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Geological Features of the Eastern Sector of the Bangong Co-Nujiang River Suture Zone:Tethyan Evolution 被引量:10
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作者 WANG Jianping 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2000年第2期229-235,共7页
According to an analysis of the geological features in the eastern sector of the Bangong Co-Nujiang River suture zone, the Tethyan evolution can be divided into three stages. (1) The Embryo-Tethyan stage (Pz1): An imm... According to an analysis of the geological features in the eastern sector of the Bangong Co-Nujiang River suture zone, the Tethyan evolution can be divided into three stages. (1) The Embryo-Tethyan stage (Pz1): An immature volcanic arc developed in Taniantaweng (Tanen Taunggyi) Range, indicating the existence of an Embryo-Tethyan ocean. (2) The Palaeo-Tethyan stage (C-T2: During the Carboniferous the northern side of the Taniantaweng Range was the main domain of the Palaeo-Tethyan ocean, in which developed flysch sediments intercalated with bimodal volcanic rocks and oceanic tholeiite, and Pemian-Early Triassic are granites were superimposed on the Taniantaweng magmatic are; on the southern side the Dêngqên-Nujiang zone started secondary extension during the Carboniferous, in which the Nujiang ophiolite developed, and the Palaeo-Tethyan ocean closed before the Middle Triassic. (3) The Neo-Tethyan stage (T3-E): During the Late Triassic the Dêngqên zone developed into a relatively matural ocean basin, in which the Dêngqên ophiolite was formed. By the end of the Triassic intraocean subduction occurred, and the ocean domain was reduced gradually, and collided and closed by the end of the Early Jurassic, forming the Yazong mélange; then the Tethyan ocean was completely closed. 展开更多
关键词 bangong Co-Nujiang River suture zone Tethyan evolution Embryo-Tethys Palaeo-Tethys NEO-TETHYS
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The Characteristics and Significance of Peng Co Peridotites in the Middle Segment of Bangong Co-Nujiang Suture in Tibet 被引量:1
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作者 LU Yuxiao YANG Jingsui +4 位作者 DONG Yufei XIONG Fahui CHEN Xiaojian LI Guanlong BO Rongzhong 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2020年第S01期37-38,共2页
The Peng Co ophiolite is located to the west of Peng lake in the area of lakes in north Tibet, which belongs to the Baila-Yilashan sub-belt of the the middle Bangong Co-Nujiang ophiolitic belt. The Peng Co ophiolite i... The Peng Co ophiolite is located to the west of Peng lake in the area of lakes in north Tibet, which belongs to the Baila-Yilashan sub-belt of the the middle Bangong Co-Nujiang ophiolitic belt. The Peng Co ophiolite is mainly composed of mantle peridotites, cumulates, diabase dikes. About 70 percent peridotites are harzburgites and 30 percent are lherzolites. Mineral chemistry of the Peng Co lherzolitesare characterized by low Fo contents(88.85–90.33) of olivine and high Al2O3 content(4.26%–7.25%) in pyroxenes. Compared to the primitive mantle, the Peng Co peridotites have relatively higher MgO contents, lower CaO, Al2O3 and TiO2 contents. The total rare-earth element(REE) contents of the lherzolites are 1.11–1.53 ppm, which are lower than those of the primitive mantle. The chondritenormalized REE patterns of the Peng Co peridotites display slight loss in LREE. In