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1.
莫霍面地震反射图像揭露出扬子陆块深俯冲过程   总被引:21,自引:0,他引:21  
近垂直深地震反射剖面对莫霍面变化的观测 ,强有力地说明大陆莫霍面的复杂特征记录了岩石圈的构造历史。横过大别山造山带前陆的深地震反射剖面长约 1 4 0km ,记录时间达 3 0s ,探测深度超过莫霍面深达岩石圈地幔。深地震反射剖面揭示出扬子陆块与大别山造山带结合部位的岩石圈精细结构、清晰的莫霍面及其变化特征。作为相关解释的第一步 ,我们将探测到的莫霍面变化特征与其他特殊反映不同地质年代和岩石圈构造历史的深地震反射剖面进行对比 ,以追索扬子陆块与大别山造山带的岩石圈构造过程。总体北倾的莫霍面和同样北倾的下地壳结构记录了中生代扬子陆块的向北俯冲。北倾的莫霍面错断、叠置现象描述出扬子陆块的俯冲过程。大别山前向北和向南倾斜的交叉反射图像 ,反映了扬子陆块与大别山造山带岩石圈尺度的碰撞关系  相似文献   

2.
大别山高压-超高压岩石折返与扬子北缘构造变形的关系   总被引:5,自引:4,他引:1  
大别山造山带及其"前陆"形成于三叠纪,是华北陆块与扬子地块经长期构造演化、最终碰撞的产物。研究表明,该"前陆"实际是扬子地块中部的九岭基底隆升带演化相关的褶皱-逆冲推覆构造带。综合横贯大别山造山带的大地电磁探测、宽角反射与折射地震探测、天然地震波(P波)层析成像研究、莫霍面地震反射图像,揭示大别山造山带及扬子地块北缘的地壳物性、速度结构、莫霍面错断、变形特征等,发现该区上、下地壳结构具有不一致性,总体表现为鱼骨刺状;并结合地表地质调查,推断扬子地块北缘深层向南逆冲的构造与大别山超高压变质岩的形成及折返过程密切相关,而浅部构造向北的逆冲推覆构造与大别山造山带向南的逆冲推覆构成对冲构造样式。最后,本文讨论了该区大地构造演化和背景,分析了其动力学机制。  相似文献   

3.
大别山造山带前陆深地震反射剖面   总被引:18,自引:0,他引:18       下载免费PDF全文
在大别山南部和扬子地块前陆实施的深地震反射剖面(140 km)揭示出大别山造山带前陆地壳的精细结构。总体北倾的地壳内部结构与向北缓倾的叠瓦状莫霍面反射揭示出扬子陆块向北俯冲的行迹。莫霍面向北插入大别山造山带下与南大别山地壳内南倾反射震相叠置,构成交叉反射图像,刻画出扬子前陆与大别山造山带的碰撞构造面貌。  相似文献   

4.
山东省蒙阴地区金伯利岩的深部地质构造特征是地学研究的热点之一。在蒙阴地区金伯利岩分布区中心部位的西峪岩带进行了10 km综合地球物理勘查,采用地震反射、大地电磁测深及重力测量解译推断出上五井和西峪两处的深部断裂构造。其中,西峪断裂带是金伯利岩浆侵入的先期控制性构造和岩浆通道,在西峪金伯利岩带内,地震反射波同相轴异常、重力低密度体、电阻率低阻异常都较为明显,且异常带有一定的连续性和规模,与已知的浅部金伯利岩体的分布形态比较吻合,推测地表延伸4 km深度内,西峪岩带内有较好的金伯利岩的发育,岩体在深部呈现节藕状间断分布。金伯利岩浆在近地表处隐爆,造成更多的破碎带和次生断裂,形成由密集零散分布的金伯利岩体组成的金伯利岩带,同时产生岩石的低电阻率和低密度异常。  相似文献   

5.
大别山侏罗纪变形及其构造意义   总被引:31,自引:3,他引:31  
大别山造山带作为三叠纪华北与扬子大陆碰撞成因并形成超高压变质岩石已经没有异议。然而,对侏罗纪的变形性质和大地构造背景的认识还未取得一致意见。通过前陆早侏罗世地层褶皱,前陆深部反射地震探测,造山带内 SE 角闪岩相线理变形以及160~120Ma 岩浆岩记录和同位素年代学研究等新的研究成果,证实中侏罗世大别山曾发生强烈的造山运动。这次造山运动相当于“燕山运动”,由于扬子与华北陆块在三叠纪已经拼合成一个大陆,所以侏罗纪变形属于陆内造山性质。将侏罗纪变形事件从大别山碰撞造山过程中分离出来可以合理地解释大别山超高压岩石第二次折返(从壳幔边界到地壳浅部)机理,150Ma 的混合岩化作用和广泛的130~120Ma 花岗岩-火山岩成因,以及大别山前陆 MOHO 错断等现象。  相似文献   

