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1.
东天山康古尔塔格金矿田控矿构造特征   总被引:3,自引:0,他引:3  
利用构造面理统计、岩组分析和岩石磁化率各向异性参数测量,研究了东天山康古尔金矿田控矿构造的特征。结果表明,金矿田发育一组构造面理,具有典型的对称型岩组图;磁组构特征的变化明显反映出矿田韧性变形具北强南弱的特点;矿田韧性断裂具有压扁应变的特征,磁面理产状与韧性断裂产状相一致。因此,康古尔金矿田韧性断裂应是起源于共轴变形的韧性挤压带。  相似文献   

2.
徐兴旺  张学勤 《地质科学》1998,33(2):147-157
新疆觉罗塔格韧性挤压带发育于吐哈地块和中天山地块之间石炭系东西向火山-沉积建造中,由一组走向东西、产状陡立的透入性片理组成。眼球状结构、平行带状结构和菱形网状结构是韧性挤压带不同构造区亚带的排布格式,它们相对变形带主界面而言具有很好的对称性。片理构造、拉伸线理构造、同生褶皱构造、布丁构造、压力影构造、碎斑构造、粒内面理构造、位错构造和矿物光轴优选定向等韧性构造形迹发育,这些不同尺度的韧性变形构造形迹的组构都具以片理面为对称面而呈现出对称的特征。韧性挤压带横分为3个亚带,3个亚带岩石形变相变和应力应变等方面都呈横向对称状分布。“奶油饼”结构是韧性挤压带的应变结构。该韧性挤压带成因于南北两侧吐哈地块和中天山地块的南北向水平共轴挤压作用,形成于255Ma至280Ma(早二叠世),压扁机制是该韧性变形带的变形机制,它的力学性质表明该韧性变形带不应属于南北两大板块之间的俯冲-剪切带,其成因可能与板块孤后盆地的对称开合有关。  相似文献   

3.
西秦岭北缘武山—鸳鸯镇构造带磁组构特征   总被引:2,自引:0,他引:2  
构造与磁组特征揭示出武山-鸳鸯镇构造带为一条复合性断裂带,变形样式表现为花状构造形态。野外及显微构造特征表明,先期韧性变形为右行剪切,发育于中、深构造层次;66个构造岩样品的磁化率椭球形态分析表明,其以平面和压扁应变为主,总体较高的磁化率各向异性度表现了构造带的强变形特征;磁化率椭球主轴方位显示NW和NEE走向两组磁面理的存在,暗示高应变剪切带在平面上可能以共轭或网格状形态出露,锐夹角分线近EW向;高角度磁面理及较为发育的低倾伏角磁线理暗示了沿构造带近EW向的走滑剪切,部分高倾伏角磁线理可能与构造带的挤压和(或)转换挤压相关,而相对集中的磁面理与相对分散的磁线理也表明了构造带的平面及压扁应变体制。强烈的右行转换挤压奠定了西秦岭北缘现今的反"S"型区域构造,表明碰撞造山过程中,西秦岭诸中、小块体一定程度的向西挤逸。中、新生代沿构造带继承性的发育以西秦岭北缘(渭河)断裂为中心的一系列正花状左行走滑构造,构成青藏高原东北边缘物质逃逸及应力释放与调整的重要边界。  相似文献   

4.
在应用传统的磁组构方法进行岩石构造变形分析时,发现这些方法中有许多不完善之处,如变形岩石磁化率量值椭球和应变椭球是否可以对应及对应条件,初始磁组构是否会影响变形碉石磁化率量值椭球与应变椭球的对应关系,岩石脆性破裂前的塑性变形是否影响磁组构,韧性变形如何影响磁组构,能否用磁组构来推断主应力方向,Ratore(1980)最小磁化率指向对韧性剪切带运动方向和方式的分析在多期变形区是否适用等,并据此提出解  相似文献   

