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991.
侏罗系是准噶尔盆地的主力油气层,资源潜力巨大;但其探明程度却很低,石油探明程度为17.5%,天然气探明程度仅为3%,油气聚集规律十分复杂。为此,本文应用要素匹配成藏模式(T-CDMS)预测了准噶尔盆地侏罗系的有利成藏领域。通过对准噶尔盆地腹部侏罗系四大主控因素(区域盖层(C)、优质沉积相(D)、古隆起(M)和烃源岩(S))的控藏地质特征研究,建立了各个主控因素的控藏定量数学模型。将单因素控藏概率加权平均得到功能要素综合控藏概率指数,依据该指数预测了准噶尔盆地侏罗系目的层在两个不同成藏期的有利成藏区域。结果表明:侏罗系最有利的成藏区域为陆梁隆起地区、车莫古隆起地区和沙北断阶带地区。经验证已发现的油气藏落入预测区带的概率达90%以上。  相似文献   
992.
海拉尔盆地贝尔凹陷苏德尔特油田兴安岭油层为典型的富火山物质的低渗致密砂岩储层。利用岩心观察、薄片鉴定、扫描电镜分析、压汞测试分析等方法,对兴安岭油层储层成岩作用及其控制下的储层质量演化过程进行了系统研究。结果表明,储层目前主要处于中成岩A期,整体经历了压实作用-早期方解石胶结作用/方沸石胶结作用-方沸石溶解/长石溶解作用/高岭石胶结作用/硅质胶结作用-晚期方解石胶结作用。兴安岭油层储层可以划分出强压实成岩相(I)、弱压实-方解石中强胶结成岩相(II)、中等压实-方沸石/长石强溶解成岩相(III)、中等压实-方沸石/长石中强溶解-高岭石强烈充填成岩相(IV)4种类型的成岩相。压实作用和早期方解石胶结作用导致储层孔隙度和渗透率降低,方沸石和长石的溶解作用有效提高储层孔隙度和渗透率,高岭石的沉淀作用导致储层渗透率大大降低。成岩相I和成岩相II储层质量最差,孔隙度和渗透率均较低,为典型的特低孔特低渗致密储层;成岩相III储层质量最好,具有较高的孔隙度和渗透率,为中孔-中低渗储层;成岩相IV储层质量中等,具有较高的孔隙度,但渗透率较低,为中孔(特)低渗储层。  相似文献   
993.
中国钛白粉生产环境效应及可持续发展   总被引:1,自引:0,他引:1  
丁浩  刘玉芹  周红 《地学前缘》2014,21(5):294-301
钛白粉是钛氧化物的主要产品形态,其制造和使用是钛资源的主要利用方式。钛白粉生产中存在的资源消耗量大、环境污染严重和成本、价格高等问题对钛白粉产业和钛白粉应用领域各产业的发展形成严重制约,中国钛白粉生产未来还面临钛资源形态不匹配等问题。中国钛白粉企业现有硫酸法制造工艺的优化、转型升级和采用材料复合技术制备可节代二氧化钛的钛白代用材料应成为其可持续发展的对策。  相似文献   
994.
海相遗迹学经历了博物学者时代、藻类时代、大辩论时代、黎明时代,目前正处于现代遗迹学时代。海相遗迹学发展历程中的里程碑事件包括:博物学者对遗迹化石的初步研究、遗迹化石真实属性的确立、德国森根堡海洋研究所的建立、遗迹化石的行为习性分类,以及遗迹相、遗迹组构等重要概念的提出和发展。在系统回顾总结海相遗迹学成就和问题的基础上,着重展示了海相遗迹学发展的3个方向:遗迹化石三维形态重建与形态发生模拟,综合遗迹分类学以及微观手段的运用。海相遗迹学在诠释遗迹化石所反映的生物行为习性以及不同尺度生物—环境相互作用与协同演化等方面具有重要意义。  相似文献   
995.
