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1.
赵志丹  高山 《地球科学》1999,24(3):256-260
在模拟地壳的温度和压力条件下,测定了华北地台太行-五台和阴山地块的主要变质碉群和侵入岩共54个岩石样品的纵波速度。各类岩石的υp在约4-10km深度内上升很快,在10-25km内深度内的υ都趋于恒定。综合对比地壳的波速结构和岩石的波速特征表明,在太行-五台地块,五台群,滹沱群和古老花岗岩岩类构成上地壳,阜平群和恒山群构成中地壳,集宁群代表了地壳的岩石组成;  相似文献   

2.
西昆仑地区元古宙岩浆侵入作用及构造-岩浆演化过程   总被引:2,自引:0,他引:2  
通过对西昆仑地区元古代侵入岩的岩石类型、形成时代和岩石地球化学资料的综合分析,探讨各个构造单元侵入岩形成期次、岩石成因及构造-岩浆演化过程。铁克里克断隆带元古宙中酸性侵入岩以A型花岗岩为主,是塔里木板块古老基底在高温低压条件下发生部分熔融的产物。西昆仑造山带古元古代和中元古代早期中酸性侵入岩为钙碱性I型花岗岩,是变玄武岩在低温条件下部分熔融条件下形成的,而古元古代晚期和新元古代中酸性侵入岩则是高温条件下老基底岩系部分熔融而形成的A型花岗岩。甜水海地块仅发育新元古代侵入岩,为S型花岗岩,是高温高压环境下甜水海地块古老基底部分熔融而形成。根据侵入岩岩浆演化规律,将西昆仑地区元古宙划为4个演化阶段:12 426~1 567Ma:以铁克里克断隆带A型花岗岩为代表的塔里木板块陆内演化,以西昆仑造山带钙碱性-拉斑质I型花岗岩为代表的陆缘弧。21 301~1 000Ma:铁克里克断隆带和西昆仑造山带均以陆内演化性质的A型花岗岩为主。31 000~851 Ma:甜水海地块S型花岗岩可能是陆-陆碰撞导致地壳加厚的产物,指示甜水海地块可能作为Rodinia超大陆的一员发生聚合拼接作用。4815~644 Ma:铁克里克断隆带和西昆仑造山带均存在碱性基性岩浆岩和A型花岗岩的双峰式侵入岩组合,指示塔里木地块和西昆仑地块可能作为Rodinia超大陆组成部分,在该阶段发生了裂解作用。通过对元古宙侵入岩的系统分析,西昆仑地区不同构造单元地壳演化有一定差异,经历了不同演化过程。  相似文献   

3.
利用天然地震震相探讨阿尔金地区地壳结构   总被引:5,自引:0,他引:5  
薛光琦 《地质论评》1999,45(2):120-124
本文利用阿尔金地区的宽频地震数据,对布设在该区的10个宽频地震台站用接收函数方法进行了速度结构反演,反演的初步结果发现,若至花土沟剖面在20km深度处有一条厚度达5~10km的低速带断续出现,莫霍界面呈台阶状展布,北部浅,南部深;塔里木盆地南缘的地壳厚度为40~42km左右;在阿尔金南,北缘断裂两侧台站下方莫霍深度的错断约6.5~8km,在柴达木盆地北缘,莫霍面的深度达50km以上,S波速为4.5  相似文献   

4.
根据花岗岩类资料,分析了大别造山带自古生代以来的岩石隆升-剥露历史。认为北淮阳地块、大别地块西段及大悟地块的岩石隆升-剥露主要发生于侏罗纪之前,而大别地块东段在白垩纪之后还发生了强烈岩石隆升-剥露.本文指出,含超高压变质岩的大别地块东段自海西期以来的岩石隆升-剥露幅度达20km.这一深度的负荷压力与大陆碰撞过程中超过压和高应变条件的结合,有可能形成柯石英榴辉岩,但高压变质地体中的金刚石,更可能是早期慢源岩浆挟带到地壳中的捕虏晶。  相似文献   