5.
盐井?五龙断裂是龙门山中央断裂北川?映秀断裂的南延部分,也是龙门山南段的三大控制性主干断裂之一。为了详细认识盐井?五龙断裂的构造几何学、运动学特征,在野外构造研究的基础上,运用磁组构方法对盐井?五龙断裂105块构造岩定向样品进行深入研究。野外构造解析表明断裂至少发生了韧性挤压剪切、脆?韧性逆冲和脆性挤压碎裂三期构造变形。磁组构研究显示构造岩磁组构样品的平均磁化率k_m值具有强磁化率和弱磁化率两种特征。磁组构形状参数T、磁面理F值、磁线理L值和T-P_J图解显示磁化率椭球体主要为压扁型,磁面理较磁线理发育,局部发育较强磁线理,进一步表明盐井?五龙断裂以挤压、剪切为主,伴有拉伸变形的整体特征,样品的P_J整体较大,显示出构造强变形磁组构特征。最小磁化率主轴Kmin方位表明盐井?五龙断裂北段和南段分别受到了NW-SE向和NEE-SWW向的挤压作用;Kmin方位和倾伏角表明北段晚一期的脆韧性变形主体为自NW向SE的较高角度的挤压逆冲剪切变形,局部伴有极小量的左行走滑特征。断裂南段早期韧性变形整体以自SWW向NEE的挤压逆冲剪切变形为主,上盘(西盘)远离主干断裂表现为左行走滑兼逆冲的运动学特征,下盘变形主要以逆冲剪切变形为主,走滑分量极小,并且自西向东韧性剪切变形具有相对强弱相间的特征。  相似文献   

6.
新疆觉罗塔格韧性变形带,惯称秋格明塔什-黄山韧性剪切带,发育于吐哈地块和中天山地块之间的EW向石炭系火山-沉积建造中,由一组走向EW、产状陡立的透入性片理组成。韧性变形带内韧性构造形迹发育,并可分为4个等级:大型构造、小型构造、微观构造和超微观构造。不同级别构造形迹的组构分析表明,觉罗塔格韧性变形带的内部组构是对称的,这意味着其成因于对称的构造变形。与主界面平行的大量压性构造形迹的产出,说明该对称组构成因于与垂直变形带(面)的共轴挤压作用,即觉罗塔格韧性变形带是一个韧性挤压带。   相似文献   

7.
鲁西地区韧性剪切带岩石磁组构分析及其构造意义   总被引:1,自引:1,他引:0  
岩石磁组构分析可用来研究岩石的组构特征及构造变形。鲁西地区韧性剪切带岩石磁组构具有磁各异性度P和磁百分率各向异性值H高、磁化率量值椭球呈压扁状、磁面理发育而磁线理不发育的特点。区内韧性剪切带变形强烈,以压扁作用为主,最大主压应力方向近NE和S-N向,以右旋运动为主。韧性剪切带形成以后,区内主要经历了热蚀变和脆性变形,韧性变形很弱  相似文献   

8.
鲁西地区韧性剪切带岩磁组构分析及其构造意义   总被引:2,自引:1,他引:1  
岩石磁组构分析了可用来研究岩石的组构特征及构造变形。鲁西地区韧性剪切带岩石磁组构具有磁各异性度P和磁百分率各向异性值H高、磁化率量值椭球呈压扁状、磁面理发育而磁线理不发育的特点。区内韧性剪切带变形强烈,以压扁作用为主,最大主压应力方向近NE和S-N向,以右旋运动为主。韧性剪切带形成以后,区内主要经历了热蚀变和脆性变形,韧性变形很弱。  相似文献   

9.
早前寒武纪多期变质变形区的韧性剪切带,根据其与变形变质的关系可分为(1)早期主变形变质作用形成的韧性剪切带,简称主期韧性剪切带;(2)晚期叠加变形变质作用形成的韧性剪切带,简称叠加韧性剪切带。主期韧性剪切带糜棱岩,退变质和新生面理等标志,其高应变特征主要通过岩石中片理和线理发育程度,矿物定向程度,矿的粒度及应变大小表现出来。由于主期声望生剪切带内的片理和线理及矿物组合与围岩中的相同,因此相同岩石的  相似文献   