the primitive mantle-normalized spider diagram, the Peng Co peridotites exhibit negative Rb and Zr anomalies and intensively positive U, Ta, Sr anomalies. The PGE contents of Peng Co lherzolites are between 22.9–27 ppb. The chondrite-normalized PGE patterns of the Peng Co lherzolites are consistent with that of the primitive mantle. Mineral and whole-rock geochemistry characteristics of the Peng Co lherzolites show an affinity to abyssal peridotites, indicating that it may have formed in the mid-ocean ridge setting. Through quantitative modeling, we conclude that the Peng Co lherzolites formed after 5%–10% degree of partial melting of the spinelphase lherzolite mantle source. The sharp increase of Cr#(56.74–60.84)in Spinel of harzburgites and relatively high Pd/Ir and Rh/Ir ratios suggest that they have experienced melt-rock reaction. The crystallization sequence of Peng Co cumulate is olivine-clinopyroxene-plagioclase. The Mg# value of clinopyroxene in cumulate peridotite ranges from 86.92 to 89.93, and the mean value of Fo is 84.45, which is obviously higher than that of MOR-type ophiolite cumulates. The mineral composition, sequence of magmatic crystallization and mineral components of Peng Co cumulate are similar to those of the cumulate formed by the SSZ-type ophiolite in the subduction zone. Therefore, we can draw a preliminary conclusion that Peng Co lherzolites were formed in an environment of mid oceanic ridge and were remnants of the spinel lherzolite zone which experienced a partial melting of no more than 10%. In the later period, due to the intra-oceanic subduction, it experienced the rock-meltinteraction, and thus formed the SSZ-type cumulate and harzburgite of high Cr value. 展开更多
关键词 bangong Co-Nujiang suture zone MOR-type peridotites Peng Co ophiolite partial melting melt-rock reaction
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Variation of Moho Depth across Bangong-Nujiang Suture in Central Tibet—Results from Deep Seismic Reflection Data 被引量:5
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作者 Zhanwu Lu Rui Gao +2 位作者 Hongqiang Li Wenhui Li Xiaosong Xiong 《International Journal of Geosciences》 2015年第8期821-830,共10页
There is a long-term dispute at Moho depth across the Bangong-Nujiang suture (BNS). Due to the complicated and changeable seismic geological condition, it is not easy to acquire images of the reflective Moho in centra... There is a long-term dispute at Moho depth across the Bangong-Nujiang suture (BNS). Due to the complicated and changeable seismic geological condition, it is not easy to acquire images of the reflective Moho in central Tibet. In the support of the SinoProbe project, a series of deep seismic reflection profiles were conducted to image Moho structure across the BNS and the Qiangtang terrane. These profiles extend from the northern Lhasa terrane to the Qiangtang terrane crossing the BNS. Both shot gathers and migration data show clear Moho images beneath the BNS. The Moho depth varies from 75.1 km (~24 s TWT) beneath the northmost Lhasa terrane to 68.9 km (~22 s TWT) beneath southmost Qiangtang terrane, and rises smoothly to 62.6 km (~20 s TWT ) at ~28 km north of the BNS beneath the Qiangtang terrane. We speculate that the Moho appears a 6.2 km sharp offset across the BNS and becomes ~12.5 km shallower from the northmost Lhasa terrane to the south Qiangtang terrane at ~28 km north of the BNS. The viewpoint of Moho depth across the BNS based on deep seismic reflection data is inconsistent with the previous 20 km offset. 展开更多
