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Magma Mixing and Mingling for Xiangjiananshan Granitic batholith at eastern area of the East Kunlun Orogenic Belt 被引量:5
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作者 CHEN Guochao PEI Xianzhi +4 位作者 LI Ruibao LI Zuochen LIU Chenjun CHEN Youxin PEI Lei 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第S1期63-,共1页
The East Kunlun Orogenic Belt(EKOB)in northeast margin of the Qinghai-Tibetan Plateau is an important part of the Central Orogenic System(COS).During the long-time geological evolution,complicated tectono
关键词 area Magma Mixing and Mingling for Xiangjiananshan Granitic batholith at eastern area of the east kunlun Orogenic Belt
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Magma Mixing and Mingling for Xiangjiananshan Granitic batholith at eastern area of the East Kunlun Orogenic Belt
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作者 Tao Rui 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第S1期119-120,共2页
The Changning Menglian belt is an important area of research on the evolution of the Paleo Tethys ocean structure,the belt can be solved such as the Changning Menglianbeltposition;sequencestratigraphy;sedimentary envi... The Changning Menglian belt is an important area of research on the evolution of the Paleo Tethys ocean structure,the belt can be solved such as the Changning Menglianbeltposition;sequencestratigraphy;sedimentary environment;nature and its tectonic evolution history and tectonic domain and Gut Tis relationship;therefore,the research on Chang Ning Menglian zone have a great significance to solve many problems of the Sanjiang fold belt in Tethys and Himalaya tectonic area.'Hot spring'is located in the west margin of the southern Changning Menglian belt,studying Yunnan Fengqing hot spring group'geological and petrology characteristics roundly and in depth,concluding the metamorphism and deformation characteristics,clarifying the metamorphism effect and its stages,understanding the association its combination with the Changning Menglian belt between,therefore it has the great significance to solve the geological evolution history in the Sanjiang area,especially the paleo Tethyan tectonic belt,as well as Gondwana and Eurasia boundaries and other major problem.Through collect and read the literature data,measurement of field section,geological investigation,research and Study on rock sheet indoor,rock composition test,electron probe testing system,summarize the geological characteristics and petrological characteristics of'hot springs group',and through the discussion of the geochemical characteristics of rocks,explore its rock assemblages,characteristics of original rock and analysis of metamorphism and deformation stages,to provide basic data for regional geological evolution.The study shows that the main lithology is biotite quartz schist,mica schist and epimetamorphic sandstone interspersed with a small amount of phyllonite,granulite,silicalite,carbonaceous slate and phyllitic cataclasite that contains some pressure breccia.The metamorphic mineral paragenetic assemblage of the representative rock is:M1 biotite(Bi)+plagioclase(Pl)+quartz(Q),and M2 muscovite(Mus)+quartz(Q).The protolith is felsic rock and sedimentary rock that belongs to argiloid.On the basis of comparison,the stratigraphic sequence of the protolith is consistent with the type section of Wenquan formation.Along with the subduction(Hercynian)-subduction(Indosinian)-orogenic(Yanshan Himalayan period)process of Changning Menglian belt,hot springs group experienced two stages of metamorphism