10.
通过对西藏南部聂拉木地区前寒武纪岩石磁组构进行研究表明:该区岩石磁化率百分率的各向异性H值较高,均大于10%,这说明岩石曾经历了较强烈的韧性变形。根据岩石最小磁化率从主轴K3方向推断的岩石变形期,最大的主压应力方位主要有SN向、NE-SW向、NW-SE向。岩石磁组构费林(Flinn)图解表明,大部分岩石磁组构具有磁面理发育、磁线理不发育,岩石磁化率量值椭球体呈压扁状的特点。部分岩石磁组构还具有磁线理发育、磁面理不发育,岩石磁化率量值椭球体呈拉长形的特点。因此,该区域构造应变型式具有压缩应变和拉伸应变二种型式。岩石磁组构研究还表明,该区具有SN向挤压、NW-SE向挤压、NW-SE向伸展滑脱三期构造应力。这说明高喜马拉雅结晶基底岩石曾经历了SN向逆冲推覆构造作用,NW-SE向逆冲推覆构造作用和NW-SE向伸展滑脱构造作用过程。构造应力场的转变及其构造作用,为印度板块与欧亚板块之间,自白垩纪末~始新世晚期发生的弧~陆、陆~陆碰撞,和始新世晚期以来,强烈的陆内汇聚造山与青藏高原剧烈隆升,及区域伸展滑脱构造作用过程的响应。  相似文献   

11.
北祁连山俯冲杂岩带的构造演化   总被引:76,自引:2,他引:76  
北祁连位位于华北克拉西部阿拉善地块与中祁连-柴达木泛地块之间是我国最具特色的大陆造山带之一。带内发育有震旦纪-中寒武世的裂谷火山岩,晚寒武世-奥陶纪蛇绿岩,中晚奥陶世岛弧火山岩,晚奥陶世弧后拉张盆地火山-沉积岩,志留纪残余海盆相复理石和泥盆纪山间磨粒石等,中间夹两条变质和变形特征不同的加里东期俯冲杂岩带;南带为深层俯冲,北带为浅层俯冲杂岩;这两条杂岩石可能形成于同一俯冲带的不同深度,俯冲杂岩带中岩  相似文献   

12.
西藏羌塘地区印支期火山岩主要分布在盆地北缘若拉岗日和羌塘中央隆起南缘肖茶卡—香琼火山岩地区。主要元素和稀土元素地球化学特征分析表明 ,若拉岗日区火山岩属富钠型的碱性系列玄武岩 ,肖茶卡—香琼火山岩为拉斑玄武岩。两区岩石系列和构造发育部位虽不同 ,却都是在海西期末闭合的裂陷带上再扩张过程中形成的 ,反映盆地北部和中央隆起处的两条板块缝合带有相似的演化特点。  相似文献   

13.
琉璃庙地区变质杂岩主要由变质上壳岩、变质深成侵入杂岩及其脉岩群组成.它们多数经韧性变形改造形成各种类型糜棱岩和构造片岩.研究表明,变质上壳岩原岩主要以钙碱性火山(熔)岩为主.本区变质杂岩经历了三期变质变形作用,即高角闪岩相区域变质作用形成大型复式同斜紧闭褶皱;绿帘角闪岩相动力变质作用及强烈的韧性变形,形成了以蓝闪石为特征的不同强度的糜棱岩带;绿片岩相动力变质作用和韧脆性变形作用.  相似文献   

14.
SIGNIFICANCE AND CHARACTERISTICS OF OPHIOLITE SUITE IN LAJI SHAN, SOUTHERN QILIAN MOUNTAINS, QINGHAI PROVINCE,CHINAthedoctoralprogramofhighereducation (970 49119)  相似文献   

15.
The Archean metamorphic rocks of the Superior province of the Canadian Shield occur in lithologically defined belts or subprovinces. The tectonically more stable interiors of belts possess consistent primary components of magnetic remanence. In the case of the Quetico belt, these stable directions are tightly grouped about 005°/55° with some minor dispersion and most were acquired during the cooling that followed syntectonic recrystallisation.

