首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   13246篇
  免费   3480篇
  国内免费   3808篇
测绘学   117篇
大气科学   1224篇
地球物理   2808篇
地质学   11369篇
海洋学   2673篇
天文学   28篇
综合类   509篇
自然地理   1806篇
  2024年   61篇
  2023年   257篇
  2022年   631篇
  2021年   685篇
  2020年   638篇
  2019年   813篇
  2018年   734篇
  2017年   853篇
  2016年   914篇
  2015年   792篇
  2014年   1051篇
  2013年   1116篇
  2012年   903篇
  2011年   926篇
  2010年   716篇
  2009年   1016篇
  2008年   955篇
  2007年   980篇
  2006年   863篇
  2005年   764篇
  2004年   665篇
  2003年   588篇
  2002年   521篇
  2001年   422篇
  2000年   384篇
  1999年   386篇
  1998年   292篇
  1997年   286篇
  1996年   243篇
  1995年   191篇
  1994年   226篇
  1993年   165篇
  1992年   138篇
  1991年   93篇
  1990年   46篇
  1989年   43篇
  1988年   47篇
  1987年   20篇
  1986年   22篇
  1985年   12篇
  1984年   20篇
  1983年   6篇
  1982年   7篇
  1981年   5篇
  1980年   6篇
  1979年   17篇
  1978年   5篇
  1977年   3篇
  1973年   1篇
  1954年   5篇
排序方式: 共有10000条查询结果,搜索用时 46 毫秒
921.
王宏语  张峰  杨雄兵 《地学前缘》2021,28(2):362-375
被动大陆边缘深海扇是当今海洋深水油气勘探的热点。识别深海扇,明确其时空演变特征,总结关键地质因素对其发育的控制作用,对于建立深海扇成因与预测地质模型具有重要意义。本文通过地震与钻井资料综合解释,分析塞内加尔盆地北部次盆白垩纪被动大陆边缘时期的构造-沉积演化特征,识别深海扇体,并分析其岩性、形态与规模的演变特征;然后分析海平面变化、陆源物质供给、陆坡与沟谷地貌等地质条件对深海扇体发育的控制作用。研究表明,研究区在白垩纪盆地被动大陆边缘阶段,经历了早白垩世的碳酸盐岩台地建设期、Albian-Santonian期碎屑岩沉积被陆坡内外分割的沉积期、Campanian-Maastrichtian期的碎屑岩缓坡沉积期等3个构造-沉积演化阶段;从早白垩世Aptian期到白垩纪末期发育了具有不同岩性、形态与规模特征的深海扇体。全球海平面变化、陆源碎屑供给、陆坡与沟谷地貌特征共同制约了深海扇的演化特征,但它们对深海扇发育与演化的影响作用又有所不同。全球海平面变化与陆源碎屑供给特征更多是影响了扇体的岩性粗细与规模,而陆坡沟谷地貌特征则直接决定了扇体的形态与分布。  相似文献   
922.
思茅盆地与呵叻盆地属于同一大地构造带。二者的含钾盐建造在区域分布、沉积特征、成盐层位、析盐矿物组合特征及物质来源等方面具有良好的可比性,是中国海相找钾实现突破的重要潜在区之一。尽管目前对两地钾盐矿的成矿认识取得了许多进展,但对于二者的关系和成矿模式及规律等还存在着较大争议。为了下一步更好地建立思茅盆地钾盐矿的成矿规律和实现深部找钾的突破,本文从构造背景、地层年代、古气候环境和物质来源等方面对最近一些重要进展和认识做了梳理,现已确定:(1)思茅陆块与印度支那陆块在中生代可能为统一的整体,思茅与呵叻盆地基本位于副热带高压带内,在晚三叠世、中—晚侏罗世和晚白垩世具有较好的成盐成钾构造和古气候条件;(2)思茅和呵叻盆地在含钾盐及其下伏地层沉积期间可能具有相似的潜在物源区,包括扬子、松潘—甘孜、可可西里、义敦、北羌塘和南羌塘陆块等;(3)思茅与呵叻盆地钾盐矿的成钾物质主要来自陆源水体,同时也有海水和深部热液补给;(4)思茅和呵叻盆地含钾盐地层的年代部分重叠,但不完全吻合;(5)勐野井钾盐矿与呵叻钾盐矿可能系非同期矿床。综合构造和气候等证据,推测思茅盆地在约85.0 Ma这一呵叻钾盐矿成矿的时段就可能具有了重要的成钾潜力。  相似文献   
923.
