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121.
Shoreface sandstone deposits within the Early Carnian part of the Snadd Formation of the Norwegian Barents Sea can be traced for hundreds of kilometres in the depositional strike direction and for tens of kilometres in the depositional‐dip direction. This study uses three‐dimensional seismic attribute mapping and two‐dimensional regional seismic profiles to visualize the seismic facies of these shoreface deposits and to map their internal stratigraphic architecture at a regional scale. The shoreface deposits are generally elongate but show variable width from north‐east to south‐west, which corresponds to a sediment source in the northern part of the basin and a southward decrease in longshore sediment transport. The Snadd Formation presents an example of how large‐scale progradational shoreface deposits develop. The linear nature of its shoreface deposits contrasts with more irregular, cuspate wave‐dominated deltaic shorelines that contain river outlets, and instead implies longshore drift as the main sediment source. In map view, discrete sets of linear features bounded by truncation surfaces scale directly to beach ridge sets in modern counterparts. The shoreface deposits studied here are characteristic in terms of scale and basin‐wide continuity, and offer insight into the contrast between shallow marine deposition under stable Triassic Greenhouse and fluctuating Holocene Icehouse climates. Findings presented herein are also important for hydrocarbon exploration in the Barents Sea, because they describe a hitherto poorly understood reservoir play in the Triassic interval, wherein the most prominent reservoir plays have so far been considered to be found in channelized deposits in net‐progradational delta‐plain strata that form the topsets to shelf‐edge clinoforms. The documented presence of widespread wave‐dominated shoreface deposits also has implications for how the relative importance of different sedimentary processes is considered within the basin during this period.  相似文献   
122.
侯江龙  王登红 《地质论评》2016,62(S1):387-388
锂是银白色的、自然界最轻的金属,广泛应用于纺织、陶瓷、冶金、核能、新能源等领域,有“高能金属”、“21世纪的能源金属”之称。锂矿床按成因类型可分为内生和外生两种类型,内生型可具体分为花岗伟晶岩型、花岗岩型、云英岩型和岩浆热液型,外生型则包括盐湖型及地下卤水型(赵一鸣等,2004)。伟晶岩型锂矿主要开采锂辉石、透锂云母、锂云母、磷铝锂石等,是锂矿资源的重要来源。  相似文献   
123.
利用广东厚婆坳整装勘查区内的典型矿床、重点工作区、其他矿床的潜力评价成果,建立了8个定量预测模型区;然后通过综合信息分析,按热液型、斑岩型2种矿床类型在厚婆坳整装勘查区分别圈定并优选了最小预测区,进行资源量估算;最后对最小预测区进行归并整理,形成综合预测区,在此基础上提出了勘查部署建议。  相似文献   
124.
本文基于热年代学理论,利用锆石和磷灰石裂变径迹测年数据及对磷灰石热史的模拟,分析探讨金川铜镍矿床在中新生代的抬升冷却过程,认为金川超基性岩体自中生代以来一直处于持续的冷却抬升阶段,且在中侏罗世和晚白垩世早期经历了两期快速的抬升冷却事件,推断此事件与青藏高原后期活动时间相对应,证明金川岩体受到该事件的远程效应波及,致使该矿床遭受了一定的改造。  相似文献   
125.
矿床的成矿系列(简称成矿系列)是矿床学领域的一个理论性概念,由五级序次组成。矿床成矿系列是成矿系列的第二序次,是成矿系列的核心部分。矿床成矿系列的划分,以岩浆、沉积、变质、表生和流体(非岩浆-非变质成因流体)5种成矿作用为基本原则,以成矿地质环境为基础,结合成矿的时段与形成的矿床组合进行划分。本文对矿床成矿系列时空范围、时空组成结构、矿化强度与演化、成矿区带内不同矿床成矿系列之间的演化、叠加和复合作用及对指导找矿的意义进行了论述。  相似文献   
126.
本溪县杨家堡子金矿赋存于早古生代奥陶系马家沟组及寒武系凤山组内,矿体主要围岩为变质程度轻微的碎屑沉积岩及碳酸盐岩,矿体受断裂构造控制,金矿物及载金矿物——黄(褐)铁矿均呈稀疏浸染状分布,金成矿与燕山期二长花岗岩关系密切,具有"卡林型"金矿床地质特征。认为杨家堡子金矿是与早古生代寒武系、奥陶系地层、岩性、岩相(变质相)、断裂构造及燕山期岩浆活动有成因联系的金矿床,对矿体的矿物组合进行分析,初步确定矿化成因应属低温热液型金矿床。  相似文献   
127.
"罗布泊超大型卤水鉀矿"的发现,是中国众多地学科学家40年探寻预测的。王弭力研究员及其团队,于1995年秋首次踏进罗布泊"罗北凹地",当年找到4356万t优质卤水鉀矿;经五年科研和勘探,查明儲量达2.5亿t、为超大型卤水鉀矿。理论创新,成为完成科硏和勘探的关键,加速了百万吨级"罗钾公司"硫酸钾肥生产成功投产。古丝绸之路上生命回归、一颗新星"罗布泊"镇诞生,"百年罗钾"资源保障科研探钾即将启动,中国几代"钾盐人"的梦想成真。  相似文献   
128.