关键词 MOHO Depth DEEP SEISMIC REFLECTION bangong-Nujiang suture TIBET
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The Cretaceous of the Eastern Bangong-Nujiang Suture Zone (Tibet):Tectono-Sedimentation
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作者 Pujun Wang Frank Mattern +3 位作者 Werner Schneider Wanzhu Liu Shikai Li Cai Li 《Global Geology》 2003年第1期34-40,共7页
The ophiolite-bearing Bangong-Nujiang zone (BNZ) traversing central Tibet from east to west separates the Qiangtang block in the north from the Lhasa block in the south. The Cretaceous of the area includes Chuanba For... The ophiolite-bearing Bangong-Nujiang zone (BNZ) traversing central Tibet from east to west separates the Qiangtang block in the north from the Lhasa block in the south. The Cretaceous of the area includes Chuanba Formation (K 1c ), Duoba Formation (K 1d ), Langshan Formation (K 1l ) and Jiangba Formation (K 2j ). The K 1c is composed of black shale, sandy pelite, siltstone, sandstone, coal beds and volcanic rocks, of shallow marine facies. The K 1 d consists of terrestrial siliciclastics intercalated with some calcareous sandstone beds bearing Orbitolina sp. indicating marine influence. The K 1j is carbonate platform deposits of shallow marine and lagoon. The K 2j is characterized by terrestrial thick massive red conglomerate. An active margin related to B-subduction zone is considered to be the geological setting of the Cretaceous sedimentation. 展开更多
关键词 bangong-Nujiang suture zone Cretaceous sedimentology tectonics TIBET
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深反射地震成像揭示的班公湖-怒江缝合带中段Moho断阶及其大地构造意义
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作者 程建 刘志伟 +5 位作者 赵文津 史大年 田涛 邓世广 张克强 张若渔 《地质学报》 EI CAS CSCD 北大核心 2024年第1期1-15,共15页
揭示班公湖-怒江(班怒)缝合带Moho(莫霍面)结构对于认识中特提斯洋壳俯冲和南羌塘坳陷成因具有重要地球动力学意义。基于横跨班怒缝合带的深反射地震数据(88°30′E),本文采用了中长波长静校正、噪声压制、优化叠加和叠前深度偏移(P... 揭示班公湖-怒江(班怒)缝合带Moho(莫霍面)结构对于认识中特提斯洋壳俯冲和南羌塘坳陷成因具有重要地球动力学意义。基于横跨班怒缝合带的深反射地震数据(88°30′E),本文采用了中长波长静校正、噪声压制、优化叠加和叠前深度偏移(PSDM)等地震处理技术,获得了深度域地震反射偏移剖面、层速度场和高分辨率Moho结构。由深度域剖面显示,班怒缝合带Moho位于地表以下65~80 km,呈不连续北向抬升趋势,指示在拉萨地块与南羌塘地块之间存在岩石圈上地幔断阶,最大阶步可达15 km。综合分析缝合带两侧的Moho形态认为,这些断阶受南侧拉萨地体的岩石圈上地幔以19.5°北倾俯冲与北侧南羌塘地块的上地壳抬升驱动,可能与深部存在局部熔融相关。班怒缝合带下的Moho结构表明,随着晚侏罗世—早白垩世中特提斯洋闭合,南羌塘地体由边缘海沉积向前陆盆地转换,形成南羌塘坳陷。 展开更多
关键词 深反射地震成像 叠前深度偏移 班公湖-怒江缝合带 Moho界面 南羌塘坳陷
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羌塘地块中西部布木错走滑断裂系的第四纪晚期地表变形特征与构造意义 被引量:2
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作者 韩帅 吴中海 +4 位作者 王世锋 高扬 张圣听 陆诗铭 张铭杲 《地质力学学报》 CSCD 北大核心 2024年第2期298-313,共16页
班公-怒江缝合带(班怒带)是青藏高原内部羌塘地块与拉萨地块之间的重要边界,研究该边界带上共轭走滑断裂第四纪晚期的几何结构与变形特性对于理解高原内部在印度-欧亚板块碰撞作用下形成的空间差异响应和构造模型具有重要意义。位于班... 班公-怒江缝合带(班怒带)是青藏高原内部羌塘地块与拉萨地块之间的重要边界,研究该边界带上共轭走滑断裂第四纪晚期的几何结构与变形特性对于理解高原内部在印度-欧亚板块碰撞作用下形成的空间差异响应和构造模型具有重要意义。位于班怒带西段的布木错断裂系包括北东向布木错断裂和北西向纳屋错断裂,通过遥感解译和野外地质调查,明确了这两条断裂在第四纪晚期的构造特征和最新的地表变形特征。结果显示,两条断裂自第四纪晚期以来的活动特征明显,并且近期都经历过一次大地震,产生了地表破裂。据此推测班怒带西段北西、北东两组断裂的最新活动强度接近,羌塘地块南部边界现今变形可能受控于两组断裂的共同影响,并已延伸至块体内部。以上发现进一步证明,青藏高原内部物质受中—下地壳流的驱动作用,通过走滑断层和正断层持续向北扩展。 展开更多
关键词 班公-怒江缝合带 布木错断裂 纳屋错断裂 共轭走滑 地表破裂 青藏高原
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西藏东巧—北拉地区班公湖—怒江洋俯冲闭合及对南羌塘盆地演化的制约 被引量:1
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作者 张建勇 许强 +4 位作者 曹雨 熊绍云 刘思琪 谈轩宇 谭秀成 《海相油气地质》 CSCD 北大核心 2024年第1期1-16,共16页