This study examines the directions of primary remanence components for rocks along the margins of the Quetico belt, within 4 km of the strongly deformed vertical, ENE-trending boundaries. The boundaries are known to have experienced dextral transpression involving penetrative single-phase deformation which out-lasted metamorphism. Within a few kilometres of the belt boundaries, the primary remanence components are re-distributed along a vertical ENE-trending, great-circle girdle which is nearly parallel to the plane of transpressive shear and regional schistosity. It is suggested that the effects of transpression have mechanically deflected the components of primary remanence toward this plane.  相似文献   


16.
阿尔泰南缘东段变形岩石磁组构分析   总被引:2,自引:0,他引:2  
磁组构是指岩石磁化率的各向异性,磁组构方法已经被广泛应用于构造变形分析。阿尔泰南缘东段地区岩石磁组构特征是磁各向异性度P值大,反映本区总体韧性剪切变形强烈。萨尔布拉克—科克萨依脆性劈理化带和玛因鄂博韧性剪压构造带的E>0占优势,磁面理发育,部分样品磁线理发育,反映变形以压扁变形为主,主压应力方向为NE(NEE)向,伴随弱的左行剪切;达拉维孜—阿热勒托别韧性流变构造带和锡泊渡—富蕴深层次变晶糜棱岩带E>0和E<0均存在,磁面理和磁线理均发育,反映以剪切变形为主;其中达拉维孜—阿热勒托别构造带主压应力方向为NE(NEE)向,为左行剪切,而锡泊渡—富蕴构造带主压应力方向为SN向,为右行剪切。在达拉维孜—阿热勒托别构造带中的哈腊苏铜矿和卡拉先格尔—老山口一带一些叠加蚀变矿化的强变形岩石的P值明显减小,说明在韧性变形之后发生过矿化热液作用导致磁化率各向异性发生了均一化。结合区域构造分析,可以认为萨尔布拉克—科克萨依构造带、达拉维孜—阿热勒托别构造带和玛因鄂博构造带构成一个完整的板块碰撞聚合带,而锡泊渡—富蕴构造带可能为在古生代期间被强烈改造的具有前震旦纪结晶基底的微大陆的残留(或断片)。  相似文献   

17.
Plate tectonic activity has played a critical role in the development of petrotectonic associations in the Kadiri schist belt. The calc alkaline association of basalt, andesite, dacite and rhyolite(BADR) is the signature volcanic rock suite of the convergent margin. The N-S belt has gone below the unconformity plane of Cuddapah sediments. In the northern part geochemical and structural attributes of the Kadiri greenstone belt is studied along with microscopic observations of selected samples. Harker diagram plots of major elements generally indicate a liquid line of descent from a common source, such that BADR rocks are derived from a common parent magma of basaltic to andesitic composition. These calc-alkaline volcanic rocks are formed at convergent margins where more silicic rocks represent more highly fractionated melt. All the litho-units of this greenstone belt indicate crush and strain effects. The stretched pebbles in the deformed volcanic matrix with tectonite development along with associated greenschist facies metamorphism, alteration and hydration is remarkable. Flow foliation plane with N-S strike and very low angle(5° to 10°) easterly dip and N-S axial planar schistosity formed due to later phase isoclinal folding can be clearly identified in the field. Basic intrusives are quite common in the surrounding area. All the observations including the field setting and geochemistry clearly demonstrate ocean-continent subduction as the tectonic environment of the study area.  相似文献   