6.
针对目前人们所使用的交互式重力剖面拟合软件多以正演布格重力异常为主,在应用效果方面存有欠缺的情况,提出了在作重力剖面布格异常拟合的同时,增加高阶方向导数的拟合。其目的是发挥布格重力异常的高阶方向导数在突出浅部地质体的特征,压制区域性深部地质因素,区分相邻地质体引起的叠加异常等方面的优势。这里采用最小二乘法演算了布格重力异常高阶方向导数的计算过程,对计算程序编制和使用中涉及的相关问题进行了阐述,并例举了在地球物理勘探中,利用高阶方向导数提高重力资料解释效果的实例。并在最后对重力剖面进行可视化拟合解释时应注意的要点做了分析,强调了兼顾布格重力异常及其高阶方向导数二者拟合曲线均基本相似,而不应追求其中某一方面精确拟合的解释原则。  相似文献   

7.
重力均衡是一普遍的地球物理现象, 可为区域深部构造、岩石圈形变、地壳结构以及应力场状态研究提供参考信息, 是研究地壳内部结构和划分大地构造单元的重要方法之一。华南陆块是欧亚板块重要组成部分, 也是我国矿产资源“大粮仓”, 虽然对华南陆块的研究已持续近百年, 但在构造、成矿等诸多地质问题上仍存在较大争议。为了解华南陆块均衡程度及其对构造、成矿的影响, 本文尝试从均衡重力异常和均衡深度异常两个方面来探索。首先利用卫星布格重力计算得到了均衡剩余重力异常, 然后利用高程和壳幔密度差计算了均衡深度异常。结果表明华南陆块大部分区域地壳处于均衡状态, 相对正均衡异常主要位于东部沿海地区和武陵山一带, 相对负均衡异常反映了秦岭—大别造山带、江南造山带及华南陆块西缘造山活动。地震多沿正、负均衡深度异常的转换带或梯度带发生, 认为这些地带通常为深部构造转换部位, 应当成为地震活动研究关注的重点区域。均衡剩余重力异常也间接约束了不同类型金属矿床分布, 正均衡剩余重力异常区多分布地幔来源金属矿床, 而负均衡异常区则多产出壳源相关金属矿床。  相似文献   

8.
大别山黄石-六安反射地震剖面新的地质解释   总被引:3,自引:0,他引:3  
在大别山黄石至六安反射地震剖面上有很多近水平的反射体,表明大别山中心部位的中、下地壳内也有近水平的分层性。反映有流变性和动力学方面的差异,与大型薄皮构造理论对岩石圈性质的认识一致,因而在其运动过程中应服从薄皮构造的运动规律。结合以往对大别山区划分的岩石一构造组合,在前人对此反射地震剖面所作的地质解释的基础上,对反射地震剖面作了较为详细的地质解释,并建立了大别山造山带在此剖面上的两维几何结构。剖面南部为造山过程中形成的背斜构造。地表15km深度内为由碰撞混杂岩组成的扬子与中一朝大陆之间的主滑脱带。剖面中部为造山期后的侵入体。剖面北部为主滑脱带的根带(通常认为的缝合带),根带被中生代形成的晓天磨子潭断裂带切割。剖面最北端为变质复理石中略晚于主滑脱带的反向冲断带。推溺l下地壳的断开距离在扬子大陆俯冲时(三叠纪前)规模较大,然后逐渐缩小,直至保留到今天的规模。  相似文献   

9.
广西十万大山前陆总断推覆构造   总被引:3,自引:0,他引:3  
张岳桥 《现代地质》1999,13(2):150-156
通过十万大山盆地内地地震剖面资料和TM遥感图象和地质构造解译,结合重力资料和野外地质观察及构造分析,阐述了十万大山前陆冲断推覆构造的发育特征和前陆盆地的构造演化。前陆冲断推覆构造由3个不同的构造变形带组成:卷入海西和印支花岗岩体的逆冲断裂带,充填中生代陆相沉积并发生构造滑脱的前陆盆和地对应于华南淮地台的前陆腹地。  相似文献   