and three stages of deformation,metamorphic temperature at400-500℃,the pressure is foucs on 0.3-0.62Gpa,and shown the retrograde metamorphism of the low greenschist facies.Geological age of hot springs formation is early Devonian(survey team of Yunnan District three units,1980),sedimentary environment is mainly shallow and semi deep sea,observed Bouma sequence in rock slice,therefore,the depositional environment may be fan or basin of sea,the sedimentary formations are mainly clastic rocksiliceous rock formation,the upper coal—contained formation.With the Changning Meng Lian ocean expansion,ocean island begin to develop,material deposition continuing,appearing volcano material,the protolith may contain volcano matter through studying the thin section.To the Late Permian,Crust of Changning Menglian ocean begin to subduct to the east of the Yangtze block,ocean basin began to close,but it still has formation here at this time,mainly shallow carbonate formation,with proceeding of subduction,in the low temperature groove(7Km deep),due to changes in temperature and pressurer,appearing metamorphism(M1)and deformation(D1)for the first time,the shear effect produced by deformation lead to some cleavage,occurring regional foliation S1,major metamorphic minerals formed in metamorphism is long flake biotite.The main metamorphic mineral assemblages are biotite(Bi)+feldspar(Pl)+quartz(Q).Subsequently,crustal uplift,depositional break,because the Changning Meng Lianyang has closed during the Indosinian period,Baoshan-Zhenkang block in the west and the Yangtze block in the east knocked each other.In the Indosinian,under the action of faults,the hot spring formation clipping and retracing,back to a position about1-2Km depth,the position is still belongs to the low temperature groove,and occurring axial cleavage in the core of the fold,namely S2.That is,the emergence of the second metamorphism(M2)and deformation(D2).The deformation is affected by the strong pressure,so the rock have dewatered,so the second metamorphic deformation process is affected by temperature(T),pressure(Ps)and fluid(C).The main metamorphic minerals in the second generation of metamorphism is Muscovite,while there have some of biotite formed in same period,find that the first phase of biotite parallel growth of rock slice,namely S1 parallel S2,and we can see incomplete metamorphism biotite,so the the Muscovite is formed by the first stage of metamorphism and metamorphic biotite.The main mineral of the second stage metamorphism is Muscovite(Mus)+quartz(Q) Then,the crust continues to rise,the sedimentary break continues.In the Jurassic Cretaceous start orogeny,namely Yanshan period intracontinental orogeny,occurred third deformation(D3),under extrusion shearing,S3 emergencing,after Yanshan intracontinental orogenic period,in Himalayan period there have large-scale nappe structure and differential uplift and faulting.So the third deformation(D3)strengthened,with weak metamorphism,sericite emergencing. 展开更多
关键词 area ROCK Magma Mixing and Mingling for Xiangjiananshan Granitic batholith at eastern area of the east kunlun Orogenic Belt
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Earthquake Surface Rupture Features and Tectonic Significance of the Tazang Fault in the Eastern Part of the East Kunlun Fault Zone
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作者 Zhang Junlong Ren Jinwei +4 位作者 Fu Jundong Hu Chaozhong Xiong Renwei Chen Changyun Yang Panxin 《Earthquake Research in China》 2012年第4期411-431,共21页
