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排序方式: 共有96条查询结果,搜索用时 15 毫秒
1.
内蒙古正镶白旗碎斑熔岩岩石学特征及其岩相划分   总被引:4,自引:0,他引:4  
白旗碎斑熔岩为不规则穹状体,可分为边缘玻质碎斑熔岩、过渡霏细碎斑熔岩、中心粒状碎斑熔岩和根部花岗斑岩四个岩性带。从玻质碎斑熔岩到粒状碎斑熔岩,斑晶碎裂度逐渐减弱,珠边结构在粒状碎斑熔岩中最发育,根部花岗斑岩与正常次火山岩相近。碎斑熔岩中钾长石有序度低,指示了岩石高温成因特征。白旌碎斑熔岩属太平洋岩系钙碱质系列,原始岩浆由来源于上地幔和下地壳熔体的混熔作用形成。  相似文献   
2.
秦岭造山带勉略缝合带构造变形与造山过程   总被引:23,自引:4,他引:23  
秦岭晚古生代以来造山过程中的构造变形研究对建立华北板块与华南板块之间的最终拼合过程尤为重要。为此,选择勉略带进行了详细的野外调查,对其物质组成,几何学结构,变形序列,运动学和动力学作了系统解剖,认为:勉略带是有一定宽度,由一定实体组成的蛇构造混杂岩带,它包括不同时代,不同构造背景,不同起源的一系列构造岩片,如:基底岩片组,洋壳岩片组,岛弧岩片组,碰撞构造沉积楔形体,大陆边缘岩片组,它们被一系列的北倾南冲的断裂分割。勉略带到-高川段的北倾南冲逆冲断裂和勉略带北部南倾北冲的逆冲断裂组合成为现今不对称的正花状几何学结构,但勉略带的北界状元碑断裂和南界 到-略阳断裂走滑特征明显。结合勉略带邻区的构造特征,分别对带内重要断裂及岩片的构造解析表明,除主造山的大地构造演化阶段外,可将勉略带构造变形序列及演化历程总体归纳为三大阶段:俯冲变形阶段,主造山碰撞变形阶段的陆内造山调整变形阶段,并对不同变表阶段的时限,变形特征,运动学和动力学分别作了描述;最后针对该区复杂的楔入,挤出(逃逸)走滑,逆冲过程,提出了一个统一的动力学演化模式。  相似文献   
3.
By stacking high-precision tidal gravity observations obtained with superconducting gravimeters at six stations in China, Japan, Belgium, France, Germany and Finland, the local systematical discrepancies in the parameter fitting, caused by atmospheric, oceanic tidal loading and the other local environmental perturbations, are eliminated effectively. As a result, the resonance parameters of the Earth’s free core nutation are accurately determined. In this study, the eigenperiod of free core nutation is given as 429.0 sidereal days, which is in agreement with those published in the previous studies. It is about 30 sidereal days less than those calculated in theoretical models (about 460 sidereal days), which confirms the real ellipticity of the fluid core of the Earth to be about 5% larger than the one expected in assumption of hydrostatic equilibrium. The quality factor (Q value) of free core nutation is given as about 9543, which, compared with those determined before based on the body tide observations, is much larger, but more close to those obtained using the VLBI observations. The complex resonance strength is also determined as (−6.10×10−4, −0.01 ×10−4)°/h, which can principally describe the deformation characteristics of an anelastic mantle.  相似文献   
4.
武汉基准台超导重力仪重力潮汐观测结果   总被引:11,自引:2,他引:11  
本文采用重力残差信号对武汉基准台超导重力仪的原始观测数据(20秒采样)作预处理,将原始观测信号分解成重力潮汐和残差两部分,在残差信号中消除一些已知的干扰因素的影响。利用ETERNA软件作调和分析,两主波(O1和M2)的重力潮汐参数(振幅因子和相位滞后)为:O1:1.1788±0.0006,-0.5975°±0.028°;M2:1.1713±0.0002,-0.5873°±0.008°经海潮改正以后,O1和M2波的潮汐参数与Wahr-Dehant潮汐模型值相比,振幅因子的偏差优于0.1%。  相似文献   
5.
GeochemicalFeaturesofOphioliteinMianxianLueyangSutureZone,QinlingOrogenicBeltLaiShaocong;ZhangGuowei(DepartmentofGeology,Nort...  相似文献   
6.
正Objective The Cenozoic Indo-Asian collision caused significant crustal shortening and plateau uplift in the central Tibet.The extrusion tectonic model has been widely accepted to explain the strike-slip faults around the Tibetan Plateau.Previous studies indicate that the lower crust flow is the  相似文献   
7.
GenerationofMuscovite/Two-MicaGranilandIntracontinentalSubduction¥DengJinfu;ZhaoHailing;LaiShaocong;LiuHouxiang;LuoZhaohua(De...  相似文献   
8.
