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991.
位于巴基斯坦北部西喜马拉雅的科希斯坦地体为夹持于亚洲板块与印度板块之间的倾斜的岛弧型壳体。科希斯坦岛弧北界为主地幔逆总断层(MMT),北界为北部缝合带(或喀啦昆仑主逆冲断层,MKT),可将其划分为几个地质单元。奇拉斯(Chilas)杂岩体为一长约300km、宽50km的巨型基性侵入岩体,与MMT和MKT近平行展布。它被认为是科希斯坦岛弧的岩浆房根区。奇拉斯杂岩体主要由辉长苏长岩和几个超镁铁质岩-镁铁质岩(简称UMA)岩体组成。前侵入后之中。奇拉斯杂岩体岩石普遍发生轻微变形,出现叶理化和韧性剪切带。UMA主要由橄榄石(含或不含单斜辉石)堆积岩(纯橄岩,异剥橄岩)和斜长石-单斜辉石-斜方辉石堆积岩(二辉辉长岩)组成,含有少量单斜辉石-斜方辉石堆积岩(辉石岩)。辉长苏长岩的地球化学特征表明其为岛弧环境下形成的非堆积岩,而UMA的地球化学特征表明其为岛弧环境下的堆积岩。辉长苏长岩和UMA的主元素地球化学特征在AFM图解上可用堆积和非堆积的模式来解释,辉长苏长岩的稀土和微量元素地球化学特征在100MgO/(MgO TFeO)图解上显示岛弧型特点,且UMA表明其堆积特性。  相似文献   
992.
通过对甘新交界地区 3条石炭系和二叠系代表剖面的观察 ,结合多年调查东疆地层的资料积累 ,认为 :1)因绿条山组岩性组合及所含生物群与东疆的东古鲁巴斯套组相同 ,甘新交界地区绿条山组分布区是北塔山地层小区石炭系的南延部分 ,应从黑鹰山地层小区分出 ,甘新交界地区的中南部普遍缺失杜内期沉积 ;  2 )阿齐山—康古尔—雅满苏火山岛弧带与博格达—哈尔里克火山岛弧带的构造造山历程不同 ,彼此的兴衰转换存在一定的时间差 ;  3)甘肃北山石炭纪生物群与天山一级地层区的生物群相似 ,具有特提斯区系和西伯利亚—北美区系相互交会、混生的过渡性质 ;  4 )来自兴蒙海槽的早二叠世海侵 ,未波及北疆地区 ,而是经由北山、红柳河谷地 ,终止于库姆塔格沙垄以东的狭小区域 ,根据雅满苏西大沟阿瑟尔期类化石的发现 ,推断至今从未发现早二叠世类化石的北山 ,主要原因是调查程度较低 ;  5 )在金窝子金矿、2 10金矿及 2 30矿脉附近找到许多早二叠世生物化石 ,对仅根据一个同位素年龄数据 ( 36 1.1Ma)建立的“金窝子组”提出质疑 ,否定区内存在泥盆纪地层 ,认为金窝子金矿围岩地层的时代是早二叠世 ,不是晚泥盆世。  相似文献   
993.
Collision, subduction and accretion events in the Philippines: A synthesis   总被引:7,自引:0,他引:7  
Abstract The Philippines preserves evidence of the superimposition of tectonic processes in ancient and present‐day collision and subduction zone complexes. The Baguio District in northern Luzon, the Palawan–Central Philippine region and the Mati–Pujada area in southeastern Mindanao resulted from events related to subduction polarity reversal leading to trench initiation, continent‐arc collision and autochthonous oceanic lithosphere emplacement, respectively. Geological data on the Baguio District in Northern Luzon reveal an Early Miocene trench initiation for the east‐dipping Manila Trench. This followed the Late Oligocene cessation of subduction along the west‐dipping proto‐East Luzon Trough. The Manila Trench initiation, which is modeled as a consequence of the counter‐clockwise rotation of Luzon, is attributed to the collision of the Palawan microcontinental block with the Philippine Mobile Belt. In the course of rotation, Luzon onramped the South China Sea crust, effectively converting the shear zone that bounded them into a subduction zone. Several collision‐related accretionary complexes (e.g. Romblon, Mindoro) are present in the Palawan–Central Philippine region. The easternmost collision zone boundary is located east of the Romblon group of islands. The Early Miocene southwestward shift of the collision boundary from Romblon to Mindoro started to end by the Pliocene. Continuous interaction between the Palawan microcontinental block and the Philippine Mobile Belt is presently taken up again along the collisional boundary east of the Romblon group of islands. The Mati–Pujada Peninsula area, on the other hand, is underlain by the Upper Cretaceous Pujada Ophiolite. This supra‐subduction zone ophiolite is capped by chert and pelagic limestones which suggests its derivation from a relatively deep marginal basin. The Pujada Ophiolite could be a part of a proto‐Molucca Sea plate. The re‐interpretation of the geology and tectonic settings of the three areas reaffirm the complex geodynamic evolution of the Philippine archipelago and addresses some of its perceived geological enigmas.  相似文献   
994.