The East Kunlun fault zone is located in the northern margin of the Bayan Har block. The study of earthquake rupture behavior in the fault zone is of importance for understanding the future seismic risk in northwest S... The East Kunlun fault zone is located in the northern margin of the Bayan Har block. The study of earthquake rupture behavior in the fault zone is of importance for understanding the future seismic risk in northwest Sichuan. A number of geological field investigations, typical micro topography DGPS measurements and sample dating show that the earthquake activity of the East Kunlun fault zone extends to the north boundary of Zoige basin, a segment known as the Luocha segment of Tazang fault. In the satellite image, the segment is seen clearly as gray and yellow strips. The earthquake deformation zone mainly features fault scarp, valleys on the slope, offset gullies and terraces, linear distribution of plants, waterfall, fault spring, fault sag pond, and landslide, collapse and talus associated with surface rupturing. These phenomena are distributed intermittently along the re-existing fault and form a ~50km-long inverse L-shaped deformation zone. Fault activities caused left-lateral offset of gullies and terraces, with horizontal displacement concentrated at 5.5m^6m, 18m~23m, 68m~75m, and 200m~220m, respectively. The recent earthquake occurred between 340±30~500±30BP. The macro epicenter is located 5km~7km northwest of Benduo village, with magnitude of MW7.3~7.4, maximum coseismic displacement of 6m, horizontal displacement 5.5m~6m and vertical displacement 0.2m~0.5m, being in a proportion of 5∶1~10∶1. These phenomena show that the Tazang fault is the causative fault of this earthquake. The fault is a Holocene active fault and was dominated recently by left-lateral movement with a small amount of thrust component under compressive shear stress. This characteristic is similar to the movement in other segments of the East Kunlun fault zone. The results of this study support the "continental escape" model. 展开更多
关键词 the east kunlun fault zone the Tazang fault Luocha segment Surfacerupture Seismic parameters
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Thrust Propagation in the Aqqikkol Lake Area, the East Kunlun Mountains, Northwestern China 被引量:3
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作者 CUI Junwen, CHEN Wen, LI Pengwu, ZHANG Xiaowei and LI Li Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2003年第4期468-478,共11页
The western segment of the East Kunlun Mountains is one of the poorly studied regions in northwestern China. Through a structural analysis of the typical sections, we have the following views: (1) There is a very well... The western segment of the East Kunlun Mountains is one of the poorly studied regions in northwestern China. Through a structural analysis of the typical sections, we have the following views: (1) There is a very well developed fault system in the western segment of the East Kunlun Mountains and thrust propagation, normal slip and decoupling are the chief deformation events in this area. (2) Although the thrusting started in the Late Carboniferous and Late Triassic-Early Jurassic, strong activity took place in the Miocene-Quaternary when the Kumkol basin was strongly downwarped. (3) The tectonic pattern of coexistence of N-directed thrust propagation and S-directed normal slip in this area is consistent with the general tectonic pattern of the northern Qinghai-Tibet plateau and also very similar to that of the Himalayan region on the southern margin of the Qinghai-Tibet plateau, but their directions between the thrust propagation are opposite and all the strong thrust propagations