5.
中国西部地壳上地幔速度和Qβ结构   总被引:1,自引:1,他引:0  
李光品  高尔根 《地质与勘探》2000,36(6):58-61,65
从穿越中国西部地区所有双台大圆路径中,选出Rayleigh波记录比较清晰且焦散效应相对较弱的3条双台大圆路径,计算出双台间地震面波相速度频散,群速度频散和随周期变化的衰减因子,进而反演出3条路径下地壳下地幔的平均S波速度和Qβ结构,对应于兰州-高和径,在约72km深度的上是幔中开始出现低速和Qβ层,在深度为6km-20km的地壳中,存在一低Qβ层,而在其下20km~34km深度的地壳中存在一高Qβ夹层,对应于成都-乌鲁木齐路径,在约86km深度的上地幔中开始出现低速Qβ层,在121km深度开始出现明显的低Qβ层,在深度为19km~34km的地壳中,存在一显著的高Qβ层,对应于高台一拉萨路径,在约84km深度的上地幔中开始出现低速和低Qβ层,在15km~29km深度的地壳中,存在一高Qβ夹层。  相似文献   

6.
下地壳麻粒岩包体波速测定及其地质意义   总被引:5,自引:0,他引:5       下载免费PDF全文
下地壳岩石的波速测定可以提供有关下地壳物质组成及物理性质的重要信息。但是,由于下地壳难于直接采样,因此常常利用目前出露地表的古老麻粒岩地体样品来代表下地壳,但所获结果常常与实际情况不符,由新生代玄武岩携带到地表的下地壳包体则为我们提供有关下地壳的直接信息。本文对采自河北汉诺坝武岩中的下地壳包体进行了密度和高温高压波速测定,下地壳由不同类型的麻粒岩相岩石组成。其密度和波速有较大的差异,因此所获波速不能直接与地震测深得到的下地壳波速进行对比,而需要进行波速的温度、压力校正,并进行具体的分析,本文得到下地壳包体的原地波速6.13-6.90km/s与该区地震资料得到的结果十分接近,并探讨了下地壳低速层的可能成因。  相似文献   

7.
花岗岩部分熔融及其对青藏高原南部地壳速度结构的约束   总被引:1,自引:0,他引:1  
青藏高原南部地壳平均速度偏低和壳内广泛存在低速层是地壳物质组成、岩石物性状态和温度压力等综合因素在岩石弹性性质上的表现。依据岩石物理学和部分熔融实验获得的青藏高原南部地壳岩石弹性参数和熔体分布的结构信息,本文模拟青藏高原南部地壳岩石在不同的地温梯度条件下波速和密度随深度的变化,从而为探讨青藏高原南部地  相似文献   

8.
长江中下游中生代花岗岩类源区的壳—壳混源性质   总被引:1,自引:0,他引:1       下载免费PDF全文
长江中下游地区中生代花岗岩类形成于大别造山带碰撞后岩石圈物质的调整演化过程。Sr、Nd、Pb同位素组成数据表明,早、晚阶段花岗岩类具有相似的壳-壳混合源区性质,其主要源岩端员可能分别相当于以大别杂岩为代表的深变质岩系和中、新元古界底侵(underplating)基性物质与部分古元古界沉积-火山-侵入岩系组成的扬子陆块下地壳岩石。这两种成分不同的下地壳物质在这里呈指状穿插体结构。长江中下游地区下地壳在碰撞造山过程中曾是大别地块与扬子地块之间的深部构造混杂带。本文主要根据各类已有的Sr、Nd、Pb同位素组成资料讨论花岗岩类的源区性质问题  相似文献   

9.
阴山地区前寒武纪变质岩石地层序列   总被引:1,自引:0,他引:1  
作者等从1990年开始,在研究阴山地区前寒武纪变质岩群年代构造格架过程中,采用“构造-地(岩)层-事件法”和变质岩构造解析的方法,对阴山地区前寒琥系重新进行了厘定,采用单颗粒锆石U-Pb,Sm-Nd等时线同位素测年方法对各岩群进行了测定,初步建立了阴山地区的前寒武纪变质岩群的年代构造格架,将阴山地区前寒武纪岩石地层序列划分为;中太古代兴和岩群,晚太古代集宁群/乌拉山岩群,色尔腾山群,古元古代层侵纪  相似文献   