河南祁雨沟金矿临界-超临界包裹体特征及成矿流体演化   总被引:1,自引:0,他引:1  
河南省祁雨沟金矿床位于华北地块南部熊耳地体东北缘,是我国典型的角砾岩型金矿。该矿床临界-超临界流体包裹体的发现对研究成矿流体演化及成矿机制有重要意义。包裹体岩相学、显微测温以及激光拉曼显微探针(LRM)研究显示,祁雨沟J4角砾岩筒中发育临界状态均一的包裹体富含CO2,这些包裹体出现在第Ⅰ、Ⅱ成矿阶段,并且在金品位最高的400-460中段出现最为集中,对成矿有明显的指示作用。临界-超临界流体来自富含挥发分的高氧化状态岩浆的出溶作用。流体演化先后经历了高氧化状态的岩浆-流体体系→临界-超临界流体体系→H2O-NaCl和CO2-H2O流体体系→低盐度的H2O-NaCl流体体系→H2O流体体系。临界―超临界流体体系在383.7~387.2 ℃发生了沸腾作用,沸腾作用可能是祁雨沟金矿J4岩筒中成矿物质沉淀的重要原因之一。  相似文献   
996.
Vuggy reservoirs are the most common, albeit important heterogeneous carbonate reservoirs in China. However, saturation calculations using logging data are not well developed, whereas Archie method is more common. In this study, electrical conduction in a vuggy reservoir is theoretically analyzed to establish a new saturation equation for vuggy reservoirs. We found that vugs have a greater effect on saturation than resistivity, which causes inflection in the rock-electricity curve. Using single-variable experiments, we evaluated the effects of vug size, vug number, and vug distribution on the rock-electricity relation. Based on the general saturation model, a saturation equation for vuggy reservoirs is derived, and the physical significance of the equation parameters is discussed based on the seepage-electricity similarity. The equation parameters depend on the pore structure, and vugs and matrix pore size distribution. Furthermore, a method for calculating the equation parameters is proposed, which uses nuclear magnetic resonance (NMR) data to calculate the capillary pressure curve. Field application of the proposed equation and parameter derivation method shows good match between calculated and experimental results, with an average absolute error of 5.8%.  相似文献   
997.
应用多分量地震资料进行成像时通常需要先做波场分离,然后再对分离的波型进行成像。其中,波场分离可以在空间域或波数域实现。然而,由于用交错网格有限差分进行弹性波场数值模拟时,用来进行波数域波场分离的质点振动速度分量定义在不同网格节点上,本文提出了利用波数域插值方法来估算同一网格节点所需质点振动速度值;进而给出了先进行波数域插值后进行波场分离的波数域保幅波场分离方案。数值实验结果表明波数域插值方法具有较高的插值精度且保幅波场分离方法具有较好的保幅性,将本文方法进一步应用于弹性波逆时偏移可以获得保幅性较好的成像结果且对存在一定程度速度误差情况具有较好的适应性。  相似文献   
998.
Recent developments of 30 m global land characterization datasets(e.g., land cover, vegetation continues field) represent the finest spatial resolution inputs for global scale studies. Here, we present results from further improvement to land cover mapping and impact analysis of spatial resolution on area estimation for different land cover types. We proposed a set of methods to aggregate two existing 30 m resolution circa 2010 global land cover maps, namely FROM-GLC(Finer Resolution Observation and Monitoring-Global Land Cover) and FROM-GLC-seg(Segmentation), with two coarser resolution global maps on development, i.e., Nighttime Light Impervious Surface Area(NL-ISA) and MODIS urban extent(MODIS-urban), to produce an improved 30 m global land cover map—FROM-GLC-agg(Aggregation). It was post-processed using additional coarse resolution datasets(i.e., MCD12Q1, GlobCover2009, MOD44 W etc.) to reduce land cover type confusion. Around 98.9% pixels remain 30 m resolution after some post-processing to this dataset. Based on this map, majority aggregation and proportion aggregation approaches were employed to create a multi-resolution hierarchy(i.e., 250 m, 500 m, 1 km, 5 km, 10 km, 25 km, 50 km, 100 km) of land cover maps to meet requirements for different resolutions from different applications. Through accuracy assessment, we found that the best overall accuracies for the post-processed base map(at 30 m) and the three maps subsequently aggregated at 250 m, 500 m, 1 km resolutions are 69.50%, 76.65%, 74.65%, and 73.47%, respectively. Our analysis of area-estimation biases for different land cover types at different resolutions suggests that maps at coarser than 5 km resolution contain at least 5% area estimation error for most land cover types. Proportion layers, which contain precise information on land cover percentage, are suggested for use when coarser resolution land cover data are required.  相似文献   
999.
