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261.
This work is a study of the upper-mantle seismic structure beneath the central part of the Eurasian continent, including the northern Mongolia, Altai and Sayan orogenic areas and the Baikal rift zone. Seismic velocity models are reconstructed using the inverse teleseismic scheme. This scheme uses information from earthquakes located within the study area recorded by the Worldwide Network. The seismic anomaly structure is obtained for different volumes in the study area that partially overlap one another. Special attention has been paid to the reliability of the results: several noise and resolution comparisons are made.
The main results are as follows. (1) A cell structure of anomalies is observed beneath the Altai–Sayan region: positive, cold anomalies correspond to regions of recent orogenesis, negative anomalies are located beneath the depression of the Great Lakes in Mongolia and Hubsugul Lake. (2) A large negative anomaly is observed beneath the Hangai dome in Mongolia. (3) Strong velocity variations are obtained in a zone around Baikal Lake. A large negative anomaly is traced beneath the southern margin of the Siberian craton down to a depth of 700 km. Contrasting positive anomalies (4–5 per cent) are observed at a depth of 100–300 km beneath the Baikal rift. Our geodynamical interpretation of the velocity structure obtained beneath central Asia involves the existence of two processes in the mantle: thermal convection with regular cells, and a narrow plume beneath the southern border of the Siberian plate.  相似文献   
262.
豫西横穿秦岭造山带的反射地震为主的综合地球物理探测,发现秦岭现今北界存在华北地块南部自北向南向秦岭的巨型陆内俯冲带,深达Moho面以下,与之相伴而生,在中上地壳发育自南向北的逆冲推构造带,千公里东西向延伸,主要发生于晚白垩世100Ma±,成为秦岭与华北地区块间中新生代重要陆内构造,它是秦岭造山带岩石圈现今三维结构的基本要素和组成部分,秦岭造山带岩石圈现今结构具有流变学分层的“立交桥”三维结构框架模型。显然它们具有统一的动力学背景,是秦岭造山带现今处于印度-青藏、太平洋和欧亚板块的西伯利亚地块等三大构造动力学体系复合部位,导致其从深部地幔动力学的最新调整到上部地壳响应所发生的壳幔等圈层相互作用的综合产物,可能是大陆长期保存、演化的主要途径与形式之一,具有重要的大陆动力学意义,对中国大陆构造、灾害、环境研究也具重要意义。  相似文献   
263.
The Junggar orogen, Xinjiang, China, is an important part of the Ural-Mongolian orogen.The collisional orogenesis in this region occurred primarily in the Carboniferous and Permianwith an evolutional process of early compression and late extension. Mineralization of gold andother metals in the Junggar orogen occurred mainly in the Permian and in a few cases in theLate Carboniferous. The deposits are largely distributed in areas where collisional orogenesiswas intensive and formed in a transitional stage from compression to extension. Therefore, goldmineralization in the Junggar orogen is fully consistent with the collisional orogenesis in time,space and geodynamic setting. This indicates that the mineral deposit model of collisionalorogenesis is applicable to prospecting and study of ore deposits in the Junggar orogen.Furthermore, the factual distribution of gold and other deposits in this region is just the same asthe collisional orogenic model presents.  相似文献   
264.
Fumitoshi  Murakami 《Island Arc》1996,5(1):25-42
Abstract Seven back-arc rifts are recognized in the Izu-Ogasawara Arc, namely, the Hachijo, the Aogashima, the Myojin, the Sumisu, the Torishima, the Sofu and the Nishinoshima Rifts from north to south. The acoustic stratigraphy is divided into three units (Units A, B and C) based on the seismic reflection profiles crossing the rifts. The structure of the rifts systematically changes from a half-graben type to a full graben type in the back-arc rifts from the Hachijo Rift to the Torishima Rift. The Hachijo and the Aogashima Rifts have a structure of half-graben, and the Myojin Rift has both structural characteristics of a half-graben and a full graben. The Sumisu and the Torishima Rifts are an asymmetric full graben. The Sofu and the Nishinoshima Rifts have different structural characteristics from the remaining rifts, from the Hachijo Rift to the Torishima Rift. The boundary faults in the back-arc rifts from the Hachijo to the Torishima Rifts cut to Unit B. Unit B correlates with volcaniclastic sediments during pre-rift volcanism between 4 and 2 Ma. The pre-rift volcanism was probably widespread on the northern Izu-Ogasawara Arc as is the present arc volcanism. These factors suggest that the beginning of rifting is dated at some time after 2 Ma. The developing process of the rift consists of three stages; (i) a sag stage in the crust at the location of the large offset boundary fault; (ii) a stage of half-graben formation; (iii) a stage of full graben formation. The offset of the boundary faults becomes larger from the Hachijo Rift to the Torishima Rift and the east-west width of the rifts also widens to the south. This is presumably because the Hachijo Rift is an earlier rifting stage than the Sumisu and the Torishima Rifts. The more primitive structure in the rifting stage from the Torishima Rift to the Hachijo Rift is probably caused by the propagation of rifting from south to north. The structural difference between the rifts in the northern part and the Sofu and the Nishinoshima Rifts seems to be due to structural differences in the crust between the northern and the southern parts from the tectonic gap.  相似文献   
265.
