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111.
112.
甘肃北祁连山寒山金矿床控矿条件与成矿模式 总被引:5,自引:2,他引:5
通过对该矿床成矿地质背景、矿床地质特征、成矿标志及控矿因素等诸方面分析,指出成矿物质主要来源于下奥陶统岛弧钙碱性安山—英安质火山碎屑岩,矿体受多级断裂裂隙系统的控制,且主要定位于韧—脆性剪切带内的强片理化带中,成矿作用发生于碰撞造山作用挤压—伸展转变期,花岗闪长岩、闪长岩等造山期中酸性岩体侵位期间及其以后,深部岩浆房或中酸性侵入体主要为矿床形成提供了热驱动力,矿床成因类型属与火山岩有关的构造蚀变岩型金矿床。在此基础上,总结归纳了该矿床的成矿模式与综合找矿标志。 相似文献
113.
114.
There are 54 sites employed by ITRF2000 for ITRF2000 orientation. The deficiencies are obvious. First, these sites cannot well represent the rotation rate of the earth crust because there is no selected site in five out of fourteen tectonic plates and three of fourteen plates only have one site each. Second, the total angular momentum of the crust is non-vanishing in ITRF2000, even though it is declared that No Net Rotation (NNR) with respect to NNR-NUVEL1A is imposed on ITRF2000 construction according to the documentations of ITRF2000. So the NNR condition in conventional terrestrial reference system (CTRS) realization cannot be satisfied in ITRF2000. In this paper, the criteria of site selection for estimating the Euler vectors are suggested; the Tisserand system constraint equation in ITRF construction is derived; and as a product, the global plate motions can be obtained from the ITRF2000 construction. 相似文献
115.
The definition of active block is given from the angles of crustal deformation and strain. The movement and strain parameters of active blocks are estimated according to the unified velocity field composed of the velocities at 1598 GPS stations obtained from GPS measurements carried out in the past years in the Chinese mainland and the surrounding areas. The movement and strain conditions of the blocks are analyzed. The active blocks in the Chinese mainland have a consistent E-trending movement component, but its N and S components are not consistent. The blocks in the western part have a consistent N-trending movement and the blocks in the eastern part have a consistent S-trending movement. In the area to the east of 90°E, that is the area from Himalayas block towards NE, the movement direction of the blocks rotates clockwisely and the movement rates of the blocks are different. Generally, the movement rate is large in the west and south and small in the east and north with a difference of 3 to 4 times between the rates in the west and east. The distributions of principal compressive strain directions of the blocks are also different. The principal strain of the blocks located to the west of 90oE is basically in the SN direction, the principal compressive strain of the blocks in the northeastern part of Qingzang plateau is roughly in the NE direction and the direction of principal compressive strain of the blocks in the southeastern part of Qingzang plateau rounds clockwisely the east end of Himalayas structure. In addition, the principal strain and shear strain rates of the blocks are also different. The Himalayas and Tianshan blocks have the largest principal compressive strain and the maximum shear strain rate. Then, Lhasa, Qiangtang, Southwest Yunnan (SW Yunnan), Qilian and Sichuan-Yunan (Chuan-Dian) blocks followed. The strain rate of the blocks in the eastern part is smaller. The estimation based on the stain condition indicates that Himalayas block is still the area with the most intensive tectonic activity and it shortens in the NS direction at the rate of 15.2±1.5 mm/a. Tianshan block ranks the second and it shortens in the NS direction at the rate of 10.1±0.9 mm/a. At present, the two blocks are still uprising. It can be seen from superficial strain that the Chinese mainland is predominated by superficial expansion. Almost the total area in the eastern part of the Chinese mainland is expanded, while in the western part, the superficial compression and expansion are alternatively distributed from the south to the north. In the Chinese mainland, most EW-trending or proximate EW-trending faults have the left-lateral or left-lateral strike-slip relative movements along both sides, and most NS-trending faults have the right-lateral or right-lateral strike-slip relative movements along both sides. According to the data from GPS measurements the left-lateral strike-slip rate is 4.8±1.3 mm/a in the central part of Altun fault and 9.8±2.2 mm/a on Xianshuihe fault. The movement of the fault along the block boundary has provided the condition for block movement, so the movements of the block and its boundary are consistent, but the movement levels of the blocks are different. The statistic results indicate that the relative movement between most blocks is quite significant, which proves that active blocks exist. Himalayas, Tianshan, Qiangtang and SW Yunnan blocks have the most intensive movement; China-Mongolia, China-Korea (China-Korea), Alxa and South China blocks are rather stable. The mutual action of India, Pacific and Philippine Sea plates versus Eurasia plate is the principal driving force to the block movement in the Chinese mainland. Under the NNE-trending intensive press from India plate, the crustal matter of Qingzang plateau moves to the NNE and NE directions, then is hindered by the blocks located in the northern, northeastern and eastern parts. The crustal matter moves towards the Indian Ocean by the southeastern part of the plateau. 相似文献
116.
