挤压隆升事件,是侧向向东剪切挤出的结果.笔者以盆地充填序列和TL、ESR测年资料为主要依据,推测唐古拉山在300~250ka前后全面进入冰冻圈;而以温泉活动沉积盆地为代表的中更新世晚期 (224.0~150.2ka)的冰碛冰水堆积则对应于青藏高原第三期隆升的断陷盆地发育阶段;中更新世晚期椡砀率乐衅?144.0~56ka)为湖相沉积;晚更新世中期至今(35~0ka)对应于高原缓慢隆升与夷平发育阶段.长江溯源在35ka切割通天河盆地,形成通天河;而在16ka侵蚀切穿雁石坪温泉兵站峡谷,形成布曲河.  相似文献   

8.
第四纪华容隆起构造活动、成因及动力机制   总被引:9,自引:0,他引:9  
第四纪华容隆起位于江汉—洞庭盆地中部。通过地表观察和第四系钻孔对华容隆起及周缘地貌、第四纪断裂和沉积进行调查,恢复华容隆起构造升降特征与过程,进而探讨华容隆起的成因及其构造活动的动力机制。研究表明:早更新世-中更新世中期华容隆起与周缘凹陷一道沉降,同时前者受周边正断裂控制相对后者有抬升,中更新世晚期一道抬升,晚更新世—全新世构造稳定或弱沉降。第四纪期间华容隆起总体表现为明显的构造沉降。以上表明第四纪华容隆起主要由前第四纪盆—山地貌分异造成,其次与第四纪期间相对周缘凹陷抬升有关。上述地质特征以及区域第四纪地质资料,表明早更新世-中更新世中期江汉—洞庭盆地为断陷盆地,中更新世晚期—全新世转变为坳陷盆地。就华容隆起第四纪构造活动的动力机制进行了探讨并提出:1)早更新世-中更新世中期江汉—洞庭盆地断陷沉降与地幔上隆背景下的深部物质迁出有关。2)中更新世晚期以来的构造活动可能与深部物质蠕移运动的回返以及板块尺度的物质运动和挤压作用有关。3)江汉—洞庭盆地的整体性沉降导致盆地中部的华容隆起以沉降为主;华容隆起特殊的地壳物质结构可能导致深部物质更难向外迁移,使其相对周缘凹陷有抬升。  相似文献   

9.
燕山构造带中段早白垩世盆地特征   总被引:2,自引:2,他引:0  
燕山构造带中段主要包含3个早白垩世盆地,即滦平盆地、凤山盆地、石人沟盆地.通过对盆地的沉积相分析、古水流的恢复以及盆地构造-沉积演化研究,认为燕山构造带中段早白垩世盆地发育分为三个阶段,即早期火山喷发阶段、中期强烈断陷阶段和晚期填平阶段.早期发育强烈的火山作用,形成以酸性火山岩为主的张家口组;中期盆地主体呈半地堑状,受单一边界主断层控制,盆地相互独立,盆地边缘以冲积扇砾岩和扇三角洲砂岩、砾岩沉积为主,盆地中心为湖泊细粒沉积.古流向和物源恢复结果证明,盆地沉积物主体来自于北部和/或西部的变质岩基底.盆地构造沉降和沉积充填过程主要受边界正断层的控制,断层下盘基底岩石的抬升与盆地边界正断层活动相关,从而成为盆地主要的物源区.  相似文献   

10.
晚新生代温泉沉积盆地,是青藏高原腹地在南北向挤压、东西向伸展的构造背景下,沿南北向边界走滑断层,经边界正断层和内部张剪断层的进一步发展而形成的近南北向单断单剪楔形半地堑活动沉积盆地。它可能代表了晚新生代青藏高原第三期强烈挤压隆升事件,是侧向向东剪切挤出的结果。笔者以盆地充填序列和TL、ESR测年资料为主要依据,推测唐古拉山在300~250ka前后全面进入冰冻圈;而以温泉活动沉积盆地为代表的中更新世晚期(224.0~150.2ka)的冰碛一冰水堆积则对应于青藏高原第三期隆升的断陷盆地发育阶段;中更新世晚期一晚更新世中期(144.0~56ka)为湖相沉积;晚更新世中期至今(35~0ka)对应于高原缓慢隆升与夷平发育阶段。长江溯源在35ka切割通天河盆地,形成通天河;而在16kat浸蚀切穿雁石坪一温泉兵站峡谷,形成布曲河。  相似文献   