应用地层对比、砂岩岩相学和碎屑锆石U-Pb年代学的方法,重建东巧—北拉地区物源转换和班公湖—怒江洋多期次俯冲及微陆块的拼合过程。研究表明:东卡错微陆块南侧的中下侏罗统希湖群下段表现为上三叠统确哈拉群的再旋回沉积,而北侧上段... 应用地层对比、砂岩岩相学和碎屑锆石U-Pb年代学的方法,重建东巧—北拉地区物源转换和班公湖—怒江洋多期次俯冲及微陆块的拼合过程。研究表明:东卡错微陆块南侧的中下侏罗统希湖群下段表现为上三叠统确哈拉群的再旋回沉积,而北侧上段则开始出现来自羌塘地区的物质。这标志着北侧早侏罗世俯冲的东巧分支洋盆消亡,东卡错微陆块在中侏罗世与羌塘地块拼合开始形成初始周缘前陆盆地。接奴群的物源完全来自南羌塘地区,表明周缘前陆盆地在微陆块南侧北拉洋俯冲挤压下持续发育。晚侏罗世—早白垩世(147~141 Ma)拉萨地块和羌塘地块东西向全面碰撞,至早白垩世晚期(约120 Ma)南侧的分支洋盆北拉洋消亡代表碰撞结束。南羌塘地区受班公湖—怒江洋俯冲作用控制在早侏罗世发育由弧前—岩浆弧—弧后盆地组成的“一隆两坳”古地貌,并沉积了曲色组页岩和布曲组石灰岩。微陆块碰撞导致南羌塘盆地的隆起和海平面的下降,形成夏里组含膏质泥岩的潮坪相沉积。随着拉萨地块和羌塘地块的全面碰撞,南羌塘盆地从弧相关盆地卷入前陆盆地褶皱冲断带中,发生差异埋藏和隆升剥蚀。晚侏罗世—早白垩世,南羌塘盆地曲色组烃源岩和布曲组石灰岩在构造挤压作用下发生快速埋藏,进入生油和白云石化阶段,成为南羌塘盆地最重要的成藏期。 展开更多
关键词 班公湖—怒江缝合带 锆石U-PB定年 俯冲闭合过程 物源转换 南羌塘盆地
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藏北盐湖地区晚白垩世辉长岩:对班公湖‒怒江缝合带碰撞后拆沉作用的指示
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作者 周高宇 祁诚雪 +3 位作者 万牧钦 吴浩 黄煜奇 李宾铭 《大地构造与成矿学》 EI CAS CSCD 北大核心 2024年第4期866-878,共13页
青藏高原中部班公湖-怒江缝合带的两侧在晚白垩世经历了大规模的岩浆活动,但其深部动力学机制至今仍存有较大争议。本文对藏北盐湖地区新识别出的辉长岩进行了系统的锆石U-Pb定年、原位Hf同位素以及全岩主微量元素分析,旨在为该缝合带... 青藏高原中部班公湖-怒江缝合带的两侧在晚白垩世经历了大规模的岩浆活动,但其深部动力学机制至今仍存有较大争议。本文对藏北盐湖地区新识别出的辉长岩进行了系统的锆石U-Pb定年、原位Hf同位素以及全岩主微量元素分析,旨在为该缝合带的构造演化过程提供新的约束。分析结果显示,辉长岩形成于~100 Ma,其地球化学特征与洋岛玄武岩(OIB)相似,具有明显的Nb-Ta元素亏损,εHf(t)值介于6.60~8.33之间。这些特征表明,辉长岩具有板内基性岩的地球化学属性,是软流圈地幔部分熔融熔体混染地壳物质的产物。结合区域上近同期基性岩脉和大规模高Mg埃达克质岩浆活动,本文认为盐湖辉长岩的形成于碰撞后伸展环境,是拉萨-羌塘地块碰撞后增厚榴辉岩相下地壳拆沉过程中,深部软流圈地幔上涌减压熔融的产物。盐湖辉长岩的发现为青藏高原中部晚白垩世碰撞后增厚下地壳拆沉模型提供了岩石学上的证据。 展开更多
关键词 班公湖-怒江缝合带 晚白垩世 辉长岩 岩石成因 拆沉作用
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Petrology, geochemistry and geochronology of the Zhongcang ophiolite, northern Tibet: implications for the evolution of the Bangong-Nujiang Ocean 被引量:10
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作者 Yue Tang Qingguo Zhai +2 位作者 Peiyuan Hu Xuchang Xiao Haitao Wang 《Geoscience Frontiers》 SCIE CAS CSCD 2018年第5期1369-1381,共13页
Ophiolites are widespread along the Bangong-Nujiang suture zone, northern Tibet. However, it is still debated on the formation ages and tectonic evolution process of these ophiolites. The Zhongcang ophiolite is a typi... Ophiolites are widespread along the Bangong-Nujiang suture zone, northern Tibet. However, it is still debated on the formation ages and tectonic evolution process of these ophiolites. The Zhongcang ophiolite is a typical ophiolite in the western part of the Bangong-Nujiang suture zone. It is composed of serpentinized peridotite, cumulate and isotropic gabbros, massive and pillow basalts, basaltic volcanic breccia, and minor red chert. Zircon SHRIMP Ue Pb dating for the isotropic gabbro yielded weighted mean age of 163.4 ± 1.8 Ma. Positive zircon ε Hf(t) values(+15.0 to +20.2) and mantle-like σ^(18)O values(5.29 ±0.21)% indicate that the isotropic gabbros were derived from a long-term depleted mantle source. The isotropic gabbros have normal mid-ocean ridge basalt(N-MORB) like immobile element patterns with high Mg O, low TiO_2 and moderate rare earth element(REE) abundances, and negative Nb,Ti, Zr and Hf anomalies. Basalts show typical oceanic island basalt(OIB) geochemical features, and they are similar to those of OIB-type rocks of the Early Cretaceous Zhongcang oceanic plateau within the Bangong-Nujiang Ocean. Together with these data, we suggest that the Zhongcang ophiolite was probably formed by the subduction of the Bangong-Nujiang Ocean during the Middle Jurassic. The subduction of the Bangong-Nujiang Tethyan Ocean could begin in the Earlye Middle Jurassic and continue to the Early Cretaceous, and finally continental collision between the Lhasa and Qiangtang terranes at the west Bangong-Nujiang suture zone probably has taken place later than the Early Cretaceous(ca. 110 Ma). 展开更多