文中着重讨论了勒巴泉—公婆泉陆缘弧的基本特征及形成的动力学背景。认为 ,加里东晚期弧后扩张、俯冲形成勒巴泉—公婆泉陆缘弧 ,红柳河弧后盆地的扩张与俯冲是形成勒巴泉—公婆泉陆缘弧的关键 ;陆缘弧区地层主要由公婆泉群 (SG)组成 ,由一系列链状火山岛屿和其间的火山洼地构成 ,属海潮间—潮下高能地带 ,生物发育 ,火山活动异常强烈时期形成窑洞努如和公婆泉两个火山穹隆构造 ;主要岩石类型为爆发相、钙碱性系列的中酸性火山岩。该陆缘弧不仅发育火山作用 ,同时也形成浸染状硫化物型铜成矿系统  相似文献   
995.
The gross seismotectonic features for the Burmese-Andaman arc system which defines the northeast margin of the Indian plate are rather well known but variations in the subduction zone geometry along and across the arc and fault pattern within the subducting Indian plate have not been studied. Present workaims to study these by using seismicity data whose results are presented in the form of: (a) Lithospheric across-the-arc sections at about every 100–120 km (approximately one degree latitude apart) covering the 3500 km longBurmese-Andaman arc system, (b) a structure contour map showing the depth tothe top surface of the seismically active lithosphere and (c) interpretationof focal mechanism solutions for 148 Benioff zone earthquakes. Both penetrationdepth and the dip of the Benioff zone vary considerably along the arc in correspondence to the curvature of the fold-thrust belt which varies from concave to convex in different sectors of the arc. Several extensive `Hinge faults' that abut at high angles to the arc orientation, are inferred from aninterpretation of the structure contour map. Active nature of the hinge faultsis established in several areas by their association with earthquakes andcorroborated through fault plane solutions. At shallow level of the Benioffzone along these faults, focal mechanism solutions display left lateral strikeslip movement while at deeper levels reverse fault solutions are common.  相似文献   
996.
云南景谷岔河、茂密河火山岩及其构造环境   总被引:2,自引:2,他引:2  
晚三叠世-早侏罗世,岔河、茂密河喷发了一套安山岩-英安岩-流纹岩与粗安岩的杂色火山岩系,火山岩属钙碱性与碱性系列。剖面从下至上,具有4个喷发旋回。按剖面厚度计算,火山岩总厚度岔河为921.72m.茂密河为709.69m。其中岔河火山碎屑岩占39.1l%,茂密河占48.6%。主要熔岩普遍为斑状结构.斑晶为斜长石和角闪石,按体积计算,含量最高达55%(安山岩)。具有标准矿物石英分子。稀土总量由64.38突变到277.09,6Eu接近1,(La/Yb)N比值由2.51变化到16.89,分配模式右倾斜。微量元素分配模式呈锯齿状,明显亏损Sr,P,Ti元素,叫(Zr)/叫(Y)和w(Ti)/w(Y)平均值分别大于3.5和小于400,K20平均质量分数为2,99%。TiO2平均值为0.67%。上述特征充分说明岔河、茂密河的火山岩属大陆弧构造环境。结合火山岩共生的沉积岩有复成分砾岩、砂岩、泥岩、灰岩,研究区当时处于从滨海向浅海过渡的喷发环境。  相似文献   
997.
马里亚纳海槽热液活动区玄武岩的岩石地球化学特征   总被引:6,自引:0,他引:6  
对拖网采自马里亚纳海槽热液活动区 (18°N附近 )的 8个玄武质岩石样品进行岩石地球化学初步研究。岩石富集 L IL E和 L REE,稀土分布型式呈右倾图式 ,L a N=10 .6 8~ 2 2 .6 4 ,(L a/Yb) N=1.6 1~ 2 .4 7,并略显 Eu正异常。在相对于原始地幔的标准化微量元素分布图中 ,7个样品具较明显的 Nb亏损和 Zr、Hf富集 ,而 1个样品不具 Nb的亏损 ;HFSE/HFSE、L IL E/HFSE、L IL E/L IL E等微量元素比值大都在 N- MORB和 EMI2个地幔端员组分间变化。这表明岩浆起源于受俯冲组分改造或影响的上地幔 ,且地幔源区存在明显的化学不均一性。与冲绳海槽玄武岩相比 ,马里亚纳海槽玄武岩的 Nb亏损明显减弱 ,暗示俯冲组分对地幔源区的影响程度也随之减弱 ,这反映出处于弧后张裂阶段的冲绳海槽与处于从弧后张裂向海底扩张过渡阶段的马里亚纳海槽 ,在岩浆起源及其动力学背景存在明显差异  相似文献   
998.
