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991.
依据合肥市国土资源局电子政务平台建设的发展现状和实际需求,结合国内外电子政务平台建设的前沿技术,讨论基于B/S结构的电子政务平台建设方法在合肥市国土资源局电子政务平台建设和业务办文系统开发上的应用意义和运行效率,通过与原有基于C/S结构的电子政务平台的应用系统进行对比,完成系统性能的分析和评价。 相似文献
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基于SGS的城市地理信息公共平台建设及应用 总被引:1,自引:1,他引:0
依托城市基础测绘成果数据,按照<地理信息公共服务平台>、<地理空间框架基本规定>等相关标准及规范,经过数据提取、重组、加工并制作了面向政务服务的地图产品数据;基于超图数字城市地理信息公共服务平台SGSV6.0,快速搭建了广州市政务基础地理信息共享服务平台,使得政府部门可以通过在线浏览、简单系统定制、地图API接口开发和... 相似文献
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Neoproterozoic geologic and geotectonic processes were of utmost importance in forming and structuring the basement framework of the South-American platform. Two large domains with distinct evolutionary histories are identified with respect to the Neoproterozoic era: the northwest-west (Amazonian craton and surroundings) and the central-southeast (the extra-Amazonian domain).In the first domain, Neoproterozoic events occurred only locally and were of secondary significance, and the geologic events, processes, and structures of the pre-Neoproterozoic (and syn-Brasiliano) cratonic block were much more influential. In the second, the extra-Amazonian domain, the final evolution, structures and forms are assigned to events related to the development of a complex net of Neoproterozoic mobile belts. These in turn resulted in strong reworking of the older pre-Neoproterozoic basement. In this domain, four distinct structural provinces circumscribe or are separated by relatively small pre-Neoproterozoic cratonic nuclei, namely the Pampean, Tocantins, Borborema and Mantiqueira provinces. These extra-Amazonian provinces were formed by a complex framework of orogenic branching systems following a diversified post-Mesoproterozoic paleogeographic scenario. This scenario included many types of basement inliers as well as a diversified organization of accretionary and collisional orogens. The basement inliers date from the Archean to Mesoproterozoic periods and are different in nature. The escape tectonics that operated during the final consolidation stages of the provinces were important to and responsible for the final forms currently observed. These latest events, which occurred from the Late Ediacaran to the Early Ordovician, present serious obstacles to paleogeographic reconstructions.Two groups of orogenic collage systems are identified. The older system from the Tonian (>850 Ma) period is of restricted occurrence and is not fully understood due to strong reworking subsequent to Tonian times. The second group of orogenies is more extensive and more important. Its development began with diachronic taphrogenic processes in the Early Cryogenian period (ca. 850–750 Ma) and preceded a complex scenario of continental, transitional and oceanic basins. Subsequent orogenies (post 800 Ma) were also created by diachronic processes that ended in the Early Ordovician. More than one orogeny (plate interaction) can be identified either in space or in time in every province. The orogenic processes were not necessarily synchronous in different parts of the orogenic system, even within the same province. This particular group of orogenic collage events is known as the “Brasiliano”.All of the structural provinces of the extra-Amazonian domain exhibit final events that are marked by extrusion processes, are represented by long lineaments, and are fundamental to unraveling the structural history of the Phanerozoic sedimentary basins. 相似文献
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《Geodinamica Acta》2013,26(1-3):127-143
The western part of the Polish Outer Carpathians is built up from the thrust, imbricated Upper Jurassic-Neogene flysch deposits. The following Outer Carpathian nappes have been distinguished: Magura Nappe, Fore-Magura group of nappes, Silesian, Subsilesian and Skole nappes. Interpretation of seismic and magnetotelluric survey from the region South of Wadowice, allows observation of relationship between basement and flysch nappes in the Outer Carpathians. It also allows identification of dislocation cutting both flysch nappes and their basement. All the Outer Carpathian nappes are thrust over the southern part of the North European Platform. The platform basement is composed of older Precambrian metamorphic rocks belonging to the Bruno-Vistulicum terrane. Sedimentary cover consists of Paleozoic, Mesozoic and Neogene sequences. The characteristic features of this boundary are horsts and troughs of general direction NW-SE, turning W-E. Faults cutting only the consolidated basement and the Paleozoic cover were formed during the Hercynian Orogeny in the Carboniferous and the Early Permian. Most of the older normal faults were covered by allochtonous flysch nappes forming thus the blind faults. During the last stage of the geodynamic development the Carpathians thrust sheets moved towards their present position. Displacement of the Carpathians northwards is related to development of dextral strike-slip faults of N—S direction. The orientation of this strike-slip fault zones zone more or less coincides with the surface position of the major faults perpendicular to the strike of the Outer Carpathian thrustsheets. The huge fault cuts formations from the Paleozoic basement through the flysch allochton between the boreholes in Sucha Beskidzka area. The displacement of nappes of the Carpathian overthrust and diapiric extrusion of plastic formations of the lower flysch units occurred along this fault. 相似文献
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提要: 通过对湘西南地区主动侵位的岛弧型花岗闪长岩、二长花岗岩的锆石LA-ICP-MS与SHRIMP U-Pb同位素年代学研究,分别获得加权平均年龄为(835.6±6.7)Ma、(840±8)Ma,属新元古代。对岩体围岩钙质板岩夹灰岩建造的剖面研究和同位素年代学分析及区域对比,确认其属于新元古代“南华纪”板溪期沉积——高涧群,与下伏冷家溪群连续沉积,底界时限应大于835 Ma。指出高涧群及其相当层位分布区在沉积盆地演化过程中,可能没有经历由俯冲造山—伸展裂谷盆地的完整演化过程,盆地从板片俯冲形成岩浆弧的初期演化即已停止,形成所谓的残余盆地,并沿从江—溆浦—双峰—衡阳—萍乡一线形成陡坡边缘盆地古地理格架,与北西侧伸展形成的断阶式陆坡相接,接受来自北西侧的陆缘碎屑及其改造型重力流沉积,完成这一转换过程的时间点在830 Ma左右。 相似文献
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