关键词 Tibetan plateau bangong-Nujiang suture zone OPHIOLITE GEOCHRONOLOGY GEOCHEMISTRY SUBDUCTION
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西藏那曲地区早白垩世A型花岗岩成因及其构造意义
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作者 李金勇 翟庆国 +4 位作者 唐跃 胡培远 王伟 刘一鸣 杨宁 《地质学报》 EI CAS CSCD 北大核心 2023年第5期1418-1433,共16页
班公湖-怒江缝合带及其两侧广泛分布早白垩世岩浆岩,它们是班公湖-怒江洋俯冲消减及拉萨地块与南羌塘地块碰撞过程的直接响应,为研究特提斯大洋演化、青藏高原早期陆块聚合提供了重要素材。本文报道了班公湖-怒江缝合带中段那曲地区黑... 班公湖-怒江缝合带及其两侧广泛分布早白垩世岩浆岩,它们是班公湖-怒江洋俯冲消减及拉萨地块与南羌塘地块碰撞过程的直接响应,为研究特提斯大洋演化、青藏高原早期陆块聚合提供了重要素材。本文报道了班公湖-怒江缝合带中段那曲地区黑云母二长花岗岩的锆石U-Pb定年、岩石地球化学和锆石Hf同位素分析结果。锆石LA-ICP-MS U-Pb定年结果表明,黑云母二长花岗岩形成于114~113 Ma(早白垩世晚期)。地球化学分析表明,岩石显示出高钾钙碱性—钾玄岩系列特征,同时具有高的Ga/Al×10000比值(介于2.02~3.15之间,平均为2.61)和Zr+Nb+Ce+Y含量(平均为524.87×10^(-6))。此外,锆饱和温度和锆石Ti温度计共同指示岩浆形成于高温的环境(>800℃),这些特征与典型的A型花岗岩相一致。黑云母二长花岗岩中锆石具有低的ε_(Hf)(t)值(10.1~6.4),对应的Hf同位素二阶段模式年龄(t_(DM2))为1852~1547 Ma,指示其岩浆可能源自安多微陆块中下地壳古老结晶基底的部分熔融。结合区域研究成果,认为那曲地区黑云母二长花岗岩可能形成于后碰撞伸展的构造背景,早白垩世晚期伴随着拉萨和南羌塘地块的拼合,班公湖-怒江中特提斯洋中段地区已经闭合。 展开更多
关键词 班公湖-怒江缝合带 早白垩世 A型花岗岩 安多微陆块 后碰撞环境
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班怒带西段达如错斜长角闪岩变质温压条件及地质意义
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作者 杨庆坤 黄强太 +4 位作者 陈健 赵朝霞 宋庆伟 张城磊 王竞臣 《地质科学》 CAS CSCD 北大核心 2023年第4期1503-1520,共18页
班公湖—怒江缝合带是中特提斯构造演化的重要构造带之一,目前班公湖—怒江洋盆的俯冲演化过程存在诸多争议,尤其是俯冲过程中的变质作用鲜有报道。本文通过对班公湖—怒江缝合带西段的达如错斜长角闪岩开展角闪石和斜长石矿物的显微岩... 班公湖—怒江缝合带是中特提斯构造演化的重要构造带之一,目前班公湖—怒江洋盆的俯冲演化过程存在诸多争议,尤其是俯冲过程中的变质作用鲜有报道。本文通过对班公湖—怒江缝合带西段的达如错斜长角闪岩开展角闪石和斜长石矿物的显微岩相学分析和原位EPMA测试工作,查明岩石的矿物组合为辉石+角闪石+斜长石。利用相平衡模拟得出的斜长角闪岩变质温度660℃~750℃,压力2~6 kbar,对应角闪岩相的温压条件,与角闪石全铝压力计(3.7~5.4 kbar)及斜长角闪石温度计(615℃~881℃)计算结果一致。综合前人研究成果,本文认为达如错地区的斜长角闪岩原岩形成于侏罗纪晚期洋内俯冲引起的弧后盆地扩张环境,角闪岩相变质作用的发生与早白垩世班怒洋壳俯冲过程中的板片底板变质有关,班公湖—怒江洋盆西段达如错地区的闭合时间为103.7~100.1 Ma。 展开更多
关键词 斜长角闪岩 矿物温度计 相平衡模拟 洋内俯冲 班公湖—怒江缝合带
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Moho offset beneath the central Bangong-Nujiang suture of Tibetan Plateau 被引量:4
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作者 XU Qiang ZHAO JunMeng +2 位作者 CUI ZhongXiong PEI ShunPing LIU HongBing 《Chinese Science Bulletin》 SCIE EI CAS 2010年第7期607-613,共7页
By analyzing teleseismic waveforms recorded by 53 stations of Hi-Climb profile passing through the central Bangong-Nujiang suture(BNS) ,a total of 4764 high-quality receiver functions are obtained.The average crustal ... By analyzing teleseismic waveforms recorded by 53 stations of Hi-Climb profile passing through the central Bangong-Nujiang suture(BNS) ,a total of 4764 high-quality receiver functions are obtained.The average crustal thickness and Poisson's ratio beneath each station are estimated using the travel time of Ps and PpPs of the Moho.The discontinuities such as the Moho,the 410and 660-km interfaces are also studied using the common converted points(CCP) time to depth migration of receiver functions. The main results are as follows:(1) The Moho of Lhasa terrane and that of Qiangtang terrane nearby BNS are overridden and offset by~10 km.The structural geometry shows a northward uplifting and the southward deepening for the Moho of Lhasa terrane and Qiangtang terrane,respectively,which is related to the reactivated structure beneath BNS since Cenozoic era.