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81.
????2013????5.1?????????????????????????????????????????????仯??????????????????????????Ч???????????????????????????????й?????????з???????????????????????????淢????????????????????????????????????????й??????????????????????????????????Ms5.1?????????????????????????????????????????????????????????????????????????淢???????????γ?????????????????????????????????????????????????桢???????????????????μ???????????--????????????????  相似文献   
82.
???????????????????????????????????????????????????80 cm??130 cm??????????????????????仯??????0.02×10-8 ms-2/cm??????????仯????仯??????????????????????FG5??A10???????????????????????????????????????????????????仯????????  相似文献   
83.
????????????????????????????棬??????????????????????????????????????????GPS???????????????????????????M≥5.0????????????????????????????????????????????????Ч???????XY?????????????????????????????????????????????????????????????????????????ο???????????  相似文献   
84.
哈萨克斯坦萨亚克铜矿田产于晚石炭世闪长玢岩、石英闪长玢岩或花岗闪长玢岩与中石炭统灰岩的接触带上,铜矿体呈透镜状、脉状产于矽卡岩中。其成矿期可以划分为4个阶段:石榴子石矽卡岩阶段(Ⅰ)、绿帘石-石榴子石矽卡岩阶段(Ⅱ)、磁铁矿阶段(Ⅲ)和石英-硫化物阶段(Ⅳ)。铜矿化主要发生在石英-硫化物阶段,形成石英、黄铁矿、黄铜矿、磁黄铁矿,呈浸染状或脉状产于不同类型的矽卡岩或块状磁铁矿中。矽卡岩中的石榴子石有3种类型:石榴子石矽卡岩中的钙铁榴石(Grt-a)、交代钙铁榴石的含Al钙铁榴石(Grt-b)和绿帘石-石榴子石矽卡岩中具有环带结构的石榴子石(Grt-c)。从第一类到第三类石榴子石,平均w(Al2O3)从<1%逐渐升高至~5%;分子式中平均Fe3+原子数从2.15逐渐降低至1.57,显示成矿体系中Al的摩尔浓度逐渐升高、氧逸度逐渐降低。绿帘石-石榴子石矽卡岩中发育少量辉石,属于钙铁辉石-透辉石系列,在辉石分类图中落于普通辉石范围内。矽卡岩的地质特征、矿物组合和矿物化学特征表明,萨亚克矽卡岩是与花岗岩类侵入岩有关的岩浆热液与灰岩通过接触交代反应形成的钙质矽卡岩,随着矽卡岩化和成矿作用的进行,成矿体系的温度和氧逸度逐渐降低、pH值升高,导致磁铁矿和黄铁矿-磁黄铁矿-黄铜矿矿物组合依次发生沉淀。  相似文献   
85.
芦山地震的发生对周围断层影响的数值模拟   总被引:4,自引:0,他引:4  
芦山地震发生后,地震的发生造成周围断层应力变化值得关注。本文基于川滇地区的三维非线性有限元模型,利用芦山地震同震静态滑移量结果,分析地震的发生对川滇地区主要断裂的同震加卸载效应。初步结果表明,芦山地震的发生造成龙门山断裂中南段、岷江断裂、马尔康断裂、鲜水河断裂北西段、大凉山断裂南段、小江断裂南段不同程度的应力增加。其中龙门山断裂中南段增加最为显著,最大库仑应力增加量达0.035 MPa;岷江断裂次之,最大达0.0075 MPa;马尔康断裂增加量达0.0031 MPa;鲜水河断裂北西段达0.0008 MPa。而从断裂带同震应变积累与释放方面分析的结果同样表明上述四条断裂地震危险性增强。该结果可以为川滇地区地震危险性分析提供一定的参考依据。  相似文献   
86.
《Gondwana Research》2014,25(3-4):1203-1222
Reactivation of cratonic basement involves a number of processes including extension, compression, and/or lithospheric delamination. The northern margin of the North China Craton (NCC), adjacent to the Inner Mongolian Orogenic Belt, was reactivated in the Late Paleozoic to Early Mesozoic. During this period, the northern margin of the NCC underwent magmatism, N–S compression, regional exhumation, and uplift, including the formation of E–W-trending thick-skinned and thin-skinned south-verging folds and south-verging ductile shear zones. zircon U–Pb SHRIMP ages for mylonite protoliths in shear zones which show ages of 310–290 Ma (mid Carboniferous–Early Permian), constraining the earliest possible age of deformation. Muscovite within carbonate and quartz–feldspar–muscovite mylonites from the Kangbao–Weichang and Fengning–Longhua shear zones defines a stretching lineation and gives 40Ar/39Ar ages of 270–250 Ma, 250–230 Ma, 230–210 Ma, and 210–190 Ma. Deformation developed progressively from north to south between the Late Paleozoic and Triassic. Exhumation of lower crustal gneisses, high-pressure granulites, and granites occurred at the cratonic margin during post-ductile shearing (~ 220–210 Ma). An undeformed Early Jurassic (190–180 Ma) conglomerate overlies the deformed rocks and provides an upper age limit for reactivation and orogenesis. Deformation was induced by convergence between the southern Mongolia and North China cratonic blocks, and the location of this convergent belt controlled later deformation in the Yanshan Tectonic Province. This province formed as older E–W-trending Archean–Proterozoic sequences were reactivated along the northern margin of the NCC. This reactivation has features typical of cratonic basement reactivation: compression, crustal thickening, remelting of the mid to lower crust, and subsequent orogenesis adjacent to the orogenic belt.  相似文献   
87.