10.
杨主恩  邓晋福 《岩石学报》1995,11(3):279-291
太行-五台山区存在一巨型的北东向韧性剪切系统,由三条大型的韧性剪切带束构成。每条带束又由互相平行或小角度交接的一系列小规模韧性剪切带组成。其主要构造岩类为变糜校岩、糜棱岩、S-C糜棱岩等。该韧性剪切系统发生于晚太古代至早元古代的五台运动期间,经历过两期次韧性剪切作用,早期的差异应力约为12MPa,晚期的差异应力约为30MPa。应变速率分别为1.36×10(-14)/s和7.36×10(-14)/s,并指出巨型韧性剪切系统的发生将造成大规模的地壳流动,以此可以解释本区中地壳的大型低速体成因。  相似文献   

11.
In this study, we present an interpretation of seismic refraction profiles from the PISCO 94 experiment in northern Chile. As the PISCO experiment was a combined active and passive seismological study, we also discuss results of the passive part in the context of the seismic refraction model. Previous seismic refraction and gravimetric studies indicate a maximum crustal thickness of about 70 km beneath the Pre- and Western Cordillera. The new seismic refraction data lead to a differentiated image of the Andean crust which shows strong varying characteristics. The crustal discontinuities (up to five are detected) dip from W to E. The upper crust has a thickness of 18 km (Precordillera) to 23 km (magmatic arc) underlain by the recent middle crust down to 35–45 km where the velocity increases to about 7 km/s at its base. This crustal level is interpreted as old continental lower crust and its base as blurred continental (paleo) Moho. Beneath the Precordillera, a strong discontinuity at 70 km depth with a velocity increase to about 8 km/s was detected, interpreted as the recent geophysical Moho. For the magmatic arc, this deep discontinuity could not be found by active seismic measurements. The tomographic models of the seismological studies, in general, confirm the seismic refraction results. Anomalously high vp/vs ratios in the deeper part of the forearc indicate a hydrated mantle wedge consisting of serpentine and amphibole-bearing peridotite and the 70 km discontinuity is interpreted as the boundary between these two different stages of the hydrated mantle wedge. A zone of high attenuation (Qp) and high vp/vs ratios beneath the magmatic arc coincides with the low velocity zones and indicates partially molten rocks from a depth of 20 km down to the asthenospheric wedge.  相似文献   

12.
西藏尼玛县吉瓦地区措勤-多瓦后陆拗陷带内分布的火山岩LA-ICP-MS锆石U-Pb年龄为120.3~126.5Ma左右,重新厘定为早白垩世则弄群,否定了前人归属为上新世乌郁群(N2wy)及始新世帕那组(E2p)的认识。岩石以酸性火山岩为主,中基性火山岩为辅,酸性岩类主要为火山碎屑岩类和熔岩类,典型岩石类型为流纹质熔结凝灰岩和流纹岩等,中基性岩主要为玄武安山岩,安山玄武岩等,杏仁构造普遍发育。研究区大量的流纹质熔结凝灰岩的出现反映了吉瓦地区的火山岩主要为陆相火山喷发形成。地球化学特征显示轻稀土富集,负Eu异常明显,富集K、Rb、Th、U等大离子亲石元素,相对亏损Nb、Ta、P、Ti等高场强元素。酸性火山岩具有A型花岗质岩浆岩特征,基性岩具有板内玄武岩亲缘性,这一特征可能与班公湖-怒江洋壳岩石圈南向俯冲过程中发生的板片断离有关。中部拉萨地体南侧早白垩世火山岩的发现,使班公湖-怒江洋壳南向俯冲在晚侏罗世-早白垩世的岩浆活动在原来的基础上向南延伸70~80km,火山岩地层时代的重新归位对研究冈底斯带早白垩世地球动力学背景及建立地质年代学格架提供了新的约束资料,具有重要的科学意义。吉瓦地区早白垩世则弄群火山岩可能受到了班公湖-怒江特提斯洋壳向南、雅鲁藏布江洋壳向北的双向俯冲制约。  相似文献   