(2) The variation range of Poisson's ratios along the profile is between 0.237 and 0.280,indicating that the crust is mainly composed of felsic and intermediate rocks.The anti-correlation between the crustal thickness and Poisson's ratio suggests that thicker crust beneath the southern Qiangtang terrane may be related to the successive thrust of felsic and intermediate rock of Lhasa terrane.(3) The thickness of the mantle transition zone along the profile remains about 255 km,implying that the tectonic activities caused by the India-Asia collision are confined to the depths above 410 km. 展开更多
关键词 西藏高原 缝合 怒江 中央 羌塘地体 地壳厚度 旅行时间 几何结构
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西藏班公湖—怒江缝合带东段多金属矿床地质特征与时空分布
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作者 高启荣 王国栋 +2 位作者 白志鸿 王东方 赵征 《矿产与地质》 2023年第5期947-955,969,共10页
班公湖—怒江缝合带东段矿产资源丰富,成矿地质条件优越,成矿潜力巨大,由于交通条件较差,地质找矿工作程度较低,理论研究薄弱。基于前人研究及出波松多、白库、热昌、扎罗卡矿区等典型矿床勘查成果,通过对矿床成因类型、控矿因素、成岩... 班公湖—怒江缝合带东段矿产资源丰富,成矿地质条件优越,成矿潜力巨大,由于交通条件较差,地质找矿工作程度较低,理论研究薄弱。基于前人研究及出波松多、白库、热昌、扎罗卡矿区等典型矿床勘查成果,通过对矿床成因类型、控矿因素、成岩成矿时代及岩浆岩等研究,确认成矿时代为早—中侏罗世燕山早期和早白垩世燕山晚期两个期次。矿床地质特征受地层、构造及燕山期岩浆岩的约束,铅锌多金属矿床以中低温热液充填-交代型为主,矿体赋存于层间破碎带或断层带内,少数为MVT型铅锌矿床,矿体呈囊状—似层状产出于碳酸盐岩地层中;金多金属矿床主要为中低温热液-构造破碎带蚀变岩型,矿体或金异常分布于侵入岩体外接触带附近发育的断裂构造上;Cr-Ni-Co-Pt-Fe矿床矿体赋存于燕山早期超基性岩脉及附近断裂带中。通过对区域成矿规律的总结,划分出唐古拉前陆复合盆地Cu-Au-Pb-Zn、丁青Cr-Ni-Co-Pt-Fe和冈底斯—念青唐古拉弧盆系Au-Cu-Ag-Pb-Zn三个成矿带,可以为该地区的进一步找矿工作提供参考。 展开更多
关键词 多金属矿 矿床地质特征 时空分布 矿床成因 班公湖—怒江缝合带东段 西藏
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Study on thermal infrared remote sensing of Yarlung Zangbo River and Bangong Co-Nujiang River suture belt in Qinghai-Tibet Plateau
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作者 BI Siwen, YAN Hao & WANG Changyao State Key Laboratory of Remote Sensing Sciences, Institute of Remote Sensing Application, Chinese Academy of Sciences, Beijing 100101, China Key Laboratory of Three-Dimensional Information Acquisition and Application, Ministry of Education, Capital Normal University, Beijing 100037, China 《Science China(Technological Sciences)》 SCIE EI CAS 2006年第z2期108-113,共6页
The area change of heat abnormity is not in accordance with conclusions of former thermal infrared remote sensing studies of the Qinghai-Tibet Plateau, which were that the temperature of Yarlung Zangbo River suture be... The area change of heat abnormity is not in accordance with conclusions of former thermal infrared remote sensing studies of the Qinghai-Tibet Plateau, which were that the temperature of Yarlung Zangbo River suture belt of the southern Plateau is high and the northern temperature is low. The study result in this paper shows that the highest temperature is found in the Bangong Co-Nujiang River suture belt, the Yarlung Zangbo River suture belt temperature is the second highest, and the northern Tibet temperature is the lowest. The study demonstration area was the suture belt areas of the Yarlung Zangbo River and the Bangong Co-Nujiang River in the Qinghai-Tibet Plateau, where the land temperature of the Qinghai-Tibet Plateau and the bore temperature of field land surface were measured and the emissivity of land surface was calculated. In addition, the authors explore the mechanism of the relationship between thermal infrared remote sensing and constructing thermodynamics and reach four new conclusions about the thermodynamics of the Tibet Plateau. 展开更多
关键词 Qinghai-Tibet Plateau Yarlung Zangbo River-bangong Co-Nujiang River suture belt thermal infrared REMOTE sensing heat abnormity.
