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论中—下扬子“一盖多底”格局与演化   总被引:1,自引:0,他引:1  
本文是“长江中小下游及邻区构造地质图1/100万”(85-901-03)的研究成果。在区内划分出4种变质基底,结合深部资料确定4个构造—地层地体.讨论了各自组成、历史和相互拼接时代,强调了晚元古代普宁运动在地质发展中的重大意义。认为晋宁运动Ⅰ幕(1000-900Ma)是杨子区内各地体向崆岭—董岭古陆拼贴的增生期.扬子地块形成;晋宁运动Ⅱ幕(800-700Ma)是华北—扬子—华夏地块对接时代.形成古中国大陆。古生代以来为盖层发育阶段。提出中下扬子的“一盖多底”的地壳结构。纵览扬子地块地质发展和演化.可分为四个历史时期:基底发育与古中国大陆形成期;盖层发育与加里东运动;欧亚大陆形成与印支运动;陆缘—板内变形与燕山运动。  相似文献   
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The paper presents the results of year-long measurements of radon (222Rn) concentration inside 129 buildings in Poland in relation to the geological conditions of their foundation. The authors took into account the division of the country into tectonic units, as well as the lithology of the rocks forming the bedrock of these buildings. As expected, the highest value of mean annual 222Rn concentration (845 Bq/m3) was recorded in a building situated in the area of the Sudetes, while the highest geometric mean (characteristic of the expected log-normal data distribution) was calculated based on measurements from buildings located within the East-European craton, in the area of Mazury-Podlasie monocline, where it reached 231 Bq/m3. Such results reflect geological conditions - the occurrence of crystalline rocks (especially U- and Ra-enriched granites and orthogneisses) on the surface in the Sudetes, and of young post-glacial sediments containing fragments of Scandinavian crystalline rocks, also enriched with U and Ra, in the area of Mazury-Podlasie monocline. However, the least expected result of the investigations was finding out that, contrary to the hitherto widespread belief, none of the major tectonic units of Poland can be excluded from the list of those containing buildings with mean annual 222Rn concentration exceeding 200 Bq/m3. The mean annual concentration of radon for all the buildings were much higher than the mean concentration value (49.1 Bq/m3) of indoor radon in Poland quoted so far. These results cast a completely new light on the necessity to perform measurements of radon concentration in residential buildings in Poland, no more with reference to small areas with outcrops of crystalline rocks (especially the Sudetes, being the Polish fragment of the European Variscan belt), but for all the major tectonic units within Poland.  相似文献   
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津巴布韦铁矿层分布普遍,是组成太古界津巴布韦克拉通绿岩带地层常见岩性单元,其岩石特征类似于"硫化物相"含铁建造层,实际上是一种伴有硅化和硫化物矿化的剪切带.过去这种构造成因的铁矿层被认为是一种原始沉积岩层,但从野外露头上可明显辨别出呈交织状分布的片理化带、褶皱变形带、石香肠构造和糜棱岩带;区域上铁矿层与层理或片理相交切,岩层呈交织状分布,同一岩层单元会重复出现.在花岗岩底辟上升作用导致岩石发生变形之前,一系列逆推断层使得原始火山沉积岩单元层产生水平伸展、叠瓦状构造推覆以及岩层重复出现.因此绿岩带地层中这种包含有构造型铁矿层的"馅饼状"岩层模式,愈来愈成为地质工作者研究的焦点.  相似文献   
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During Late Proterozoic times, the Archaean Central African craton was affected by trough faulting which led to the formation of grabens, the Sangha aulacogen being the main structure of this type in the studied area. This transverse basin connects with other basins on the northern and south-western borders of the craton. During the Cryogenian, this network of basins was filled with fluvio-deltaic and lacustrine periglacial deposits. The glacio-eustatic transgression in Neoproterozoic III (end-Proterozoic) times flooded extensive areas of shelf on the northern edge of the craton, leading to the development of carbonate sedimentation in a broad outer shelf environment associated with nearshore barriers and evaporitic lagoons. These facies are similar to those developed in the West Congolian Schisto-calcaire (shale-limestone) ramp succession. The North-Central African ramp succession (sediment slope) contains an example of tidal rhythmites in vertical accretion, which occurs beneath the barrier deposits on the subtidal outer shelf. Mathematical analysis of the bedding pattern yields a period of 29–30 days for the lunar month, a result which is in agreement with astrophysical evidence for this epoch (i.e. 650 Ma ago). Major subsidence and seismic activity on this gently sloping platform, associated with the proximity of the Sangha aulacogen, caused the triggering of carbonate turbidites and mass flow deposits. The proliferation of microbial mats under euphotic conditions on an extensive shelf led to the build-up of a carbonate platform. During early Neoproterozoic III times, the West Congolian and North-Central African ramps prograded northwards and southwards, respectively, into the Sangha aulacogen. The sea at that time was restricted to a long graben-like basin, while a remaining area of marine sedimentation persisted into the Palaeozoic. Thus the pattern of end-Proterozoic carbonate sedimentation on the borders of the Central African craton can be interpreted in terms of an overall gently sloping ramp model with progradation converging towards the Sangha aulacogen.  相似文献   
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