occurred from the Miocene-Pliocene to Quaternary, a period featuring strong collision between the Indian plate and the Eurasian plate and abrupt uplift of the Qinghai-Tibet plateau. This oppositely directed thrust propagation and normal slip reveal such kinematic characteristics as symmetric propagations of deep-seated materials towards the north and south beneath the Qinghai-Tibet plateau and gravitational sliding of superficial materials towards the interior of the plateau. Therefore, the establishment of the fault system in the study area may provide an approach to the study of deep processes of the northern Qinghai-Tibet plateau and the construction of a unified geodynamic model for the uplift of the Qinghai-Tibet plateau. 展开更多
关键词 western segment of the east kunlun Mountains thrust propagation normal slip plate collision dynamic model
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The Late Pleistocene activity of the eastern part of east Kunlun fault zone and its tectonic significance 被引量:9
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作者 ZHANG JunLong REN JinWei +4 位作者 CHEN ChangYun FU JunDong YANG PanXin XIONG RenWei HU ChaoZhong 《Science China Earth Sciences》 SCIE EI CAS 2014年第3期439-453,共15页
The nearly EW-trending East Kunlun fault zone is the north boundary of the Bayan Har block.The activity characteristics and the position of the eastern end of its eastward extension are of great significance to probin... The nearly EW-trending East Kunlun fault zone is the north boundary of the Bayan Har block.The activity characteristics and the position of the eastern end of its eastward extension are of great significance to probing into the dynamic mechanism of formation of the east edge of the Tibetan Plateau,and also lay the foundation for seismic risk assessment of the fault zone.The following results are obtained by analysis based on satellite image interpretation of landforms,surface rupture survey,terrace scarp deformation survey,and terrace dating data on the eastern part of the East Kunlun fault zone:(1)the Luocha segment is a Holocene active fault,where a reverse L-shape paleoearthquake surface rupture zone of about 50 km long is located;(2)the Luocha segment is characterized by left-lateral slip movement under the compression-shear condition since the later period of the Late Pleistocene,with a rate of 7.68–9.37 mm/a and a vertical slip rate of 0.7–0.9 mm/a,which are basically in accord with the activity rate of segments on its west side.The results indicate that it is a part of eastward extension of the East Kunlun fault zone;(3)the high-speed linear horizontal slip of the nearly EW-trending East Kunlun fault zone is blocked by the South China block at east,and transforms into the vertical movement of the nearly SN-NNE trending Minjiang fault zone and the Longmenshan fault zone,and the uplift of Longmenshan and Minjiang.The area where transform of the two tectonic systems occurred confines the position of the east end;(4)Luocha segment and Maqu segment constitute the"Maqu seismic gap",so,seismic risk at Maqu segment is higher than that at Luocha segment,which should attract more attention. 展开更多
关键词 the east kunlun fault zone eastern end slip rate tectonic transform seismic risk
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Teleseismic shear wave splitting and intracontinental collision deformation of the northern Tibetan Plateau and the eastern Tarim basin 被引量:1
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作者 Lijun CHANG Chunyong WANG 《Science China Earth Sciences》 SCIE EI CAS CSCD 2023年第7期1556-1568,共13页