13.
秦岭-大别山壳幔岩石高温高压下的电性特征   总被引:6,自引:0,他引:6       下载免费PDF全文
高平  杨僻元 《地质科学》1998,33(2):195-203
首次报导了秦岭-大别山壳幔岩石高温高压下电导率的测定结果。该区中上地壳主要代表岩石(角闪岩、绢云母石英片岩、千枚岩等)在10-25km的温压条件下,含水矿物出现脱水会引起电导率值升高,认为这是该区出现高导层体的主要原因;中下地壳代表性岩石(片麻岩、麻粒岩、榴辉岩等)由于石英从α相向β相转变,会导致电导率值(σ)下降。在下地壳的温压条件下电导率值一般为10-2到10-3S·m-1;上地幔的代表性岩石由于组成矿物较为基性,电导率值比下地壳高,从0.1到1S·m-1。  相似文献   

14.
E.A. Hetland  F.T. Wu  J.L Song   《Tectonophysics》2004,386(3-4):157-175
During 1998–1999, we installed a temporary broadband seismic network in the Changbaishan volcanic region, NE China. We estimated crustal structure using teleseismic seismograms collected at the network. We detected a near surface region of strong anisotropy directly under the main volcanic edifice of the volcanic area. We modeled 109 receiver functions from 19 broadband stations using three techniques. First we used a “slant-stacking” method to model the principal crustal P reverberation phases to estimate crustal thickness and the average crustal P to S speed ratio (vp/vs), assuming an average P-wave velocity in the crust. We then estimated crustal S-wave velocity (vs) and vp/vs profiles by modeling stacked receiver functions using a direct search. Finally, we inverted several receiver functions recorded at stations closest to the main volcanic edifice using least squares to estimate vs velocity profiles, assuming a vp/vs value. The results from the three estimation techniques were consistent, and generally we found that the receiver functions constrained estimates of changes in wave speeds better than absolute values. We resolved that the crust is 30–39 km thick under the volcanic region and 28–32 km thick away from the volcanic region, with a midcrust velocity transition at about 10–15 km depth. We estimated that the average crust P-wave velocity is about 6.0–6.2 km/s surrounding the main volcanic region, while it is slightly lower in the vicinity of the main volcanic edifice. The estimates of vp/vs were more ambiguous, but we inferred that the bulk crustal Poisson's ratio (which is related to vp/vs) ranges between 0.20 and 0.30, with a suggestion that the Poisson's ratio is lower under the central volcanic region compared to the surrounding areas. We resolved low S-wave velocities (down to about 3 km/s) in the middle crust in the region of the main volcanic edifice. The low velocity anomaly extends from about 5–10 to 15–25 km below the surface, probably indicating a region of elevated temperatures. We were unable to determine if partial melt is present with the data we considered in this paper.  相似文献   

15.
大别山超高压变质岩的变形历史及折返过程   总被引:22,自引:3,他引:19       下载免费PDF全文
江来利  刘贻灿 《地质科学》1999,34(4):432-441
大别山南部的超高压变质岩在其形成及折返过程中经过5期变形。D1变形为榴辉岩相前变形,形成于扬子板块北缘陆壳基底的俯冲过程中;D2变形形成于折返初期(220-210Ma)即超高压变质岩在浮力驱动下折返至下地壳底部的过程中,变形以块状榴辉岩的糜棱岩化及层状榴辉岩和基质的紧密-同斜褶皱为特征;D3变形发生在折返中期(200-180Ma)即超高压变质岩在南北陆块持续碰撞作用下被挤出并向北逆冲折返至中地壳的过程中,变形以榴辉岩的布丁化和基质的强烈韧性剪切变形为特征;D4变形是折返晚期(130-110Ma)超高压变质岩在地壳浅部伸展体制下向南滑脱所致;在折返至近地表时,超高压变质岩受到NE向断层(D5)的切割。  相似文献   