117.
诸广—贵东大型铀矿聚集区富铀矿成矿地质条件 总被引:22,自引:2,他引:22
位于南岭中部的诸广—贵东地区是中国花岗岩型铀矿最为重要的大型矿聚集区,已发现数个花岗岩型铀矿田,发育有数十个铀矿床,它们主要集中分布在诸广岩体南部和贵东岩体东部。区内富铀矿的形成与富铀古陆块、深部构造环境、幔涌区强烈深源岩浆活动、挤压向拉伸转变的构造环境、富铀沉积建造及富铀岩体、多期次热液蚀变叠加、高低差异的放射性元素迁移、良好的还原条件和封闭环境等区域地质背景和条件有着十分密切的关系。富铀矿在诸广、贵东两岩体内的集中分布和一系列有利于铀成矿的良好地质背景表明,该区乃至整个南岭范围地质背景相似的地区是铀成矿的有利地区,仍存在着寻找隐伏富大铀矿的巨大潜力。 相似文献
118.
B. P. Harlamov 《Mathematical Geology》2003,35(4):431-449
Zones of increased concentration formed by a solvent flowing from a source are considered. A matehmatical model for forming such zones is proposed. It takes into account that such a zone is composed of a set of independent particles. Hence the distribution of a substance around the source can be explained by movement of an individual particle. In the model this movement is a continuous semi-Markov process with terminal stopping at some random point in space. Parameters of the process depend on the velocity field of the flow. Forward and backward partial differential equations for the distribution density of a random stopping point of the process are derived. The forward equation is investigated for the centrally symmetric case. Solutions of the equation demonstrate either a maximum or a local minimum at the source location. In the latter case a concentric ring around the source is formed. If different substances vary in their absorption rates, they can form separable concentration zones as a family of concentric rings. 相似文献
119.
俯伪斜分段密集采煤法三维有限元数值模拟研究 总被引:3,自引:0,他引:3
俯伪斜分段密集采煤法,作为一种较新的采煤方法,在我国技术上还不很成熟,因此,首次针对京煤集团木城涧矿大台井的地质条件和赋煤状况,通过简化建立三维立体有限元模型,模拟计算了该矿煤层顶底板在开采前后运动变化情况。结果表明:煤层倾角、推采距离和开采巷道数三者是影响煤层顶底板运动规律的重要因素,得到了表征顶底板运动规律的顶底板法向最大应力和法向最大位移与三影响因素关系曲线,详细阐述了三影响因素下的煤层顶底板运动规律;同时,对现场开采中支撑压力大小,特别是在三影响因素下,超前支撑压力的作用范围与应力峰值位置进行了数值计算,并总结了其影响规律;最后,指出了该数值分析方法对现场开采将具有十分重要的应用价值和指导意义。 相似文献
120.
右江盆地裂陷期和坳陷早期的沉积物提供研究区金矿与古油藏的物质与流体。成矿物质与烃类在盆地流体中沿以二叠纪生物礁为核心的断层、浊积岩及不整合面组成的三维输导体系向盆地边缘及二叠纪生物礁的核部运移。由于烃类物质与盐水体系密度的差异,使烃类物质与成矿物质差异聚集于不同的圈闭中形成流体藏。流体矿藏的破坏是导致成矿物质沉淀形成矿床的直接原因。构造活动、风化剥蚀及流体压裂均可导致流体矿藏破坏,其中燕山构造运动是该区流体藏破坏的主要原因,因而亦是该区金矿成矿作用的主要构造营力。本文从盆地流体运移、演化的角度证明,该区古油藏是盆地裂陷与坳陷阶段流体聚集的产物,而矿床则是盆地挤压抬升阶段流体藏破坏、流体散失的结果。研究成果表明,金矿与油气是同一盆地流体在其不同演化阶段的产物,这对在盆地中寻找相同类型的金属矿产意义重大。 相似文献