Neogene volcanic rocks in the Belog Co area, Qiangtang, northern Tibet, are represented by a typical intermediate-basic and intermediate alkaline rock association, with latite-trachyte as the main rock type. The results of chemical analysis are: SiO2=52%–62%, Al2O3>15%, Na2O/K2O>1 and MgO<3.30%. In addition, the volcanic rocks are LREE-enriched with LREE/HREE=10–13, (La/Yb)N=15–19, and show a weak negative Eu anomaly with δEu=0.71–0.89. The close relationship between Mg# and SiO2 and the co-variation of the magmatophile elements and ultra-magmatophile elements such as La/Sm-La and Cr-Tb indicate that this association of volcanic rocks is the product of comagmatic fractional crystallization. The rock association type and lower Sm/Yb values (Sm/Yb=3.23–3.97) imply that this association of volcanic rocks should have originated from partial melting of spinel lherzolite in the lithospheric mantle. On the other hand, the weak negative Eu anomaly and relative depletion in Nb, Ta and Ti reflect the features of terrigenous magma. So the Neogene Belog Co alkaline volcanic rocks should be the result of partial melting of the special crust-mantle transition zone on the Qinghai-Tibet Plateau.  相似文献   
9.
The geologic framework of the Phanerozoic Qinling–Dabie orogen was built up through two major suturing events of three blocks. From north to south these include the North China craton (including the north Qinling block), the Qinling–Dabie microblock, and the South China craton (including the Bikou block), separated by the Shangdan and Mianlue sutures. The Mianlue suture zone contains evidence for Mesozoic extrusion tectonics in the form of major strike–slip border faults surrounding basement blocks, a Late Paleozoic ophiolite and a ca. 240–200 Ma thrust belt that reformed by 200–150 Ma thrusts during A-type (intracontinental) subduction. The regional map pattern shows that the blocks are surrounded by complexly deformed Devonian to Early Triassic metasandstones and metapelites, forming a regional-scale block-in-matrix mélange fabric. Five distinct tectonic units have been recognized in the belt: (1) basement blocks including two types of Precambrian basement, crystalline and transitional; (2) continental margin slices including Early Paleozoic strata, and Late Paleozoic fluviodeltaic sedimentary rocks, proximal and distal fan clastics, reflecting the development of a north-facing rift margin on the edge of the South China plate; (3) out of sequence oceanic crustal slices including strongly deformed postrift, deep-water sedimentary rocks, sheeted dikes, basalts, and mafic–ultramafic cumulates of a Late Paleozoic ophiolite suite, developing independent of the rift margin in a separate basin; (4) out-of-sequence island-arc slices; (5) accretionary wedge slices. All the tectonic units were deformed during three geometrically distinct deformation episodes (D1, D2 and D3 during 240–200 Ma). Units 2–4 involved southward thrusting and vertical then southward extrusion of about 20 km of horizontal displacement above the autochthonous basement during the D1 episode. Thrust slices 20 km south of the Mianlue suture are related to this vertical extrusion due to the same rock assemblages, ages and kinematics. The D2 and D3 episodes folded all the units in a thick-skinned style about east–west (D2) and west–northwest (D3) axes in the Mianlue suture zone. An early foreland propagating sequence of accretion of Late Paleozoic rocks deposited above the Yangtze craton is not involved in D1 deformation but is temporally equivalent to the D2 and D3 deformation in the Mianlue suture. Two stages of strike–slip faulting mainly occurred at the end of D2 and D3, respectively. During D2 deformation, the Bikou block was obliquely indented to the ESE into the Mianlue suture, rather than being thrust over the Mianlue suture from the north as a part of the Qinling–Dabie microblock. During D3 deformation, however, the Bikou block was bounded by the south boundary fault of the Mianlue suture, and the Yangpingguan fault on the south. These faults are coeval strike–slip faults, but of opposite senses, and accommodated minor southwestward extrusion of the Bikou block into Songpan–Ganze orogen. The other basement blocks north of the Mianlue suture were extruded eastward by about 20 km of lateral displacement, based on the offset of the Wudang dome, during the D3 episode due to the northeastward indentation of the Hannan complex of the South China craton. Post-D3 emplacement of granite, cutting across the strike–slip faults such as the Mianlue suture, provides a minimum age of 200 Ma for D3 deformation. Therefore, based on insights from the evolution of the Mianlue suture, the D2 and D3 episodes in the Mianlue suture and its neighbors are not responsible for and associated with the two-stage extrusion of the Dabie UHP-HP terranes from the Foping dome to the present erosional surface (more than 350 km).  相似文献   
10.
通过对武汉台超导重力仪9年多连续观测的重力长期变化资料分析,得到长周期重力潮汐参数、该频段气压回归因子C、极移重力效应因子P和长周期气压回归因子C1分别为:C:-0.383(±0.014)×10-8m·s-2/100Pa;Mm:1.1173(±0.0720),-1°.1787(±3°.6943);Mf:1.1432(±0.0484),5°.2235(±2°.4253);Mtm:1.2276(±0.2245),-17°.5648(±10°.4758);C1:-0.312(±0.015)×10-8m·s-2/100Pa;P:1.9047(±0.0695).重力长期变化在Chandler周期附近的振幅约为3.26×10-8m·s-2。  相似文献   
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