16.
Seismic velocities under confining pressures to 10 kbar have been measured for rocks of the Ivrea—Verbano and Strona—Ceneri Zones of northern Italy, a metamorphic complex thought to represent a cross-section of the continental crust and crust—mantle boundary. Laboratory-determined compressional wave velocities for schists and gneisses of the amphibolite facies found in the upper levels of the section (having an average density of 2.74 g/cm3) average 6.45 km/sec at pressures between 6 and 10 kbar. These increase with depth to values greater than 7.1 km/sec for amphibolites and rocks of the amphibolite—granulite facies transition and to 7.5 km/sec. (average density 3.06 g/cm3) in intermediate and mafic granulite facies rocks near the base of the section. Compressional wave velocities then abruptly increase to 8.5 km/sec in ultramafic complexes near the Insubric Line. Regional geophysical surveys show that Pg is 6.0 km/sec (density of 2.7 g/cm3), P* is 7.2–7.4 km/sec (density of 3.1 g/cm3) and Pn is 8.1 km/sec, values which are in agreement with the laboratory data when effects of temperature are taken into consideration. Estimated thicknesses of exposed rock units are in reasonable agreement with thicknesses determined for crustal layers in seismic refraction experiments. The agreement between the regional crustal structure and the laboratory-determined values of velocity and density provides strong evidence for the hypothesis that the rocks of this metamorphic complex represent a cross-section of the continental crust of the Po Basin.Using the Ivrea—Verbano and Strona—Ceneri sequence as a model of the continental crust, the crust of northern Italy is shown to consist of a thick series of metamorphic rocks with greenschist facies rocks occupying the uppermost levels. These grade downward into amphibolite facies gneisses and schists with occasional granitic intrusives. The Conrad discontinuity is marked by a change from silicic and intermediate amphibolite facies gneisses to intermediate and mafic granulite facies rocks in which hydrous minerals diminish in abundance and thus represents a distinct transition in terms of both composition and metamorphic grade. The lower crust is dominated by a heterogeneous series of mafic and metapelitic rocks in the granulite facies. Importantly, metasedimentary rocks of intermediate silica content found in the complex can have compressional wave velocities equivalent to velocities in mafic rocks suggesting that the lower continental crust everywhere is not necessarily mafic in composition. Ultramafic complexes near the Insubric Line may represent the upper mantle of the continent and their setting suggests that the continental crust-upper mantle boundary is sharp and is not isochemical.  相似文献   

17.
A complete understanding of the processes of crustal growth and recycling in the earth remains elusive, in part because data on rock composition at depth is scarce. Seismic velocities can provide additional information about lithospheric composition and structure, however, the relationship between velocity and rock type is not unique. The diverse xenolith suite from the Potrillo volcanic field in the southern Rio Grande rift, together with velocity models derived from reflection and refraction data in the area, offers an opportunity to place constraints on the composition of the crust and upper mantle from the surface to depths of  60 km. In this work, we calculate seismic velocities of crustal and mantle xenoliths using modal mineralogy, mineral compositions, pressure and temperature estimates, and elasticity data. The pressure, temperature, and velocity estimates from xenoliths are then combined with sonic logs and stratigraphy estimated from drill cores and surface geology to produce a geologic and velocity profile through the crust and upper mantle. Lower crustal xenoliths include garnet ± sillimanite granulite, two-pyroxene granulite, charnokite, and anorthosite. Metagabbro and amphibolite account for only a small fraction of the lower crustal xenoliths, suggesting that a basaltic underplate at the crust–mantle boundary is not present beneath the southern Rio Grande rift. Abundant mid-crustal felsic to mafic igneous xenoliths, however, suggest that plutonic rocks are common in the middle crust and were intraplated rather than underplated during the Cenozoic. Calculated velocities for garnet granulite are between  6.9 and 8.0 km/s, depending on garnet content. Granulites are strongly foliated and lineated and should be seismically anisotropic. These results suggest that velocities > 7.0 km/s and a layered structure, which are often attributed to underplated mafic rocks, can also be characteristic of alternating garnet-rich and garnet-poor metasedimentary rocks. Because the lower crust appears to be composed largely of metasedimentary granulite, which requires deep burial of upper crustal materials, we suggest the initial construction of the continental crust beneath the Potrillo volcanic field occurred by thickening of supracrustal material in the absence of large scale magmatic accretion. Mantle xenoliths include spinel lherzolite and harzburgite, dunite, and clinopyroxenite. Calculated P-wave velocities for peridotites range from 7.75 km/s to 7.89 km/s, with an average of 7.82 km/s. This velocity is in good agreement with refraction and reflection studies that report Pn velocities of 7.6–7.8 km/s throughout most of the Rio Grande rift. These calculations suggest that the low Pn velocities compared to average uppermost mantle are the result of relatively high temperatures and low pressures due to thin crust, as well as a fertile, Fe-rich, bulk upper mantle composition. Partial melt or metasomatic hydration of the mantle lithosphere are not needed to produce the observed Pn velocities.  相似文献   