Several Precambrian mafic–ultramafic complexes occur along the Cauvery Suture Zone (CSZ) in Southern Granulite Terrain, India. Their origin, magmatic evolution and relationship with the associated high-grade rocks have not been resolved. The Aniyapuram Mafic–Ultramafic Complex (AMUC), the focus of the present study in southern part of the CSZ, is dominantly composed of peridotites, pyroxenites, gabbros, metagabbros/mafic granulites, hornblendites, amphibolites, plagiogranites, felsic granulites and ferruginous cherts. The rock types in the AMUC are structurally emplaced within hornblende gneiss (TTG) basement rocks and are highly deformed. The geochemical signature of the amphibolites indicates tholeiitic affinity for the protolith with magma generation in island arc-setting. N-MORB normalized pattern of the amphibolites show depletion in HFS-elements (P, Zr, Sm, Ti, and Y) and enrichment of LIL-elements (Rb, Ba, Th, Sr) with negative Nb anomalies suggesting involvement of subduction component in the depleted mantle source and formation in a supra-subduction zone tectonic setting. Our new results when correlated with the available age data suggest that the lithological association of AMUC represent the remnants of the Neoarchean oceanic lithosphere.  相似文献   
88.
The precise constraints on the timing of metamorphism of the Changhai metamorphic complex is of great importance considering the prolonged controversial issue of the north margin and the extension of the Sulu–Dabie HP–UHP Belt. While the monazite U–Th–Pb and muscovite 40Ar/39Ar techniques are widely accepted as two of the most powerful dating tools for revealing the thermal histories of medium–low grade metamorphic rocks and precisely constraining the timing of metamorphism. The Changhai metamorphic complex at the SE Jiao–Liao–Ji Belt, North China Craton consists of a variety of pelitic schist and Grt–Ky-bearing paragneiss, and minor quartzite and marble. Analyses of mineral inclusions and back-scattered electric (BSE) images of monazites, combined with LA–ICP–MS U–Th–Pb ages for monazites and 40Ar/39Ar ages for muscovites, provide evidence of the origin and metamorphic age of the Changhai metamorphic complex. Monazites separates from various Grt–Mus schists and Grt–Ky–St–Mus paragneisses exhibit homogeneous BSE images from cores to rims, and contain inclusion assemblages of Grt + Mus + Qtz ± Ctd ± Ky in schist, and Grt + Ky + St + Mus + Pl + Kfs + Qtz inclusions in paragneiss. These inclusion assemblages are very similar to matrix minerals of host rocks, indicating they are metamorphic rather than inherited or detrital in origin. LA–ICP–MS U–Th–Pb dating reveals that monazites of schist and paragneiss have consistent 206Pb/238U ages ranging from 228.1 ± 3.8 to 218.2 ± 3.7 Ma. In contrast, muscovites from various schists show slightly older 40Ar/39Ar plateau ages of 236.1 ± 1.5 to 230.2 ± 1.2 Ma. These geochronological and petrological data conclude that the pelitic sediments have experienced a metamorphic event at the Mid–Late Triassic (236.1–218.2 Ma) rather than the Paleoproterozoic (1950–1850 Ma), commonly regarded as the Precambrian basement for the Jiao–Liao–Ji Belt. Hence, the Changhai metamorphic complex should be considered as a discrete lithotectonic group.This newly recognized Mid–Late Triassic metamorphic event (236.1–218.2 Ma) for the Changhai metamorphic complex is coeval with the HP–UHP metamorphic event (235–220 Ma) for Sulu–Dabie rocks. This leads us to speculate that the metamorphism of the Changhai complex belt along the SE margin of the North China Craton was genetically related to the Mid–Late Triassic collision of the North China and South China cratons. By the same token, the Sulu–Dabie HP–UHP Belt may have extended through Yantai, and the southern Yellow Sea, and to the southern side of the Changhai metamorphic complex.  相似文献   
89.
It is a common concern that the groundwater flow field caused by the Three Gorges Dam changes the regional seismic activity and environment. The changes in the seepage region could be effectively reflected through the analysis of the groundwater age using chlorofluorocarbons (CFC)-based techniques. In this study, the influences of the reservoir water on groundwater and the seepage region boundary of the reservoir were investigated using CFCs, stable isotopes, and water level in groundwater, reservoir water, and spring water during the water storage process of the Three Gorges Reservoir. The results show that the water supplied by the groundwater is older, whereas the water supplied by the reservoir and the springs is younger. With an increase in the water level of the reservoir, the water in well W3, which is located at the vice dam of the head region, becomes older due to the reservoir loading effect, whereas the water in well W4 become younger due to the lateral seepage of reservoir water. This finding indicates that the groundwater seepage regions in wells W3 and W4, which are located at upstream of the reservoir, are all influenced by the Three Gorges Reservoir. In contrast, the sampling points in the northern section of the Xiannvshan fault zone, which is farther from the dam, did not exhibit any direct hydraulic connection between the groundwater and the reservoir water; thus, the reservoir seepage effects may not affect the northern part of the Xiannvshan fault zone. These research results provide important reference data that can be used to analyze the effects of the Three Gorges reservoir storage on the regional environment.  相似文献   
90.
采用郯庐断裂带苏皖段及邻区近50 a的地震数据,在定量分析区域最小完备震级MC和推导b值计算的极大似然法基础上,重点研究G-R关系,尤其是b值时空分布演化特征,并依据b值指示意义进行5级以上地震关联性和断裂带影响区域的构造应力分布状况分析。结果显示,依据b值的时间分布特征,研究区中强地震发生时段与中短期b值下降时段关联率达到80%以上;依据b值的空间分布特征,研究区苏北盆地整体及以南和合肥盆地南缘范围内的地壳应力较高,与超高压变质带的分布有较好的一致性,结合相关地质资料认为,该区域处于孕震阶段。  相似文献   
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