Shear wave splitting measurement of teleseismic data has been used to determine the fast polarization directions and delay times for 38 temporary stations and 15 permanent stations from a NW linear seismic array acros... Shear wave splitting measurement of teleseismic data has been used to determine the fast polarization directions and delay times for 38 temporary stations and 15 permanent stations from a NW linear seismic array across the eastern Tarim basin(ETB) and the northern Tibetan Plateau(NTP),and 10 permanent stations on both sides of the array.We present an image of upper mantle anisotropy in the ETB and NTP using the 63 new measurements.The results show that the fast directions and delay times have complex spatial distribution characteristics.The delay times within the interior of the Tarim basin are very small,with an average value of 0.6 s,which is not only smaller than that in the Altyn Tagh fault and Tianshan on the southern and northern margins of the basin,but also smaller than that in the NTP,reflecting that the delay time of stable blocks is smaller than that of active blocks.Along the array,from east to west,the fast directions contrarotate from NNW in the southern Songpan-Garze terrane to NW in the northern Songpan-Garze terrane,to near E-W or ENE in the north of the East Kunlun fault and southern margin of the Qaidam basin,then first abruptly rotate to NW in the Qiman Tagh fault on the northwestern margin of the Qaidam basin,second abruptly rotate to ENE in the Altyn Tagh fault and south of the ETB,and third abruptly rotate to NW in the north of the ETB,then finally rotate to WNW in the Tianshan.The comparative analysis between the fast wave directions measured by shear wave splitting and predicted from the surface deformation field shows that,with the exclusion of the five observations with larger misfits within the interior of the ETB(with an average misfit of 27°),the misfits in the NTP and northern and southern margins of the Tarim basin are relatively small(with an average misfit of 9°).In addition,the fast wave directions of the tectonic units such as the Altyn Tagh fault,East Kunlun fault,and Tianshan are parallel to the strikes of faults and mountains in the region,which indicates that the deep and shallow deformations of the NTP and northern and southern margins of the ETB are consistent,where the crust-mantle coupling extent of lithospheric deformation is higher,according with the vertical coherent deformation of the lithosphere.Conversely,the crust-mantle coupling extent within the interior of the Tarim Basin is weak,and it is characterized by weak anisotropy,stable rigidity,and thick lithosphere,which may remain the “fossil” anisotropy of ancient craton. 展开更多
关键词 Northern Tibetan Plateau eastern Tarim basin Altyn Tagh fault east kunlun fault Lithospheric deformation
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东昆仑东段浪木日地区地球化学异常信息提取方法研究及异常查证 被引量:1
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作者 李斌 高强 +2 位作者 魏俊浩 赖联新 李笑龙 《矿产勘查》 2024年第3期403-419,共17页
青海沟里地区位于东昆仑造山带东段,根据水系沉积物地球化学测量已发现了多个矿床(点),具有较好的找矿潜力。本文选取沟里地区巴加别里赤尔幅(浪木日地区)1∶5万水系沉积物地球化学测量数据为研究对象,利用统计学方法和趋势面分析法两... 青海沟里地区位于东昆仑造山带东段,根据水系沉积物地球化学测量已发现了多个矿床(点),具有较好的找矿潜力。本文选取沟里地区巴加别里赤尔幅(浪木日地区)1∶5万水系沉积物地球化学测量数据为研究对象,利用统计学方法和趋势面分析法两种方法进行异常信息提取。结果显示,趋势面分析法相较于传统统计法,圈定的异常面积更大、浓集中心更明确、分带特征更明显,且与已知矿床点的吻合度更高,整体上具有强化低背景异常的优势。同时利用趋势面分析法提取了3个元素组合,并对套合性和相关性突出,且与区内浪木日铜镍硫化物矿床相关的Cu-Zn-Cr-Co-Ni组合异常进行异常剖析。结合区内地质特征和浪木日矿区矿体分布情况,圈定了哲扎空龙洼东、龙里、瑙格木东和卡鲁南等找矿远景区,为区内下一步铜镍找矿工作提供了方向。 展开更多
关键词 水系沉积物 趋势面分析 异常信息提取 成矿预测 浪木日地区 东昆仑东段
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东昆仑香日德地区晚三叠世花岗岩LA-ICP-MS锆石U-Pb定年、岩石成因和构造意义 被引量:61