11.
松辽盆地继承性断裂带特征及其在油气聚集中的作用   总被引:12,自引:4,他引:12  
松辽盆地沉积盖层发育三套断裂组合,即张性断块构造断裂组合、张性断块构造-滑脱型正断层组合断裂组合、扭动断裂组合。三套断裂组合主干断层具有继承发育特点,形成继承性发育断裂带。这些断裂带不仅控制了深部构造格局、中浅层沉积体系的发育与展布以及盖层的构造变形,而且对盆地油气系统中油气运移、聚集与保存发挥着重要作用,因此继承性发育断裂带周围是盆地油气的主要聚集区带。  相似文献   

12.
The Dead Sea is a large, active graben within the Dead Sea rift, which is bounded by two major strike-slip faults, the Jericho and the Arava faults. We investigated the young tectonic activity along the Jericho fault by excavating trenches, up to 3.5 m deep, across its trace. The trenches penetrate through Late Pleistocene and Holocene sediments. We found that a zone, up to 15 m wide, of disturbed sediments exists along the fault. These disturbed sediments provide evidence for two periods of intensive activity or more likely, for two major earthquakes, that occurred during the last 2000 years. The earthquakes are evident in small faults, vertical throw of a few layers, cracks, unconformities and wide fissures. We further documented evidence for recent sinistral shear along the Jericho fault in deformed sediments and damage to an 8th Century palace on a subsidiary fault. We suggest that the two earthquakes may be correlated with the 31 B.C. earthquake and the 748 A.D. earthquake, reported by the ancients.  相似文献   

13.
根据下—中三叠统嘉陵江组和雷口坡组膏盐岩层内的伴生构造及上震旦统灯影组台缘带被错动的位置、方向与距离,判定川中及北斜坡地区主干走滑断裂带的性质与分布规律。嘉陵江组和雷口坡组膏盐岩层内发育多排呈左阶排列的NW向雁列式构造,与深部(盐下)走滑断裂构成2种伴生组合。第1种组合主要发育在磨溪地区,膏盐岩层内的雁列式构造位于深部走滑断裂的正上方;第2种组合主要发育在北斜坡地区,膏盐岩层内的雁列式构造发育在2条主干走滑断裂带之间。根据这2种组合及灯影组台缘带的错动位置,共识别出6条主干走滑断裂带。在盆地整体演化格架的制约下,通过川中地区代表性生长构造的定量解析,将走滑断裂演化划分为3个阶段:(1)晚奥陶世—志留纪右行走滑阶段;(2)晚古生代—三叠纪走滑断裂沉寂阶段;(3)中侏罗世至今左行走滑阶段。其中,上震旦统灯影组二段台缘带呈现出有规律的向东逐段错动(错动距离20~40 km)的特征,可作为加里东期右行走滑活动的间接证据;川中及北斜坡地区在晚三叠世处于扬子地块北缘和雪峰山前陆盆地前缘隆起的隆后稳定地区,而中侏罗世以来周缘造山带的急剧隆升与差异性演化使得川中地区遭受持续的挤压和抬升,激发了基底断裂与早期走滑断裂的再次活动。  相似文献   