With increasing urbanization and agricultural expansion, large tracts of wetlands have been either disturbed or converted to other uses. To protect wetlands, accurate distribution maps are needed. However, because of the dramatic diversity of wetlands and difficulties in field work, wetland mapping on a large spatial scale is very difficult to do. Until recently there were only a few high resolution global wetland distribution datasets developed for wetland protection and restoration. In this paper, we used hydrologic and climatic variables in combination with Compound Topographic Index(CTI) data in modeling the average annual water table depth at 30 arc-second grids over the continental areas of the world except for Antarctica. The water table depth data were modeled without considering influences of anthropogenic activities. We adopted a relationship between potential wetland distribution and water table depth to develop the global wetland suitability distribution dataset. The modeling results showed that the total area of global wetland reached 3.316×107 km2. Remote-sensing-based validation based on a compilation of wetland areas from multiple sources indicates that the overall accuracy of our product is 83.7%. This result can be used as the basis for mapping the actual global wetland distribution. Because the modeling process did not account for the impact of anthropogenic water management such as irrigation and reservoir construction over suitable wetland areas, our result represents the upper bound of wetland areas when compared with some other global wetland datasets. Our method requires relatively fewer datasets and has a higher accuracy than a recently developed global wetland dataset.  相似文献   
1000.
The continental slope of the Taiwan Shoal, which has cultivated numerous submarine canyons, is located in a passive continental margin environment. However, the trend of the Taiwan Canyon, with its 45° intersection angle, is obviously different from that of the erosion valley downward along the continental slope. A distinct break is present in the lower segment of the Taiwan Canyon, which then extends from west to east parallel to the continental slope until finally joining the Manila Trench. By utilizing multiple-beam water depth data, high-resolution seismic data, and sediment cores, this study describes the topographic characteristics of the Taiwan Canyon and provides a preliminary discussion on the origin of the Taiwan Canyon and its effect on deepwater sediment. The terrain, landform, and sediment of the Taiwan Canyon exhibit segmentation characteristics. The upper segment is characterized primarily by erosion, downward cutting with a V shape, and wide development of sliding, slumping, and other gravity flow types. The middle segment is characterized mostly by U-shaped erosion-sedimentation transition and development of an inner levee. The lower segment is characterized primarily by sedimentation and development of a sediment wave. The bottom current has a significant reworking effect on the interior sediments of the canyon and forms reworked sands. The formation and evolution of the Taiwan Canyon is closely related to sediment supply, gravity sliding(slumping), faulting activities, and submarine impaling. Given the sufficient terrigenous clastic supply, the sediments along the continental shelf edge continuously proceed seaward; gliding and slumping in the front edge provide driving forces for the formation of the canyon. Faulting activities result in stratum crushing, and the gravity flow takes priority in eroding the relatively fragile stratum. Thus, the direction of the extension of the canyon crosses the surrounding erosion valley obliquely. Seamounts are formed through submarine impaling. Owing to seamount blocking, the lower segment of the canyon is turned toward the east–west direction. Large amounts of sediments overflow at the turning, forming sediment waves.  相似文献   
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