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作者 罗明非 莫宣学 +3 位作者 喻学惠 李小伟 黄雄飞 于峻川 《岩石学报》 SCIE EI CAS CSCD 北大核心 2014年第11期3229-3241,共13页
东昆仑地区广泛分布了大量花岗岩。已有的研究工作表明,东昆仑地区的花岗岩主要形成于晚二叠世-中三叠世和晚三叠世两个时期。本文提供了香日德地区二长花岗岩和花岗闪长岩的锆石U-Pb定年数据和全岩化学,稀土微量元素及Sr、Nd同位素地... 东昆仑地区广泛分布了大量花岗岩。已有的研究工作表明,东昆仑地区的花岗岩主要形成于晚二叠世-中三叠世和晚三叠世两个时期。本文提供了香日德地区二长花岗岩和花岗闪长岩的锆石U-Pb定年数据和全岩化学,稀土微量元素及Sr、Nd同位素地球化学研究资料,结合前人对该区不同时期花岗岩的研究成果,对香日德晚三叠世花岗岩的成因及其形成的动力学背景进行了讨论。研究表明东昆仑东段香日德地区的二长花岗岩和花岗闪长岩分别形成于223.2±1.7Ma和220.6±1.5Ma,属晚三叠世花岗岩浆作用的产物。根据该花岗岩的主量元素(特别是A/CNK比值),岩石富集大离子亲石元素(LILE:Rb、Th和K)和轻稀土(LREE),明显亏损高场强元素(HFSE:Nb、Ta、Ti和P),以及岩石具有相对高的Isr值(0.70820~0.71148)和相对低的εNd(t)值为-6.4^-3.6和较古老的模式年龄t2DM(1.5~1.7Ga)等地球化学特征,论证了该花岗岩的成因,指出香日德花岗闪长岩-二长花岗岩的起源和成因与碰撞后的背景下岩石圈的拆沉诱发的古老地壳物质的部分熔融作用有关,晚三叠世花岗岩岩浆作用是对自晚海西期以来幔源玄武质岩浆长期的底侵作用及地壳不断加厚的一种响应。它进一步证明在东昆仑地区,阿尼玛卿古特提斯洋的俯冲作用一直持续到早三叠纪,至晚三叠世才全面转入陆内碰撞造山阶段。晚三叠世花岗岩与晚二叠世-中三叠世花岗岩在暗色包体含量、岩浆混合作用的特征等方面的差异,可以用幔源物质贡献量的差异以及花岗质岩浆作用所经历的MASH过程的不同来解释。 展开更多
关键词 花岗岩 MASH过程 拆沉作用 香日德地区 东昆仑东段
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西昆仑造山带东段中新元古代洋内弧火山岩地球化学特征 被引量:20
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作者 郭坤一 张传林 +3 位作者 赵宇 董永观 王爱国 解亚平 《中国地质》 CAS CSCD 2002年第2期161-166,共6页
分布于新疆西昆仑东段北缘(策勒—于田—民丰一线以南)的中新元古代火山岩主要为一套浅变质的(玄武)安山岩,夹有极少量的流纹岩。安山岩的SiO2在52.36%~58.30%之间,平均为54.55%,TiO2均低于0.3%,平均为0.22%。Na2O+K2O为1.70%~3.75%,N... 分布于新疆西昆仑东段北缘(策勒—于田—民丰一线以南)的中新元古代火山岩主要为一套浅变质的(玄武)安山岩,夹有极少量的流纹岩。安山岩的SiO2在52.36%~58.30%之间,平均为54.55%,TiO2均低于0.3%,平均为0.22%。Na2O+K2O为1.70%~3.75%,Na2O均高于K2O,Na2O/K2O在2.44~4.61之间,M/F为0.62~0.78,MgO/(MgO+TFe)在0.36~0.45之间。岩石硅碱成分显示以钙碱性为主。稀土元素研究表明,安山岩的稀土总量低,在15.52×10-6~17.92×10-6之间,接近大洋拉斑玄武岩。安山岩的(La/Yb)N为0.69~1.33,(Ce/Yb)N为0.75~1.17,轻重稀土分异不明显。除1028-I3号样的δEu为0.6之外,其余样品的δEu在0.91~1.13之间,基本没有Eu异常。在稀土元素的球粒陨石配分曲线上,所有安山岩形成一个群体,稀土配分模式接近大洋拉斑玄武岩。岩石的微量元素安山岩的Th/Yb为0.04~0.10,Th/Ta=5.92~11.22,Zr/Hf=20.46~29.40,Th/Y之比为0.04~0.08。微量元素的N—MORB配分模式显示岩石富集Sr、Ba、Rb、K、Th等大离子亲石元素,Cr亏损,与拉斑质的火山弧玄武岩相似。综合分析火山岩的岩石学、岩石地球化学特征,结合区域构造背景,认为该套火山岩产于洋内弧环境。 展开更多
关键词 西昆仑造山带 中新元古代 火山岩 地球化学特征 构造背景 洋内弧环境 微量元素
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东昆仑断裂东段玛沁—玛曲段几何结构特征 被引量:17
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作者 李陈侠 徐锡伟 +2 位作者 闻学泽 郑荣章 陈桂华 《地震地质》 EI CSCD 北大核心 2009年第3期441-458,共18页
文中主要通过ETM,Quickbird,Worldview卫星影像解译,利用断裂带的几何、构造不连续点,对东昆仑断裂带玛沁—玛曲段进行几何分段。自西向东可分为东倾沟段、大武滩段、肯定那段、西科河段、唐地段、玛曲段、墨溪段和罗叉段,前7条断裂羽... 文中主要通过ETM,Quickbird,Worldview卫星影像解译,利用断裂带的几何、构造不连续点,对东昆仑断裂带玛沁—玛曲段进行几何分段。自西向东可分为东倾沟段、大武滩段、肯定那段、西科河段、唐地段、玛曲段、墨溪段和罗叉段,前7条断裂羽列排列,唐地段和玛曲段为右阶排列,其余为左阶排列,各阶区之间范围较小,联系紧密。最大的阶区长10km,宽1.3km。除了阶区,断裂的分段标志还有走向的弯曲与断裂的交会。东倾沟段和罗叉段的分段标志主要为断裂走向的弯曲,最大的走向弯曲为东倾沟段,为34°的右阶挤压弯曲。在莫哈汤南侧东昆仑断裂与阿万仓断裂交会,为西科河段的1个分段标志。该段广泛分布的构造地貌和古地震造成的破裂标志表明该段曾经历过多次活动。断裂带从NW向SE呈帚状散开,结合不同段上的滑动速率,发现东昆仑断裂东段滑动速率呈梯度下降与东昆仑断裂带东段帚状散开的几何特征一一对应。 展开更多
关键词 东昆仑断裂带 几何结构特征 分段标志 阿万仓断裂 玛沁—玛曲
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东昆仑断裂带东部塔藏断裂地震地表破裂特征及其构造意义 被引量:38
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作者 张军龙 任金卫 +4 位作者 付俊东 胡朝忠 熊仁伟 陈长云 杨攀新 《地震》 CSCD 北大核心 2012年第1期1-16,共16页
东昆仑断裂带作为青藏高原中东部的巴颜喀拉地块北缘边界断裂带,研究其强震破裂行为对于认识断裂带活动性及分析川西北地区未来地震危险性具有重要意义。通过沿断裂发育的大量断错地貌勘查、典型微地貌DGPS测量及样品年代测定,认为东昆... 东昆仑断裂带作为青藏高原中东部的巴颜喀拉地块北缘边界断裂带,研究其强震破裂行为对于认识断裂带活动性及分析川西北地区未来地震危险性具有重要意义。通过沿断裂发育的大量断错地貌勘查、典型微地貌DGPS测量及样品年代测定,认为东昆仑断裂带向东的强震活动性延伸至若尔盖盆地北侧,即东昆仑断裂带东部塔藏断裂的罗叉段。此段在卫星影像上呈清晰的灰黑色、灰黄色线性条带,地震形变带主要表现为断层陡坎、坡中谷、冲沟和阶地位错、植物异常呈线性分布、跌水、断层泉、断塞塘以及伴随地表错动而出现的滑坡、垮塌和倒石堆。这些破裂现象沿先存断层断续分布,组成长约50km的"L"形地震形变带。断裂活动造成冲沟和阶地左行运动,位错量主要集中在5.5~6.0m、18~23m、68~75m和200~220m范围。最近地震发生在(340±30)~(500±30)BP间,宏观震中位于本多村西北5~7km,震级为MW7.3左右,同震位移最大值为6m,水平位错量为5.5~6.0m,垂直位错量一般为0.2~0.5m,其比例为51~101。对地震形变带中的各种变形遗迹和地震地表破裂特征的研究表明,塔藏断裂是这次地震的发震构造。确定了塔藏断裂为全新世活动断层,近期断层在压剪切作用控制下以左行运动为主,兼有少量逆冲分量,同东昆仑断裂带其他段的活动性质相似,认为东昆仑断裂带延伸至若尔盖盆地北侧,研究结果支持"大陆逃逸"模型。 展开更多
