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51.
The microstructures, major‐ and trace‐element compositions of minerals and electron backscattered diffraction (EBSD) maps of high‐ and low‐Cr# [spinel Cr# = Cr3+/(Cr3++Al3+)] chromitites and dunites from the Zedang ophiolite in the Yarlung Zangbo Suture (South Tibet) have been used to reveal their genesis and the related geodynamic processes in the Neo‐Tethyan Ocean. The high‐Cr# (0.77‐0.80) chromitites (with or without diopside exsolution) have chromite compositions consistent with initial crystallization by interaction between boninitic magmas, harzburgite and reaction‐produced magmas in a shallow, mature mantle wedge. Some high‐Cr# chromitites show crystal‐plastic deformation and grain growth on previous chromite relics that have exsolved needles of diopside. These features are similar to those of the Luobusa high‐Cr# chromitites, possibly recycled from the deep upper mantle in a mature subduction system. In contrast, mineralogical, chemical and EBSD features of the Zedang low‐Cr# (0.49‐0.67) chromitites and dunites and the silicate inclusions in chromite indicate that they formed by rapid interaction between forearc basaltic magmas (MORB‐like but with rare subduction input) and the Zedang harzburgites in a dynamically extended, incipient forearc lithosphere. The evidence implies that the high‐Cr# chromitites were produced or emplaced in an earlier mature arc (possibly Jurassic), while the low‐Cr# associations formed in an incipient forearc during the initiation of a new episode of Neo‐Tethyan subduction at ~130‐120 Ma. This two‐episode subduction model can provide a new explanation for the coexistence of high‐ and low‐Cr# chromitites in the same volume of ophiolitic mantle.  相似文献   
52.
构造应力场转换的成矿地球化学响应   总被引:10,自引:0,他引:10  
以剪切带型金矿为例,基于对中国东部胶东西北部地区及其典型金矿田、金矿床构造应力场与成矿地球化学场的详细研究结果,初步阐释了它们在多重时-空间尺度上的耦合关系。区域尺度上,应力极值区不利于成矿,金矿床就位于应力梯级带,尤其是不同方向应力梯级带的交汇部位。矿田尺度上,成矿物质有从应力高值区向低值区运移的趋势,成矿主期应力梯度的增大有利于成矿元素进一步浓集,应力梯级的强烈变化地段(或时段)往往形成金属元素的大量堆积。矿床尺度上,成矿物质的运移受不同方向剪应力梯级带的叠加影响,金属元素就位于NE和NW向应力梯级带交汇部位缓坡带一侧的次级梯级带之上。多重时-空尺度成矿动力学的深入研究,将可能揭示出这种非线性效应的丰富内涵。  相似文献   
53.
目前,世界核电已经历了半个多世纪的发展历程,已经有了非常丰富的核电发展经验,事实证明了核能是一种安全、清洁、高效的能源。但从核电发展初到现在,也出现了不少核电事故。为了让核电工作者更清楚地了解历史核电事故概况,了解核电事故产生的影响以及正确看待核电事故、核电发展,通过调研,收集大量资料,详细统计了历史上发生的主要核电事故,对其事故原因及对核电发展影响进行简略分析。研究指出历史核电事故主要原因是因人失误,但早期事故和核电设计也有关;另外,核电事故给世界带来了巨大的负面影响,但同时也是推动核电安全发展的重要推手,每次核电事故发生后都是核电安全提升一个新台阶的开始,最终促使核电趋向越来越安全。  相似文献   
54.
“余太翠”玉因产于内蒙古巴彦淖尔市乌拉特前旗大余太地区而得名。采用偏光显微镜、X射线粉末衍射仪、电子探针等研究方法,对白色、绿色、黄色、紫色系列的“佘太翠”玉样品的矿物组成、化学成分、显微结构和呈色机理等进行了测试与研究。结果表明,“佘太翠”玉视颜色品种不同,组成矿物略有差异。除白色品种的“余太翠”玉以白云石(质量分数高于60%)为主要矿物外,其它颜色品种的均以石英为主要矿物,石英的质量分数约占80%以上。“佘太翠”玉的次要矿物主要有云母、方解石、长石、赤铁矿、叶蜡石、伊利石、高岭石等。绿色“佘太翠”玉在查尔斯滤色镜下变红,主要由铬云母致色,属东陵石;白色品种“佘太翠”玉为白云石玉,而黄色的及其它颜色的品种为石英岩玉。  相似文献   
55.
地倾斜连续观测是地壳形变观测研究中重要内容。汶川8.0级地震前,布设在四川德阳金河测点的新型BSQ型数字垂直摆倾斜仪观测到了明显的地形变异常现象。分析其观测结果可知,汶川8.0级地震前约半月时间内德阳金河测点的地倾斜运动速度较过去的平均运动水平提高了数十倍,且震前地表快速倾斜的方向在N25°W左右。除此之外,德阳金河BSQ型数字垂直摆倾斜仪测点还观测到较为完整的,对应于可以反映地表应力集中、释放过程的震前地表破裂过程。上述现象为今后研究强震孕育机理提供了重要的信息。介绍与分析了布设在龙门山断裂带附近的其它类型地倾斜仪在震前的观测结果。事实证明,BSQ型数字垂直摆倾斜仪在强震前的浅表过程监测中具有重要意义,值得在今后的地震前兆台网工作中进行推广。  相似文献   
56.