10.
摘要昌黎一承德一达莱诺尔宽角反射/折射地震剖面完成于1985年,呈NW向横过燕山造山带中段,部分测段与2002年实施的120km深反射地震剖面重合。为获得区域深部构造背景并在与反射地震剖面交互解释基础上,对该剖面的4炮原始资料进行了处理、解释,获得了一个厚35-38km,局部残余壳根,夹有低速层的“三明治”式的地壳结构模型。该结构样式明显不同于板缘俯冲/碰撞造山带常见的楔入(挤入)样式,也区别于澳大利亚Alice Spring造山带的厚皮变形样式,在世界陆内造山带中独具特色。燕山造山带的地壳结构模型暗示该区保持着中生代区域收缩变形形成的地壳结构基本格架,下地壳和Moho的特征显示了后期区域性伸展作用的影响。  相似文献   

11.
大别山是中国东部中朝大陆板块与扬子大陆板块之间的碰撞造山带。具有薄皮构造的性质。组成两个碰撞大陆之间的滑脱(冲断剪切)带的岩石就是碰撞混杂岩组合。大别山由于剥露较深,仰冲壳楔完全被剥蚀,超高压变质带大面积出露,识别出碰撞混杂岩组合是对大别山进行几何分析的必要步骤。大别山碰撞混杂岩组合可分为南北两部分。北部为条带状片麻岩-超镁铁岩组合,南部为云母斜长片麻岩-榴辉岩组合,这两个组合的大部分都经历过超高压变质作用。它们的共同特点是具有宏观的"碎斑结构"和混杂作用。罗田穹隆是造山过程中早期形成的双冲式背斜,最后在造山晚期因东西向缩短的叠加而形成穹隆。  相似文献   

12.
综合宽角反射、近垂直反射的探测结果和有关地质资料,对大别造山带地壳结构和超高压变质带研究显示:大别造山带地壳具有层块结构特征。沿安义-庄墓剖面,上地壳有7个弹性块体,中地壳有5个,下地壳有4个。扬子与华北地块的主缝合带是超高压变质带,扬子地块与大别造山带的现今分界线是与郯庐断裂相交的太湖-马庙断裂,磨子潭-晓天断裂是大别造山带的北界,北淮阳构造带呈楔状向下插入,它与华北地块的分界是肥中断裂。郯庐断裂在中、上地壳近于直立,下地壳向西倾斜。超高压变质带的厚度为5-7km,产状向北插入到北大别块体之下,折返过程是构造就位,不是大别山的均匀抬升,折返的主运动面是水吼-五河高温剪切带。  相似文献   

13.
The Dabashan nappe structural belt links the Hannan block to the west with the Huangling block to the east between Yangxian and Xiangfan. The Dabashan arc-shaped fold belt formed during late Jurassic and was superposed on earlier Triassic folds. To achieve an improved understanding of the deep tectonics of the Dabashan nappe structural belt, we processed and interpreted the gravity and magnetic data for this area using new deep reflection seismic and other geophysical data as constraints. The results show that the Sichuan basin and Daba Mountains lie between the Longmenshan and Wulingshan gravity gradient belts. The positive magnetic anomalies around Nanchong-Tongjiang-Wanyuan-Langao and around Shizhu result from the crystalline basement. Modeling of the gravity and magnetic anomalies in the Daba Mountains and the Sichuan basin shows that the crystalline basement around Nanchong-Tongjiang-Wanyuan-Langao extends to the northeast underneath the Wafangdian fault near Ziyang. The magnetic field boundary in the Zhenba-Wanyuan-Chengkou-Zhenping area is the major boundary of the Dabashan nappe thrusting above the Sichuan Basin. This boundary might be the demarcation between the south Dabashan and the north Dabashan structural elements. The low gravity anomaly between Tongjiang and Chengkou might be partly caused by thickened lower crust. The local low gravity anomaly to the south of Chengkou-Wanyuan might result from Mesozoic strata of low density in the Dabashan foreland depression area.  相似文献   

14.
New results from deep seismic reflection profiling, wide-angle reflection-refraction profiling and broadband seismic experiments reveal that a series of south-dipping reflectors occur on the southern margin of the Tarim block (basin). However, it is these south-dipping structures that are intercepted by another series of north-dipping reflectors at depths from 30 to about 150 km beneath the foreland of the W Kunlun Mountains. No evidence from the above geophysical data as well as geochemical and surface geological data indicate the southward subduction of the Tarim block beneath the W Kunlun Mountains (NW Tibet plateau), forming the so-called "two-sided subduction" model for the Tibet plateau as proposed by previous studies. So the authors infer that the tectonic interaction between the Tarim block and the W Kunlun block was chiefly affected by a "horizontal compression in opposite directions", which brought about "face-to-face contact" between these two lithospheric blocks and led to the thickening, sh  相似文献   