关键词 东昆仑断裂带 塔藏断裂 罗叉段 地表破裂 地震参数
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东昆仑南缘布青山构造混杂岩带的地质特征及大地构造意义 被引量:50
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作者 刘战庆 裴先治 +8 位作者 李瑞保 李佐臣 陈有炘 高景民 刘成军 王学良 魏方辉 张刚 杨忠智 《地质通报》 CAS CSCD 北大核心 2011年第8期1182-1195,共14页
在1∶50000地质填图的基础上,运用详细的野外剖面测制、岩石组合分析、LA-ICP-MS锆石U-Pb同位素定年等研究手段,将东昆仑南缘布青山构造混杂岩划分为基质和构造混杂岩块。构造混杂岩块包括变质基底岩块、洋壳型岩块和岛弧型岩块。其中,... 在1∶50000地质填图的基础上,运用详细的野外剖面测制、岩石组合分析、LA-ICP-MS锆石U-Pb同位素定年等研究手段,将东昆仑南缘布青山构造混杂岩划分为基质和构造混杂岩块。构造混杂岩块包括变质基底岩块、洋壳型岩块和岛弧型岩块。其中,洋壳型混杂岩块又细分为早古生代蛇绿岩(516.4Ma±6.3Ma)、晚古生代蛇绿岩(332.8Ma±3.1Ma)和海山/洋岛玄武岩;岛弧型混杂岩块细分为加里东期中酸性侵入岩岩块(441.1Ma±6.3Ma)和火山熔岩岩块。建立了东昆仑南缘布青山构造混杂岩带2套典型的古洋盆扩张、俯冲消减的物质组合,分别代表东原特提斯洋和东古特提斯洋的形成与演化,从而为研究东特提斯洋演化的进程提供了新证据。 展开更多
关键词 东昆仑南缘 布青山构造混杂岩带 东特提斯洋 构造演化
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东昆仑东段中更新世以来的成山作用及其动力转换 被引量:15
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作者 王国灿 侯光久 +1 位作者 张克信 朱云海 《地球科学(中国地质大学学报)》 EI CAS CSCD 北大核心 2002年第1期4-12,共9页
对东昆仑造山带东段第四纪构造及与地貌关系的分析表明 ,现代山盆相间的地貌格局成型于中更新世 ,且在中更新世以来发生了多次构造变形体制的转换 .根据布青山北部查干额热格地区第四系剖面的构造、地层时代及地层与构造关系的分析表明 ... 对东昆仑造山带东段第四纪构造及与地貌关系的分析表明 ,现代山盆相间的地貌格局成型于中更新世 ,且在中更新世以来发生了多次构造变形体制的转换 .根据布青山北部查干额热格地区第四系剖面的构造、地层时代及地层与构造关系的分析表明 ,中更新世时期为伸展构造体制 ,昆仑山内部开始发生了差异隆升 ,布青山开始崛起 .中更新世末应力体制发生急剧变化 ,由伸展体制转为收缩事件 ,又急速转为伸展构造体系 ,短暂的收缩事件造成了中更新世冲洪积层的褶皱 ,随后的伸展则导致了影响深刻的向北依次断落的阶地状正断层系统 .晚更新世应力体系再度发生重大转换 ,伸展正断层体系被左旋走滑运动体系所代替 ,并一直延续至今 .中更新世以来多次隆升构造变形体制的转换说明东昆仑地区的成山过程受控于多种动力背景 ,而非单一的挤压抬升 . 展开更多
关键词 第四纪 隆升构造 成山作用 更新世 东昆仑造山带
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运用古地震数据评价东昆仑断裂带东段未来百年的强震危险性 被引量:15
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作者 李正芳 周本刚 冉洪流 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2012年第9期3051-3065,共15页
通过收集、整理和分析青藏高原东北部22条断裂带上古地震定量数据,拟定了该区的地震复发概率密度函数.根据此函数对区内东昆仑断裂带东段不同段落上未来100年内强震原地复发的条件概率进行了初步研究.结果表明,该断裂带上自西向东的3个... 通过收集、整理和分析青藏高原东北部22条断裂带上古地震定量数据,拟定了该区的地震复发概率密度函数.根据此函数对区内东昆仑断裂带东段不同段落上未来100年内强震原地复发的条件概率进行了初步研究.结果表明,该断裂带上自西向东的3个破裂段中,玛沁段和塔藏段未来20、50、100年的复发概率值介于0.76%~7.36%之间,玛曲段未来20、50年的复发概率值介于2.0%~5.26%,属于低概率事件;玛曲段未来100年的复发概率值为10.82%,属于中概率事件;整个段未来100年内至少发生一次7级以上强震的联合概率可达21.87%,属于中概率事件.考虑到概率模型的不确定性,进一步对各段进行了危险性的定性分类,综合评价认为玛沁段在未来百年内发生大震的危险性较低,玛曲段和塔藏段未来百年发生大震的危险性较高.最后将本文拟合的概率密度函数与传统通用函数计算的条件概率值进行比较,发现通用的复发概率函数随着自变量t/R的增大,因变量P的反映不如本文拟合函数的敏感. 展开更多
关键词 东昆仑断裂带东段 地震复发概率密度函数 强震危险性 复发概率
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东昆仑东段深大断裂的新认识 被引量:19
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作者 孙王勇 孟军海 +3 位作者 王成栋 范长安 王生林 王昌勇 《物探与化探》 CAS CSCD 2007年第5期408-413,439,共7页
青海东昆仑东段在地质上已划定有东昆中、东昆南、东昆北、布青山南缘、温泉—哇洪山等多条深大断裂构造。以东昆仑东段开展的10个图幅1∶20万区域重力调查成果——布格重力异常为基础,依据窗口平均法、水平导数等数据处理方法提取的区... 青海东昆仑东段在地质上已划定有东昆中、东昆南、东昆北、布青山南缘、温泉—哇洪山等多条深大断裂构造。以东昆仑东段开展的10个图幅1∶20万区域重力调查成果——布格重力异常为基础,依据窗口平均法、水平导数等数据处理方法提取的区域场及剩余场等丰富的重力异常信息,结合航磁异常等资料,对东昆中、东昆北等断裂构造的展布位置提出了新的看法,并根据重力资料新推断断裂构造12条,提出尖山—哈莉哈德山断裂为2个一级构造单元的分界,同时通过拟合布格重力异常长剖面的定量计算方法,获取了部分深大断裂构造在东昆仑东段的产状参数。 展开更多
关键词 东昆仑东段 深大断裂 重力异常 推断解释 定量计算
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东昆仑活动断裂带西大滩段断层气(Rn,CO_2)的释放特征 被引量:9
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作者 李陈侠 徐锡伟 +7 位作者 F Perrier P Richon 陈桂华 Y Klinger J-M Nocquet C Romieu 张晓清 常振广 《地震地质》 EI CSCD 北大核心 2007年第4期905-909,共5页
通过在东昆仑活动断裂带西大滩段进行断层气测试,首次获取了该断裂带中Rn和CO2的释放量。在2004年开挖的2~3m深的探槽内,氡浓度可达20732Bq.m-3,氡发射率可达433mBq.m-2.s-1,远高于在地表的氡浓度505~2380Bq.m-3与氡发射率7~28.19mBq... 通过在东昆仑活动断裂带西大滩段进行断层气测试,首次获取了该断裂带中Rn和CO2的释放量。在2004年开挖的2~3m深的探槽内,氡浓度可达20732Bq.m-3,氡发射率可达433mBq.m-2.s-1,远高于在地表的氡浓度505~2380Bq.m-3与氡发射率7~28.19mBq.m-2.s-1(地表氡发射率均值为14.7mBq.m-2.s-1,与世界平均值相当)。从而我们推断该断裂具有从上部第四系覆盖物到深部花岗岩之间的良好连通性。在地表CO2的析出率平均值为18.9g.m-2.d-1,与通常的背景值相当,在探槽中和距离断层1km的地方没有明显的空间变化,但是在断层北侧3km处的一个近乎直立的千枚岩小山上,CO2的析出率却很高,为421g.m-2.d-1,同时该处氡的发射率也高,达503mBq.m-2.s-1,因此,有必要在该断裂附近进行长期监测。 展开更多