广东梅县嵩溪早侏罗世火山活动及其地质构造与成矿意义   总被引:2,自引:0,他引:2  
从熔岩——玄武岩的岩石学、岩石化学、微量元素、稀土元素和锶同位素组成,以及火山旋回中玻璃碎屑岩诸方面特征,详细地研究了下侏罗统含矿层位内海底基性火山活动,阐述矿区玄武岩形成环境为夭折的大陆裂谷前期地壳槽形裂陷地堑系——裂陷槽。并讨论该裂陷槽环境中基性火山活动的银锑成矿意义  相似文献   
266.
准噶尔造山带碰撞体制的成矿作用及金等矿床分布规律   总被引:35,自引:0,他引:35  
陈衍景 《地质学报》1996,70(3):253-261
准噶尔造山带是乌拉尔—蒙古造山带的重要组成部分。该区的碰撞造山作用主要发生在石炭纪和二叠纪,并经历了先挤压后伸展的演化过程。区内的金等矿床主要就位于晚石炭世—二叠纪,集中分布在碰撞造山作用较强烈的地带,矿床形成于碰撞作用的挤压—伸展转变期。因此该区金等矿床的成矿时间、空间和地球动力学背景等与碰撞造山作用发生的时间、空间及动力学背景完全吻合,表明适于用碰撞造山成矿模式指导找矿和研究。而该区矿床的实际分布也确与碰撞造山成矿模式完全一致。  相似文献   
267.
中条山区前寒武纪铜矿床地质历史演化及成矿年代   总被引:1,自引:0,他引:1  
中条山区铜矿床是在中条古裂谷地质构造环境中演化形成的。本文从涑水杂岩期-绛县期-中条期-西阳河期等不同时代地质历史演化,分别探讨了中条山区不同类型铜矿床时空分布和成因上的内在联系。它们早期形成的矿源层受不同时代的层位和岩性控制,但在后期的2000~2100Ma和1800~1900Ma较大规模的构造-热事件,对不同类型铜矿床进行了叠加和改造,使铜质进一步富集,最终形成工业矿床  相似文献   
268.
王学佑 《铀矿地质》1996,12(3):149-155
本文从郯庐断裂带整体地质构造特征出发,应用板块构造理论和遥感技术、地质调查、物化探等综合研究方法,初步提出郯庐断裂带应归属于东亚大陆古岛孤-新裂谷式巨型构造系统,它与现代西太平洋岛弧具有“相对应性”及“等结性”控制金矿成矿集中区的新认识,并据此探索和总结了金矿(含其他矿产)的成矿规律,为寻找“招掖”式金矿进行成矿前景预测。  相似文献   
269.
Along both sides of the Tancheng-Lujiang Fracture Zone in eastern China, a series of mantle source gas pools constitute a massive-scale tectonic accumulation zone in NNE direction, with the mantle geochemical characteristics of high concentrations of C02 and He, high3He/4He-40Ar/36Ar ratio system and high δ13Coo2 ratios (the main frequency, -3.4%— 4.6%), showing no difference from the tectonic framework of the area. In the area, the tectonic environment is a rift formed as a result of diapiric mantle injection and crust thinning to form graben-type basins and lithospheric fractures. The mantle-derived volcanic rocks and inclusions are well-developed and a high geothermal zone (mantlesource) exists in the area. The characteristics of the three components (solid, liquid and gas) of mantle, concentrated all over the same tectonic space zone, show that the rift system is of a good tectonic environment or passage for mantle degassing and gas migration. The main types of the gas pools are volcano, fault-block, anticline, buried hill and so on, but most of them are combination traps closely related with fracture. For the mantle source gas pools, rift is an optimum tectonic region, and nearby lithospheric fracture, mantle source volcanic rocks or basement uplifts are a favourable structural location when reservoir-caprock association develops.  相似文献   
270.
攀西裂谷带及其邻区的现代构造应力场特征   总被引:1,自引:0,他引:1  
本文主要根据近30多年来,发生在攀西裂谷地区地震的断层面解,辅以其它手段的资料,讨论该地区的现代构造应力场。结果表明,攀西裂谷带的受力状态已由过去的拉张变为现今的压扭,是一条消亡的古裂谷带。  相似文献   
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