15.
Within the Svecononvegian Province of SW Scandinavia granite intrusions are abundant. Prominent ones are the Bohus-Iddefjord and the Flå granites, the so- called Bohus-Flå Granite belt. The age of these granites, consistent at ≅ 900 Ma, coincides with the late extensional stage of the Svecononvegian-Grenvillian orogen. Gravity observations and deep seismic profiling lines are presented that also cover the Skagerrak Sea. The geophysical data suggest that the Bohus granite continues seaward for at least 80 km and its thickness, offshore, is estimated to be 2–4 km. Where the seismic profiling lines intersect the inferred seaward extension of the Bohus granite, a distinct reflection pattern is observed at ≅ 1.6 s. TWT. This coincides with a gravity modelled thickness of ≅ 4 km. The seismic profiles also show a large Moho offset beneath the modelled granite. It is proposed that this offset is related to Svecononvegian crustal underthrusting and that the granite melt could have formed by anatexis of mid-crustal rocks downthrusted to greater depths in the vicinity of the seismically observed Moho offset.  相似文献   

16.
造山后伸展过程中,深部地壳的变形形式反映深部岩石圈的构造活动方式,是造山后伸展深部动力学研究的主要内容。本次工作以大别造山带造山后伸展变形构造为研究对象,在详细的构造观察和组构分析基础上,以实际变形组构为约束开展数值模拟,系统地研究伸展变形构造在垂向剖面上岩石变形机制的空间分布,进而揭示大别造山带造山后伸展过程中深部地壳的变形形式。野外观察表明,北大别穹隆边缘区域拉伸线理优选方位显著,而到穹隆中部拉伸线理定向性减弱,再到穹隆核部线理定向性有所增强。运动学上,北大别穹隆内呈现了一致的上盘向NW的剪切指向。以此为约束的数值模拟研究表明,大别造山带造山后伸展期中-下地壳流动方式总体上是介于透入性简单剪切形式与纯剪切形式之间的组合形式;垂直剖面上呈现为由上、下边界向中心简单剪切分量显著降低,中-下地壳流变带中部以纯剪切变形为主。我们用造山带加厚地壳的韧性垮塌和深俯冲的太平洋板块"后撤"来解释其动力学来源。  相似文献   

17.
1IntroductionMostgeologistshaveacceptedthattheQinling Dabieorogenicbeltistheproductofcontinentaldeepsubduction (Okayetal.,1993;Cong ,B .etal.,1995 ;Hackeretal.,1995 ;DongShuwenetal.,1993) .Butasthebiggest scaleUHPmetamorphicbeltintheworld ,thereactionbetweenthecrustandthemantleatthepost orogenicstageandtheexhumation ,upliftinganddenudationoftheorogenicbeltarethecomplexdynamicprocesses .ItwasreportedpreviouslythatsomeCretaceousvolcanicrocksexistinthemiddleoftheDabieMountains (GuanYuncaiet…  相似文献   

18.
The P-wave velocity structure of the upper crust beneath a profile ranging from Niikappu to Samani in the southwestern foot of the Hidaka Mountains, Hokkaido, Japan was obtained through analysis of refraction and wide-angle reflection data. The mountains are characterized by high seismicity and a large gravity anomaly. The present profile crosses the source region of the 1982 Urakawa-oki earthquake (Ms 6.8). The length of the profile is 66 km striking northwest and southeast. Along the profile, 64 vertical geophones were set up and 5 shot points were chosen. For each shot, a 400–600 kg charge of dynamite was detonated. The studied area is composed of four major geological belts: Neogene sedimentary rocks, the Kamuikotan belt, the Yezo Group, and the Hidaka belt. The measurement line crosses these geological trend at an oblique angle. The structure obtained is characterized by remarkable velocity variations in the lateral direction and reflects the surface geological characteristics. A thin, high-velocity layer (HVL) was found between low-velocity materials in the central part of the profile, beneath the Kamuikotan Metamorphic Belt, at a depth ranging from 0.5 to 6 km, overthrusting toward the west on the low-velocity materials consisting of Neogene sedimentary rocks, and forming gentle folds. Outlines of the velocity structure of the Hidaka Mountains yielded by other studies have shown a large-scale overthrust structure associated with the collision of the Outer Kurile and the Outer Northern Honshu Arcs. The shallow velocity structure inferred by the present study showed a similar (although small scale) overthrust structure. The obtained structure shows that the composite tectonic force, comprising westward movement of the Outer Kurile Arc and northward movement of the Outer Northern Honshu Arc, plays an important role in the evolution of the tectonic features of the crust and upper mantle in a wide depth range beneath the Hidaka Mountains.  相似文献   

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