位于扬子陆块西缘与西南三江造山带结合部位的乡城-丽江地区,北起四川乡城经云南格咱南至丽江地区,在印支期斑岩铜矿带上新发现叠加了燕山期斑岩Mo多金属成矿作用,形成乡城-丽江斑岩Mo矿带。受印支期古特提斯洋盆闭合后地壳缩短与加厚的影响,燕山晚期下地壳发生拆沉作用,导致后碰撞型花岗质岩浆侵位,发育了Mo多金属成矿作用,并构成斑岩成矿系统。岩石地球化学特征表明,燕山晚期含矿斑岩具高硅(SiO_2=66.29%~79.36%)、高碱(K_2O+Na_2O=5.07%~9.24%)、富钾(K_2O/Na_2O=0.71~2.13)的特点,属于高钾钙碱性岩石系列。岩石富集轻稀土元素(LREE),具有负δEu异常;微量元素具富集大离子亲石元素K、U、Th、Rb,亏损高场强元素Nb、Ta、P、Ti的特征;大离子亲石元素的富集和Nb、Ta等高场强元素的亏损,表明形成这些岩体的岩浆主要来自地壳,具有造山带花岗岩的地球化学特征。区内代表性含矿斑岩相似的地球化学组成及分布特征表明,乡城-丽江结合带燕山晚期的成矿斑岩是由同源岩浆分异演化而来。成矿系统的分析表明,燕山晚期主要含矿斑岩成矿物质以壳源为主,但具有少量地幔物质的加入,成岩成矿物质来源具有相似或一致的源区特征。在成矿元素的组合上,由成矿斑岩体向外带表现出W、Mo→W、Mo、Cu→Pb、Zn、Ag的演化趋势。研究表明,本区燕山晚期花岗岩浆的侵入及Mo多金属成矿作用并不是独立或个别的成矿事件,而是纵跨义敦岛弧、甘孜-理塘结合带及扬子西缘的带状成矿活动,属于区内与燕山晚期岩浆侵入作用相关的统一斑岩成矿系统。  相似文献   
129.
In order to assess the controlling factors on the evolution of a shelf margin and the timing of sediment transfer to deep waters, a seismic stratigraphic investigation was carried out in the Eocene interval of northern Santos Basin, offshore Brazil. The studied succession configures a complex of prograding slope clinoforms formed in a passive margin and encompasses five seismic facies and their respective depositional settings: shelf-margin deltas/shorefaces, oblique slope clinoforms, sigmoidal slope clinoforms, continental to shelfal deposits and mass-transport deposits. These are stratigraphically arranged as seven depositional sequences recording a total shelf-edge progradation of about 35 km and a progradation rate of 1,75 km/My. Two main types of sequences can be recognized, the first one (type A) being dominated by oblique slope clinoforms and shelf-margin deltas/shorefaces in which shelf-edge trajectories were essentially flat to descending and extensive sandy turbidites were deposited on the foreset to bottomset zones. Sequences of this type are dominated by forced-regressive units deposited during extensive periods of relative sea-level fall. Type B comprises an upper part represented by aggradational shelfal deposits and a lower part composed of mass-transport deposits and high-relief sigmoidal clinoforms with descending shelf-edge trajectory. Steep slump scars deeply cut the shelfal strata and constitutes the boundary between the two intervals observed in type B sequences. Sandy turbidites occur at the same frequency in both forced- and normal-regressive units but are more voluminous within forced-regressive clinoforms associated with shelf-margin deltas/shorefaces. Major slope failures and mass-transport deposits, by the other hand, occurred exclusively in type B sequences during the onset of sea-level fall and their volume are directly related to the thickness of the shelfal sediments formed during the pre-failure normal regressions.  相似文献   
130.
《Resource Geology》2018,68(1):51-64
Preservation conditions are very important for mineral systems and a suitable exhumation process is critical for endogenetic deposits, especially for those deposits formed in orogenic settings, where deposits are inclined to erode away due to strong uplift. The G uojialing batholith, intruding into the L inglong granites and the J iaodong G roup right before regional gold mineralization, is one of the most important gold ore‐hosting M esozoic intrusions in the J iaobei terrane. Gold deposits and the intrusion together underwent similar tectonothermal evolutionary processes. Exhumation and denudation process of the G uojialing granodiorite was constrained by biotite geobarometry and apatite fission track (FT ) analysis. Biotite geobarometric data yields an emplacement depth of 3.0 km, while denudation since 110 M a was calculated from the FT data at about 2.7 km. FT inverse modeling revealed a rapid uplift since ca 100 Ma. Compared with the gold ore‐forming depth which is confined between 2.5 and 9.5 km by fluid inclusion studies, great gold potential in the depths is inferred in the J iaobei terrane. Our result is consistent, to some extent, with the hypothesis of a M esozoic paleoplateau in E ast C hina.  相似文献   
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