18.
姚雪  张虎  吴中海  陈光艳  田素梅  黄亮 《地质通报》2016,35(8):1346-1356
盈江地区上新世火山岩是腾冲火山岩的重要组成部分,但以往研究极少涉及。通过对该火山岩进行岩石地球化学和KAr年代学研究,同时与腾冲火山岩东侧的龙江河谷地区的上新世火山岩对比,认为盈江和腾冲地区上新世火山岩是大陆构造背景下造山带造山后伸展作用下形成的火山岩,具有高Al_2O_3(15.54%~17.44%)、高K_2O(0.94%~3.50%)的岩石化学特点,为高钾钙碱性系列火山岩,形成于拉张环境,为双峰式火山岩(玄武岩DI=33~50,英安岩DI=62~76)。造山带裂谷火山岩常具弧火山岩的岩石化学特点,但其形成于造山带造山后的拉张环境,与板块俯冲作用没有直接关系。造山带裂谷火山岩发育在早期造山带,是造山带发展过程中一定阶段的岩浆作用的产物。  相似文献   

19.
桂西天峨—凤山地区碳酸盐岩台地韧性剪切变形带   总被引:1,自引:0,他引:1  
桂西天峨—凤山地区泥盆纪至二叠纪碳酸盐岩台地相地层均不同程度地发生过韧性剪切变形变质作用。在碳酸盐岩台地边缘,主要沿石炭系、二叠系的一定层位,形成了一套浅变质强变形、面型展布的钙质韧性剪切变形带,剪切变形带由强、弱变形亚带及两者之间过渡亚带组成。显微镜下观察发现:强变形带内变质变形岩石具糜棱结构,韧性剪切变形构造发育,属糜棱岩系列。研究表明,区内钙质韧性剪切变形带属浅层次逆冲型,主要是弧—陆碰撞挤压构造环境下变形分解作用的产物。  相似文献   

20.
Polydeformed recumbent fold complexes of upper greenschist to low amphibolite facies bound the central Ordovician ophiolite terrane of the northeastern Appalachians on both sides, separate it from the platforms on the northwest and southeast and impart a symmetry to the system which is particularly well displayed in northern Newfoundland. These metamorphic complexes or marginal crystalline belts contain metasedimentary and metavolcanic rocks whose deformation and metamorphism predate Ordovician ophiolitic rocks of the central part of the system and hence were not the product of Ordovician ocean-floor spreading. The metasediments of the marginal crystalline belts have characteristics similar to sediments of continental-rise prisms while the metavolcanic rocks are similar to island arc, or locally to ophiolitic sequences. Furthermore, the crystalline belts in Newfoundland contain linear mafic/ultramafic complexes within them of ophiolitic aspect and comparable age to the surrounding metamorphic rocks. In the northwestern marginal crystalline belt this mafic/ultramafic complex has not only controlled the late depositional development of the belt, but also apparently occupies the symmetry axis of the recumbent fold complex and is spatially related to deformation intensity. It is suggested that these mafic/ultramafic complexes represent remnants of small ocean basins that opened within the continental-rise prisms. Tectonism resulted from closure of these basins associated with some transform movement, bringing a continental fragment back into contact with the rest of the continental margin. Closure is dated as Late Cambrian in the northwest and Late Precambrian in the southeast. This new mechanism for deformation of the marginal crystalline belts explains many of the details of geologic development not accounted for by earlier models. The implications of these Late Precambrian-Early Paleozoic processes on both sides of the proto-Atlantic Ocean are investigated to elucidate later plate development in Newfoundland. It is suggested that the later Acadian (Middle Devonian) orogeny may have been the result of convergence of oceanic trenches, leading to formation of transform faults. If correct, continental collision took place locally but was not the fundamental cause of the orogeny. This accounts for facies distribution and the contrast in metamorphism, deformation intensity and structural style between the Acadian and the earlier orogenic episodes.  相似文献   

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