14.
The Roer Valley Rift System (RVRS) is located between the West European rift and the North Sea rift system. During the Cenozoic, the RVRS was characterized by several periods of subsidence and inversion, which are linked to the evolution of the adjacent rift systems. Combination of subsidence analysis and results from the analysis of thickness distributions and fault systems allows the determination of the Cenozoic evolution and quantification of the subsidence. During the Early Paleocene, the RVRS was inverted (Laramide phase). The backstripping method shows that the RVRS was subsequently mainly affected by two periods of subsidence, during the Late Paleocene and the Oligocene–Quaternary time intervals, separated by an inversion phase during the Late Eocene. During the Oligocene and Miocene periods, the thickness of the sediments and the distribution of the active faults reveal a radical rotation of the direction of extension by about 70–80° (counter clockwise). Integration of these results at a European scale indicates that the Late Paleocene subsidence was related to the evolution of the North Sea basins, whereas the Oligocene–Quaternary subsidence is connected to the West European rift evolution. The distribution of the inverted provinces also shows that the Early Paleocene inversion (Laramide phase) has affected the whole European crust, whereas the Late Eocene inversion was restricted to the southern North Sea basins and the Channel area. Finally, comparison of these deformations in the European crust with the evolution of the Alpine chain suggests that the formation of the Alps has controlled the evolution of the European crust since the beginning of the Cenozoic.  相似文献   

15.
Consolidated crust in the North Barents basin with sediments 16–18 km thick is attenuated approximately by two times. The normal faults in the basin basement ensure only 10-15% stretching, which caused the deposition of 2–3 km sediments during the early evolution of the basin. The overlying 16 km of sediments have accumulated since the Late Devonian. Judging by the undisturbed reflectors to a depth of 8 s, crustal subsidence was not accompanied by any significant stretching throughout that time. Dramatic subsidence under such conditions required considerable contraction of lithospheric rocks. The contraction was mainly due to high-grade metamorphism in mafic rocks in the lower crust. The metamorphism was favored by increasing pressure and temperature in the lower crust with the accumulation of a thick layer of sediments. According to gravity data, the Moho in the basin is underlain by large masses of high-velocity eclogites, which are denser than mantle peridotites. The same is typical of some other ultradeep basins: North Caspian, South Caspian, North Chukchi, and Gulf of Mexico basins. From Late Devonian to Late Jurassic, several episodes of rapid crustal subsidence took place in the North Barents basin, which is typical of large petroleum basins. The subsidence was due to metamorphism in the lower crust, when it was infiltrated by mantle-source fluids in several episodes. The metamorphic contraction in the lower crust gave rise to deep-water basins with sediments with a high content of unoxidized organic matter. Along with numerous structural and nonstructural traps in the cover of the North Barents basin, this is strong evidence that the North Barents basin is a large hydrocarbon basin.  相似文献   

16.
Late Cenozoic transtensional fault belt was discovered on Shajingzi fault belt, NW boundary of the Awati Sag in the northwestern Tarim Basin. And numerous Quaternary normal faults were discovered on Aqia and Tumuxiuke fault belts, SW boundary of Awati. This discovery reveals Quaternary normal fault activity in the Tarim Basin for the first time. It is also a new discovery in the southern flank of Tianshan Mountains. Shajingzi transtensional fault belt is made up of numerous, small normal faults. Horizontally, the normal faults are arranged in right-step, en echelon patterns along the preexisting Shajingzi basement fault, forming a sinistral transtensional normal fault belt. In profile, they cut through the Paleozoic to the mid-Quaternary and combine to form negative flower structures. The Late Cenozoic normal faults on the SW boundary of Awati Sag were distributed mainly in the uplift side of the preexisting Aqia and Tumuxiuke basement-involved faults, and combined to form small horst and graben structures in profile. Based on the intensive seismic interpretation, careful fault mapping, and growth index analysis, we conclude that the normal fault activity of Shajingzi transtensional fault belt began from Late Pliocene and ceased in Late Pleistocene (mid-Quaternary). And the normal faulting on the SW boundary of Awati Sag began from the very beginning of Quaternary and ceased in Pleistocene. The normal faulting on Awati’s SW boundary began a little later than those on the NW boundary. The origin of Shajingzi transtensional normal fault belt was due to the left-lateral strike-slip occurred in the southern flank of Tianshan, and then, due to the eastward escape of the Awati block, a tensional stress developed the normal faults on its SW boundary.  相似文献   