18.
The large-scale seismic refraction and wide-angle reflection experiment POLONAISE'97 together with LT-7 and TTZ profiles carried out with the most modern techniques gave a high resolution of crustal structure of the Trans-European Suture Zone (TESZ) in NW and central Poland. The results of seismic investigations show the presence of relatively low velocity rocks (Vp < 6.1 km/s) down to a depth of 20 km beneath the Polish Basin (PB), and a high velocity lower crust (Vp = 6.8–7.3 km/s). The crustal thickness in the TESZ is intermediate between that of the East European Craton (EEC) to the northeast (40–45 km) and that of the Variscan crust (VB) to the southwest ( 30 km). Velocities in the uppermost mantle are relatively high (Vp = 8.25–8.45 km/s). The crust is three-layered with substantial differences in the velocities and thickness of individual layers. The area of the TESZ in NW and central Poland can be divided into at least two crustal blocks (terranes), called here Pomeranian Unit (PU, in the northwest) and Kuiavian Unit (KU, in the southeast). The postulated boundary between KU and PU is rather sharp at particular levels of the crust. Velocity distribution in the middle and lower crystalline crust in the TESZ area resemble values recognized in the EEC area, the fundamental difference being the much smaller thickness of both these layers. Our hypothesis/speculation is that the attenuated lower and middle crust of the TESZ belong to proximal terranes built of the EEC crust detached in the southeast and re-accreted to the EEC due to the process of anti-clockwise rotation of the Baltica paleocontinent during the Ordovician–Early Silurian.  相似文献   

19.
大别山超高压变质带的构造背景   总被引:8,自引:4,他引:8  
江来利  徐树桐 《地质论评》1995,41(3):229-237
大别山南部的超高压变质带具有特征的榴辉岩相矿物组合,榴辉岩的岩石化学及稀土元素特征及其伴生的岩石组合,表明这个带是以陆壳成分为主混有少量上地幔及洋壳成分的混杂岩,榴辉岩相围岩和大别群具有不同的变质和变形特征。超高压变质带形成于扬子和中朝板块大陆碰撞的构造环境,是扬子板块陆壳向北俯冲到一定深度的变质产物。  相似文献   

20.
卢德源  王香泾 《地球学报》1990,11(2):227-237
通过对沱沱河—格尔木地区地震测深资料的重新解释,给出了该区地壳的二维速度分布剖面及Q值分布。上地壳横向速度结构具有明显的分区性。该分区范围大体与“亚东—格尔木项目”中所划分出的地体相一致。地震资料为本区划分地体提供了佐证。本文讨论了地体的拼合、碰撞的深部作用过程。认为上地壳的逆冲、叠覆,中、下地壳的挤压增厚,以及岩浆的贯入,壳幔物质的混合导致了青藏高原的隆升。  相似文献   

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