关键词 东昆仑活动断裂 西大滩段 断层气 氡气 CO2
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东昆仑造山带东段哈图沟–清水泉–沟里韧性剪切带塑性变形及动力学条件研究 被引量:16
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作者 李小兵 裴先治 +5 位作者 陈有炘 刘成军 李佐臣 李瑞保 陈国超 魏博 《大地构造与成矿学》 EI CAS CSCD 北大核心 2015年第2期208-230,共23页
东昆仑造山带东段哈图沟–清水泉–沟里韧性剪切带记录了多个旋回的造山作用,本文通过对韧性剪切带中石英 c轴组构和显微构造特征测试分析,探讨东昆仑造山带东段陆块间俯冲拼合及地壳伸展减薄的形成机制。结果显示,韧性剪切带变形温度介... 东昆仑造山带东段哈图沟–清水泉–沟里韧性剪切带记录了多个旋回的造山作用,本文通过对韧性剪切带中石英 c轴组构和显微构造特征测试分析,探讨东昆仑造山带东段陆块间俯冲拼合及地壳伸展减薄的形成机制。结果显示,韧性剪切带变形温度介于380~650℃之间,形成环境为中–高绿片岩相到低角闪岩相,剪切带内差异应力值介于173~509 MPa 之间,应变速率介于6.93×10–14~1.43×10–8 s–1之间,主体为10–11~10–10 s–1,显示韧性剪切带变形是快速俯冲作用下的产物,越靠近东昆仑造山带东段东昆中断裂带其变形温度、差异应力值及相应的应变速率值越大,表明东昆仑造山带东段韧性剪切变形中心为东昆中断裂带。利用不同方法所计算出的韧性剪切带运动学涡度值,显示韧性剪切带早期瞬时运动学涡度(0.56~1)对应于东昆仑造山带东段东昆南与东昆仑造山带东段东昆北陆块间俯冲的初始阶段,中后期运动学涡度(0.25~0.91)应当对应于东昆南与东昆北陆块间的俯冲碰撞阶段,最晚期的C′瞬时运动学涡度(0.19~0.51)则对应于后造山的伸展阶段。通过石英c轴组构结合其宏微观构造特征,认为东昆中构造带至少经历了3个期次的构造运动,分别为加里东晚期的逆冲兼左行走滑剪切作用、晚海西–印支期的逆冲兼右行走滑剪切作用和燕山早期及之后的脆韧性–脆性的左行走滑剪切作用。 展开更多
关键词 东昆仑造山带东段 塑性变形条件 EBSD 费氏台 石英C轴组构 运动学涡度
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东昆仑断裂带东端和2017年九寨沟7.0级地震区深部电性结构探测 被引量:10
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作者 孙翔宇 詹艳 +5 位作者 赵凌强 陈小斌 李陈侠 孙建宝 韩静 崔腾发 《地震地质》 EI CSCD 北大核心 2020年第1期182-197,共16页
东昆仑断裂带是青藏高原北部一条近EW走向的巨型断裂,其东南尾端发生分叉形成了复杂的马尾状断裂系统,2017年在该区域发生了九寨沟M_S7.0地震。文中对跨过东昆仑断裂带东端和九寨沟地震区的3条剖面上的大地电磁探测数据进行处理分析,采... 东昆仑断裂带是青藏高原北部一条近EW走向的巨型断裂,其东南尾端发生分叉形成了复杂的马尾状断裂系统,2017年在该区域发生了九寨沟M_S7.0地震。文中对跨过东昆仑断裂带东端和九寨沟地震区的3条剖面上的大地电磁探测数据进行处理分析,采用三维电磁成像反演技术获取了三维深部电性结构图像。所得结果表明,东昆仑断裂带东端及周边区域内的东昆仑断裂、白龙江断裂和光盖山-迭山断裂表现出向SW倾斜的电性差异带,这些断裂向下延伸并合并于中下地壳的低阻层中,共同组成了由南向北扩展的花状构造。在马尾状构造中,隐伏的虎牙断裂带(北段)在深部表现为明显的低阻边界带;塔藏断裂的规模明显小于虎牙断裂(北段),并与虎牙断裂(北段)组成单侧花状结构;白龙江断裂和光盖山-迭山断裂依然表现为由南向北扩展的花状构造,2组花状结构在深部衔接并统一归并于壳内的低阻层中。2017年九寨沟7.0级地震的震源区位于高、低阻交界区域,处于松潘-甘孜地块壳内低阻层向NE涌动的端点附近,根据震源区的电性结构和流变结构推测震源深度≤11km。虎牙断裂(北段)的延伸深度和规模大于东侧的塔藏断裂,是2017年九寨沟地震的发震断层。松潘-甘孜地块北部中下地壳发育南西深、北东浅的低阻层,表明青藏高原向NE推挤的运动方式是2017年九寨沟地震的动力来源。 展开更多
关键词 孕震环境 2017年九寨沟M_S7.0地震 大地电磁三维成像 昆仑-秦岭断裂系
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东昆仑东段东昆中构造带韧性剪切作用及其地质意义 被引量:15
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作者 李小兵 裴先治 +5 位作者 刘成军 陈有炘 李瑞保 李佐臣 陈国超 魏刚锋 《中国地质》 CAS CSCD 北大核心 2014年第2期419-436,共18页
东昆仑东段东昆中构造带经历了多期(次)构造事件,现今保留了复杂多样的构造样式.哈图沟、清水泉-塔妥和沟里等地区构造变形十分强烈,且发育有呈NWW-SEE展布的韧性剪切带.通过野外调研及显微构造研究,对东昆中构造带几何学、运动学及... 东昆仑东段东昆中构造带经历了多期(次)构造事件,现今保留了复杂多样的构造样式.哈图沟、清水泉-塔妥和沟里等地区构造变形十分强烈,且发育有呈NWW-SEE展布的韧性剪切带.通过野外调研及显微构造研究,对东昆中构造带几何学、运动学及动力学等进行了分析,并通过费氏台和EBSD技术对其进行石英C轴组构分析后认为该剪切带为一压-扭性构造界面,且早期为左旋逆冲,晚期为右旋走滑,变形温度为400~550℃.对剪切带内的石英亚颗粒及动态重结晶粒度测量计算出研究区内韧性剪切带古应力值约为153.791 MPa.哈图沟牦牛山组变形砾岩(4个测点)有限应变测量结果显示,越靠近东昆中断裂带砾石Flinn指数、应变程度、罗德系数(绝对值)越大,且Flinn指数均大于1,属拉伸变形.结合区域地质资料,认为东昆仑东段东昆中韧性剪切带形成于晚海西-印支期. 展开更多
关键词 韧性剪切带 石英C轴岩组 有限应变测量 Flinn指数 东昆中构造带
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ArcGIS在东昆仑西段铁矿资源综合信息矿产预测中的应用——以沉积变质型铁矿为例 被引量:14
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作者 刘艳宾 弓小平 +2 位作者 陈斌 王哲 吴艳爽 《地质学报》 EI CAS CSCD 北大核心 2012年第6期1005-1019,共15页
结合地质、物探、化探、遥感等多元找矿信息,通过对多元信息的发现、提取、转换和关联,并利用信息综合技术建立区域综合信息矿产预测模型,进行矿产资源定量评价,是目前矿产资源勘查领域信息找矿的重要途径之一。本文从研究区的地质背景... 结合地质、物探、化探、遥感等多元找矿信息,通过对多元信息的发现、提取、转换和关联,并利用信息综合技术建立区域综合信息矿产预测模型,进行矿产资源定量评价,是目前矿产资源勘查领域信息找矿的重要途径之一。本文从研究区的地质背景和已知的7个沉积变质型铁矿(点)出发,结合野外验证分析,建立成矿模型与有利区提取模型,基于ArcGIS平台,建立研究区的空间数据库,通过对多元资料的综合分析,并对各控矿因素进行综合评定,提取3个主要方面的预测因素:沉积地层;有利地球化学异常(Fe元素);有利地球物理异常(原平面)。根据这3个证据图层与已知铁矿(化)点的叠加合成空间相关性分析,运用证据权模型和加权logistic回归模型进行成矿有利度评价,结合遥感蚀变信息缩小找矿范围,圈定3个沉积变质型铁矿预测区。研究结果显示东昆仑西段地区具有较好的找矿前景。 展开更多
关键词 沉积变质型铁矿 ARCGIS 证据权模型 加权logistic回归模型 东昆仑西段
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