The Seram Trough is located in the northern part of the Banda Arc-Australian collision zone in eastern Indonesia and is currently the site of contraction between the Bird's Head of New Guinea and Seram Island. It has been interpreted as a subduction trench, an intra-continental thrust zone and foredeep, and a zone of strike-slip faulting. Recently acquired 2D seismic lines clarify its tectonic evolution and relationship to the Bird's Head. Folding in the Early Pliocene formed an anticlinorium running from Misool to the Onin Peninsula of Irian Jaya and produced a newly recognised angular unconformity. The unconformity truncates sediments as old as Middle Jurassic and is an ancient topographic surface with significant relief. It was later folded and now dips south towards the trough where it is covered by up to 3 km of sediments. Initial tilting of the unconformity surface was accompanied by deposition of a transgressive sequence which can be traced into the trough. This is overlain by two sequences which prograde towards the trough. These sequences show progressive rotation of the unconformity surface, gravitational displacement of sediments into the trough, and thrusting which continues to the present day. Contraction occurred in the trough after the Early Pliocene and is younger than the previously suggested Late Miocene age. Thrust faults in the trough deform sediments deposited above the unconformity and detach at the unconformity surface. On Seram thrust faults repeat Mesozoic–Miocene sequences and probably detach at their contact with metamorphic basement. The detachment surface must cut through the Mesozoic-Miocene sequence between Seram and the trough. This work suggests the Seram Trough is not a subduction trench but a foredeep produced in response to loading by the developing fold and thrust belt of Seram, with an associated peripheral bulge to the north. The Seram Trough is interpreted to be a very young zone of thrusting within the Australian continental margin.  相似文献   
999.
The margin of the Gulf of Cadiz is swept by the deep current formed by the Mediterranean Outflow Water (MOW) flowing from the Mediterranean to the Atlantic. On the northern margin of the Gulf (Algarve Margin, South Portugal), the MOW intensity is low and fine-grained contourite drifts are built up with an alongslope development. From new sedimentological data, this study emphasizes the presence of two types of contourite drifts separated only by a deep submarine canyon incising the slope with a north-south orientation (Portimão Canyon). High-resolution seismic and bathymetry interpretation shows that on the eastern side of the canyon, the MOW forms a thick and large detached drift (Albufeira Drift) prograding toward both north and west, as shown in seismic profiles, with a high sedimentation rate. On this side of the canyon, the MOW intensity is high enough to erode the slope forming a moat channel (Alvarez Cabral). On the western side of Portimão Canyon, the MOW energy is lower, preventing moat channel erosion. Only flat and thin drift develops (Portimão and Lagos Drifts) with slow aggradation and a low sedimentation rate. This difference in drift development is due to the presence of the canyon which generates an important change in hydrodynamic of the MOW, confirmed by temperature-density measurements showing that MOW flows down Portimão Canyon. The canyon is responsible for the deviation of the direction of the MOW as it partly catches the deep-sea current flowing westward (i.e. capture phenomenon). It creates, thus, a decrease of the flow energy, competency and capacity between the east and west sides of the canyon. Through this phenomenon of MOW deep-sea current capture, the canyon constitutes a morphologic feature generating an important change in the contourite deposition pattern.In addition to already known climatic and oceanographic influences, our results show the role of canyons on contourite drift building. This study provides new elements on autocyclic factors influencing the contourite sedimentation, which are important to consider in future sedimentary paleo-reconstruction interpretations.  相似文献   
1000.
A detailed multibeam coverage of the eastern offshore of Lipari Island(Aeolian arc) has permitted its subdivision into two sectors with differentmorphobathymetric features. In the northern one, numerous, large, previouslyundetected rhyolitic lava flows have been identified. In the southern one, aconical pyroclastic and epiclastic edifice built on top of afan-shaped lava field has been discovered. Since some of theseoffshore features have no analogues on land, their recognition has furnishednew information about the volcanic processes that built the eastern portionof Lipari Island. In particular, the finding of a huge volume of offshorerhyolitic lava flows, largely exceeding the amount of this kind of lavas onland, shows that the contribution of rhyolitic products in the building ofthe Lipari apparatus has been up to now underestimated. More generally, thecomparison between the land and the offshore units of Lipari volcanicapparatus indicates that a better investigation of the submarine portions ofvolcanic islands can reveal new, unforeseen aspects and greatly enhance ourknowledge about their evolution.  相似文献   
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