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班公湖-怒江带、羌塘地块特提斯演化与成矿地质背景 被引量:173
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作者 耿全如 潘桂棠 +2 位作者 王立全 彭智敏 张璋 《地质通报》 CAS CSCD 北大核心 2011年第8期1261-1274,共14页
早古生代—泥盆纪,研究区沉积环境以陆棚碎屑岩相和碳酸盐台地相为主,代表冈瓦纳大陆北缘和特提斯南侧的被动大陆边缘。石炭纪—二叠纪,本区进入特提斯南、北缘弧盆系统演化阶段,龙木错-双湖带北部、金沙江带南部和冈底斯带分别在石炭... 早古生代—泥盆纪,研究区沉积环境以陆棚碎屑岩相和碳酸盐台地相为主,代表冈瓦纳大陆北缘和特提斯南侧的被动大陆边缘。石炭纪—二叠纪,本区进入特提斯南、北缘弧盆系统演化阶段,龙木错-双湖带北部、金沙江带南部和冈底斯带分别在石炭纪、二叠纪形成岩浆弧。中生代是特提斯南缘弧盆演化阶段,SSZ型蛇绿岩形成岩浆熔离型铬、镍、铂族金属矿床和热液型金矿。班公湖-怒江带特提斯在中侏罗世至早白垩世向南、北两侧俯冲并形成岩浆弧,该岩浆弧是重要的成矿带,形成斑岩铜矿、矽卡岩型磁铁矿和热液型多金属矿床。北羌塘东段侏罗纪弧后前陆盆地有利于形成沉积型、沉积-热液改造型和热液型铁、铜、锑、金矿床。晚白垩世碰撞作用主要与热液型矿床有关,分布范围较大,也可能存在晚白垩世至新生代碰撞阶段的斑岩铜矿。 展开更多
关键词 羌塘地块 班公湖-怒江成矿带 特提斯演化 成矿作用
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西藏尼玛县塔色普勒地区去申拉组火山岩的发现及其地质意义 被引量:32
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作者 吴浩 李才 +3 位作者 胡培远 范建军 张红雨 李娇 《地质通报》 CAS CSCD 北大核心 2013年第7期1014-1026,共13页
对塔色普勒地区新发现的去申拉组火山岩进行了系统的地球化学和年龄研究。根据主量元素特征,将区内火山岩划分为富镁安山岩、英安岩和高分异流纹岩3种类型。富镁安山岩具有较高的MgO含量和Mg#值,是俯冲板片熔体与地幔楔相互作用的产物;... 对塔色普勒地区新发现的去申拉组火山岩进行了系统的地球化学和年龄研究。根据主量元素特征,将区内火山岩划分为富镁安山岩、英安岩和高分异流纹岩3种类型。富镁安山岩具有较高的MgO含量和Mg#值,是俯冲板片熔体与地幔楔相互作用的产物;英安岩与高分异流纹岩具有同源岩浆的特征,富集大离子亲石元素Rb、Th、U、K、Pb,亏损Nb、Ta、Ti、Sr等元素,并具有较高的Rb/Sr值,可能是地壳部分熔融经历了不同分异作用形成的。对流纹岩进行LA-ICP-MS锆石U-Pb定年,获得103Ma±1Ma和107Ma±1Ma的年龄值,显示区内去申拉组火山岩形成于早白垩世晚期。研究认为,区内去申拉组火山岩形成的地球动力学背景是早白垩世晚期班公湖-怒江洋壳向南俯冲过程中发生的板片断离,塔色普勒地区班公湖-怒江洋的陆-陆碰撞时间在107Ma左右。 展开更多
关键词 班公湖-怒江板块缝合带 去申拉组 火山岩 地球化学
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西藏班公湖-丁青蛇绿岩带东段侏罗纪盖层沉积的地层划分 被引量:39
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作者 王建平 刘彦明 +2 位作者 李秋生 岳国利 裴放 《地质通报》 CAS CSCD 北大核心 2002年第7期405-410,共6页
根据对西藏班公湖—丁青缝合带东段丁青蛇绿岩及其盖层沉积研究,确定丁青蛇绿岩时代为晚三叠世,盖层沉积地层时代为中晚侏罗世,进一步划分为德极国组、德吉弄组和机末组,并建立了3个生物地层组合。据此首次提出班公湖—丁青缝合带东段... 根据对西藏班公湖—丁青缝合带东段丁青蛇绿岩及其盖层沉积研究,确定丁青蛇绿岩时代为晚三叠世,盖层沉积地层时代为中晚侏罗世,进一步划分为德极国组、德吉弄组和机末组,并建立了3个生物地层组合。据此首次提出班公湖—丁青缝合带东段于三叠纪打开,晚三叠世发育成为较成熟洋盆,并最终于早侏罗世末关闭。通过对班公湖—丁青缝合带东、西部地质特征的对比,指出该缝合带关闭时间从东部的早侏罗世末到西部的晚侏罗世末,从而为特提斯洋演化进程提供了新证据。 展开更多
关键词 西藏 班公湖-丁青缝合带 蛇绿岩 侏罗纪 盖层沉积 地层划分 德极国组 德吉弄组 机末组
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西藏班公湖中特提斯洋盆的打开时间:镁铁质蛇绿岩地球化学与锆石U-Pb LAICPMS定年结果 被引量:62
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作者 曲晓明 辛洪波 +2 位作者 赵元艺 王瑞江 樊兴涛 《地学前缘》 EI CAS CSCD 北大核心 2010年第3期53-63,共11页