17.
南海海域新生代经历印支—南海地台裂谷期、陆间裂谷期和区域沉降阶段,形成大陆架、大陆坡和洋壳区三大区域构造单元。围绕洋壳区,大陆坡和大陆架呈准环带状分布格局。沉积盆地主要分布在大陆架和大陆坡上,亦环绕中央洋壳区呈环带状分布。南海油气勘探活动于20世纪60年代末期开始,截至目前已发现数百个油气田,这些油气田主要分布在南部、北部和西部等大陆边缘。油气田分布主要呈大陆架或其近陆部分以油田为主、大陆坡(也包括邻近大陆架部分区域)以气田为主的“外油内气”特征。油环区凹陷烃源岩以中深湖相泥岩或深海相泥岩为主,沉积有机质以Ⅰ、Ⅱ1型干酪根为主,地壳相对较厚、热流值相对较低、烃源岩主要处在生油窗以内,烃类产物主要是原油。气环区生烃凹陷烃源岩以海陆过渡相泥岩和海相烃源岩为主,沉积有机质主要是Ⅱ2—Ⅲ型干酪根,地壳厚度相对较薄,热流值高,具“超热盆”特征,烃源岩以生气为主。油环区主力储层是砂岩,形成于湖相到浅海环境,存在多套储盖组合。气环区内带存在浅水沉积和深水沉积两套储盖组合,以深水扇和生物礁储层为主,盖层主要为海相泥岩。以300 m水深为界,油环带主要位于浅水区,勘探程度较高;内带气环主要位于陆架下部及陆坡区,勘探程度较低。南海海域勘探领域正在由浅水区向深水区发展。南海油气资源丰富,有望成为我国新的大油气区。  相似文献   

18.
New data on the stratigraphy, faults, and formation history of lower to middle Pleistocene rocks in Late Cenozoic basins of northwestern Armenia are presented. It has been established that the low-mountain topography created by tectonic movements and volcanic activity existed in the region by the onset of the Pleistocene. The manifestations of two geodynamic structure-forming factors became clear in Pleistocene: (i) collisional interaction of plates due to near-meridional compression and (ii) deep tectogenesis and magma formation expressed in the distribution of vertical movements and volcanism. The general uplift of the territory, which was also related to deep processes, reached 350–500 m in basins and 600–800 m in mountain ranges over the last 0.5 Ma. The early Pleistocene (~1.8 Ma) low- and medium-mountain topography has been reconstructed by subtraction of the latest deformations and uplift of the territory. Ancient human ancestry appeared at that time.  相似文献   

19.
文中报道了天津市北部燕山山前地带共4个高岩心采取率钻孔的沉积学、地层学、年代学和微体古生物综合研究。420个热退磁样品的磁倾角曲线显示,具147 m厚松散地层的标准孔Z3孔下部地层属于2.58 Ma的松山(Matuyama)极性带。随着地壳沉降,只是从早更新世,冲积扇侧缘泥质沉积物才开始充填了底砾岩层之上的沉积空间,形成广义的山前盆地中的泛滥平原;与传统上视为上新统特征沉积的红棕色黏土类似的亮黄橙-黄橙色-亮红棕色黏土,延续出现到早更新世中期,当时区域沉降中心位于距离山前断裂不足4 km处。0.78 Ma以来的布容(Brunhes)极性带厚57.8 m。谨慎地依据120 ka的布莱克(Blake)亚时确定上更新统后,可见中更新统大部缺失,与天津市区沧县隆起和北京永定河冲积平原南部所见此时的地层间断十分相近。3个钻孔的7个14C测年数据证实,距离山前断裂不足2 km的钻孔45 ka以来的地层最厚达41 m;显示自MIS3初始期,沉降中心向北迁移更靠近山前断裂,且在构造断裂作用下形成了新的狭义的山前盆地。研究区可见15 ka富有机质黏土及上覆泥炭,表明末次冰消期开始的气候转暖首先影响到华北平原山前地区。此项工作为研究晚新生代以来“源到汇”过程中渤海湾西岸的沉降提供了一个基准点。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号