遵义地区位于扬子板块上扬子台地中部,下、中三叠统发育良好,夜郎组、茅草铺组、松子坎组及狮子山组地层出露齐全。其中遵义巷口剖面是扬子台地区的经典下-中三叠统地层剖面之一,其产双壳类化石尤为丰富,是该沉积相区生物地层和生态系演化研究的关键剖面。迄今已发现双壳类15属55种(亚种)(本次研究鉴定出12属35种),多数属为世界性的分布类型,由下向上可划分出6个双壳类化石带:Pteriaussurica varibilis-Eumorphotis venetiana组合带,Claraiaconcentrica-Claraia wangi组合带,Eumorphotis multiformis顶峰带,Entolium discites microtis顶峰带,Myophoria(Costatoria)goldfussi mansuyi-Asoellaillyrica组合带和Plagiostoma radiata-Palaeoli ma subcostata组合带。其双壳类生态类群的演变与华南其他地区具有一致性。  相似文献   
57.
玉树地震地表变形InSAR观测及初步分析   总被引:1,自引:2,他引:1  
采用玉树MS7.1级地震前后两期PALSAR雷达数据(震前2010年1月15日, 震后4月17日)进行了“两轨+DEM”的InSAR处理, 获得了高质量的差分干涉雷达条纹图像和同震变形场。参考该区的基本构造格局, 根据干涉图像的变形范围、变形量和变形梯度可以初步判断:(1)玉树地震诱发了总体上NWW走向, 全长约70km地表陡变带, 陡变带南段位错及陡变梯度较大, 会在地表产生地表破裂;而西北部4段位错及陡变梯度较小, 不易在地表诱发破裂, 但可能在地下一定层位产生了隐伏破裂带;(2)陡变带两侧的雷达视线向运动方向预示发震断裂以左旋走滑运动为主;(3)宏观震中位于玉树县城西北约16km的地表陡变带上。D-InSAR解译结果与中国地震台网中心震源机制解、野外发震断裂调查结果及地貌特征吻合较好, 证明了干涉雷达解译成果的可靠性, 可以为准确定位玉树地震发震断裂地表行迹和快速评定震害损失提供有力的技术支持。   相似文献   
58.
李鹏  刘波  叶茂  刘剑剑  郝朋  熊攀  张鹏飞 《中国地质》2022,49(2):542-557
[研究目的]巴音戈壁盆地中新生代主要经历了早白垩世断陷、断坳转折以及晚白垩世坳陷发育阶段,多期次构造改造对铀成矿的制约尚不清晰,影响下一步的找矿预测工作.[研究方法]本文选择盆地中南部凹陷带为研究区,综合以往成果认识与地质剖面对比研究,系统研究了凹陷构造样式、构造演化对沉积充填的影响.[研究结果]在早白垩世中晚期、晚白...  相似文献   
59.
Oil and gas shows are rich in drilling wells in Kaiping sag,however,large oilfield was still not found in this area.For a long time,it is thought that source rocks were developed in the middle-deep lacustrine facies in the Eocene Wenchang Formation,while there is no source rocks that in middle-deep lacustrine facies have been found in well.Thickness of Wenchang Formation is big and reservoirs with good properties could be found in this formation.Distribution and scale of source rock are significant for further direction of petroleum exploration.Distribution characterization of middle-deep lacustrine facies is the base for source rock research.Based on the sedimentary background,fault activity rate,seismic response features,and seismic attributes were analyzed.No limited classification method and multi-attributes neural network deep learning method were used for predicting of source rock distribution in Wenchang Formation.It is found that during the deposition of lower Wenchang Formation,activity rate of main fault controlling the sub sag sedimentation was bigger than 100 m/Ma,which formed development background for middle-deep lacustrine facies.Compared with the seismic response of middle-deep lacustrine source rocks developed in Zhu I depression,those in Kaiping sag are characterized in low frequency and good continuity.Through RGB frequency decomposition,areas with low frequency are main distribution parts for middle-deep lacustrine facies.Dominant frequency,instantaneous frequency,and coherency attributes of seismic could be used in no limited classification method for further identification of middle-deep lacustrine facies.Based on the limitation of geology knowledge,multi-attributes of seismic were analyzed through neural network deep learning method.Distribution of middle-deep lacustrine facies in the fourth member of Wenchang Formation is oriented from west to east and is the largest.Square of the middle-deep lacustrine facies in that member is 154 km2and the volume is 50 km3.Achievements could be bases for hydrocarbon accumulation study and for exploration target optimization in Kaiping sag.  相似文献   
60.
Due to its structure,rock and mineral composition,fluid and other factors,the granite Buried Hill Reservoir is highly heterogeneous with a complex longitudinal structure and a reservoir space made up of a combination of dissolution pores and fractures.This paper is based on current understanding of tectonic evolution in the northern part of the South China Sea,in conjunction with the seismic phase characteristics.It is determined that the meshed fault system was formed by three stages of movement-tectonic compression orogeny during the Indochinese epoch,strike-slip compression-tension during the Yanshanian Period,early fracture extension activation during the Himalayan-which controlled the distribution of the Buried Hill Reservoir.Drilling revealed two types of buried hills,faulted anticline and fault horst,their longitudinal structure and the reservoir space type being significantly different.The mineral composition,reservoir space and diagenetic characteristics of the reservoir rocks and minerals were analyzed by lithogeochemistry,micro section and logging etc.,it thus being determined that the Mesozoic rocks of the Songnan Low Uplift in the Qiongdongnan Basin are mainly composed of syenogranite,granodiorite,monzogranite,which is the material basis for the development of the Buried Hill Reservoir.The content of felsic and other brittle minerals is more than 70%,making it easy for it to be transformed into fractures.At the same time,the weathering resistance of granodiorite and monzogranite is weaker than that of syenogranite,which is easily weathered and destroyed,forming a thick sand gravel weathering zone.With increasing depth of burial,weathering and dissolution gradually weaken,the deep acidic fluid improving the reservoir property of internal fractures and expanding the vertical distribution range of the reservoirs.The research results lay a foundation for the exploration of Buried Hill in the deep-water area of the Qiongdongnan Basin.  相似文献   
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