对青藏高原西北部班公湖缝合带开展了路线剖面地质调查,在北面日土蛇绿岩带上采得2处镁铁质岩墙(辉长岩和辉绿岩),岩石地球化学分析表明这两处镁铁质岩墙具有平缓的球粒陨石标准化稀土元素分布型式,显示出洋中脊玄武岩特征,说明它们形... 对青藏高原西北部班公湖缝合带开展了路线剖面地质调查,在北面日土蛇绿岩带上采得2处镁铁质岩墙(辉长岩和辉绿岩),岩石地球化学分析表明这两处镁铁质岩墙具有平缓的球粒陨石标准化稀土元素分布型式,显示出洋中脊玄武岩特征,说明它们形成于洋中脊环境,其锆石U-PbLAICPMS年龄测定结果分别为(181.9±2.6)Ma(MSWD=11.5)和(184.4±4.4)Ma(MSWD=2.2),表明班公湖中特提斯洋是在早侏罗世晚期打开的。另外,在狮泉河—改则蛇绿岩带上采得橄榄辉绿岩,岩石以K2O(质量分数为1.49%~1.56%)、Al2O3(质量分数为14.76%~15.21%)含量高,Fe2O3/FeO比值高(1.73~2.49),富集大离子不相容元素(Rb、Ba、Th、Sr)和轻稀土元素(LREE)为特点,在基性岩构造环境判别图上显示出洋岛玄武岩的亲合性。该样品给出的(176.2±9.0)Ma(MSWD=3.1)的锆石U-PbLAICPMS年龄说明,班公湖中特提斯洋从早侏罗世晚期打开,经过近10Ma的扩张至中侏罗世早期已变成一个成热的洋盆。 展开更多
关键词 锆石U-Pb年龄 镁铁质岩墙 蛇绿岩 班公湖缝合带 青藏高原
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西藏改则蛇绿岩中斜长花岗岩地球化学特征、锆石U-Pb年龄及构造意义 被引量:30
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作者 樊帅权 史仁灯 +3 位作者 丁林 刘德亮 黄启帅 王厚起 《岩石矿物学杂志》 CAS CSCD 北大核心 2010年第5期467-478,共12页
西藏改则蛇绿岩主要由地幔橄榄岩、均质辉长岩、玄武岩、玄武安山岩和斜长花岗岩组成。其中斜长花岗岩主要由石英、基性斜长石组成,SiO2含量较高,为72.18%~74.55%,Mg#均值为42,Na2O含量为1.30%~3.13%,K2O含量很低,为0.26%~0.67%,Na2O... 西藏改则蛇绿岩主要由地幔橄榄岩、均质辉长岩、玄武岩、玄武安山岩和斜长花岗岩组成。其中斜长花岗岩主要由石英、基性斜长石组成,SiO2含量较高,为72.18%~74.55%,Mg#均值为42,Na2O含量为1.30%~3.13%,K2O含量很低,为0.26%~0.67%,Na2O/K2O变化范围为3.64~8.23。斜长花岗岩和中基性岩(辉长岩、玄武岩和玄武安山岩)的元素地球化学特征表明,改则斜长花岗岩可能是由基性岩部分熔融形成的,并且斜长花岗岩富集Sr、Rb等大离子亲石元素,亏损Nb、Ta、Ti等高场强元素,具有岛弧型火山岩的特点,推测该斜长花岗岩形成于岛弧环境,是SSZ型蛇绿岩的组成单元。LA-ICPMS法测得斜长花岗岩中锆石U-Pb加权平均年龄为189.8±1.9Ma,表明班公湖-怒江缝合带改则地区在早侏罗世发生了俯冲作用,该区的俯冲消减时间要早于西段的班公湖地区,晚于东段丁青地区。 展开更多
关键词 斜长花岗岩 熔岩 蛇绿岩 锆石 班公湖-怒江缝合带 构造环境
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青藏高原吉隆-鲁谷(Hi-Climb)层析成像与印藏碰撞的消减作用 被引量:15
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作者 钱辉 姜枚 +4 位作者 Chen Wangping John Nabelek Zhao Dapeng 赵磊 王亚军 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2007年第5期1427-1436,共10页
利用中美合作Hi-Climb项目北段吉隆-鲁谷剖面的天然地震探测数据,拾取2004-2005年期间5级以上地震事件的P波与4级以上地震的Pn波震相的走时,通过多震相层析成像反演获得青藏高原腹地的地下500 km以上的P波速度扰动结构.结果表明雅江... 利用中美合作Hi-Climb项目北段吉隆-鲁谷剖面的天然地震探测数据,拾取2004-2005年期间5级以上地震事件的P波与4级以上地震的Pn波震相的走时,通过多震相层析成像反演获得青藏高原腹地的地下500 km以上的P波速度扰动结构.结果表明雅江地区为北向倾斜的低速扰动,班公-怒江断裂下方存在向南俯冲并被印度板块俯冲挤压而回折的高速体,建立了印度板块在冈底斯地块下方拆沉并被雅江低速体穿越的构造样式.说明印度板块俯冲在到达班公-怒江缝合带之前已经开始消减,与拆沉位置对比发现,印度板块的前锋深部呈现多期多级次特征,并受到地幔热循环作用的影响. 展开更多
关键词 层析成像 青藏高原 拆沉作用 雅鲁藏布缝合带 班公怒江缝合带
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