四川盆地中三叠统雷口坡组中发育多种类型的钾盐矿藏,是我国找钾的重点目标层系。磨溪气田雷口坡组地层卤水富含K、Li、Br、B元素,定性为中低矿化度KCl、LiCl、Br-、B2O3等超标的优质化工原料水,显示出较好的钾盐勘探前景。地震资料解释结果表明,磨溪气田雷口坡组一段的第一亚段(雷一1)顶面表现为一个完整的长轴背斜形态,断层不发育。富钾卤水发育在背斜的翼部,而天然气则占据了背斜的核部,二者共同贮存在雷一1亚段溶蚀孔洞发育的滩相白云岩中,构成了典型的同层型气钾复合矿藏。借鉴含油气系统的概念,将富钾卤水的形成、聚集及后期保存等影响卤水型钾矿形成全过程的各种因素总结归纳为6大关键要素,即钾的物质来源,储层物性、封盖条件、圈闭条件、运移方式和保存条件。在乐山—龙女寺古隆起形成和演化的背景下,确定构造圈闭形成时间,分析优质储层发育有利因素以及后期保存条件,并按照各要素在时空上的搭配关系,动态地分析雷口坡组同层型气钾复合矿藏的形成过程。烃类物质和卤化物都是地下水所含的特殊物质,在地下水动力场的作用下,地层水在雷口坡组内部向着川中地区的继承性发育的古构造高点——磨溪背斜持续运移。被运移而来的由蒸发浓缩的古海水和石膏脱水形成的初始富钾地层水不断捕获下伏绿豆岩释放的钾离子,使得钾离子二次富集成藏。在地层水运移和气藏压力的共同作用下,形成气在上、富钾卤水在下的复合矿藏。长期继承性发育的古隆起不仅是油气聚集的有利部位,亦是二次运移、聚集的富钾卤水矿藏发育部位。本次研究成果为四川盆地及其他类似盆地的“气钾兼探”工作提供了一种新的方法和思路。  相似文献   
924.
钾盐作为战略资源,在农业、工业等领域具有重要的使用价值。世界大多数固态钾资源发现于大规模的石油勘探过程中,充分利用各种油气地质、地球物理资料开展钾盐勘探对于国家发展尤为重要。位于哈萨克斯坦的南图尔盖盆地地质构造简单、资源勘探潜力较大。文中以南图尔盖盆地Aryskum坳陷为研究区块,基于其沉积地质特点,结合多口井的常规测井资料及前人研究成果,综合分析自然伽马、自然电位、三孔隙度等测井曲线的响应特征,含钾层段具体表现为自然伽马异常高值,并通过无铀伽马曲线等排除铀、钍元素影响,扩径使得中子值偏高,自然电位异常幅度由砂岩层的负异常变化为正异常,电阻率值偏高,密度值介于2.25~2.45 g/cm3,声波时差在270~350 μs/m范围内。基于含钾层测井曲线特点,利用测井曲线综合识别法、重叠法、交会图法进行研究区钾盐识别。在研究区30余口井中发现有可溶性钾盐层分布,分布在M-Ⅱ-3、M-Ⅱ-2小层底部,其中M-Ⅱ-3层底部为主要钾盐层段,并对各井含钾层段累计厚度进行统计分析。最后,借助地层对比分析含钾层段在横向和纵向上的展布情况,通过等厚图的绘制开展了找钾有利区分析,拓展了测井资料在南图尔盖盆地钾盐勘查中的应用,进而为今后研究区钾盐找矿提供重点方向。  相似文献   
925.
柴达木盆地北缘鱼卡地区中侏罗统石门沟组含煤段中发育有油页岩、煤、碳质泥岩和泥岩等富有机质细粒沉积.为了研究其沉积有机相的类型及煤和油页岩形成的控制因素,本文通过岩心观察、工业分析结合有机地球化学测试分析等方法将含煤段细粒沉积物划分为了类型A(三角洲平原沉积环境)、B(三角洲前缘-浅湖沉积环境)、C1(湖沼非油页岩亚相)及C2(湖沼油页岩亚相)四种类型,其中类型C1沉积物中发育煤,类型C2中发育油页岩,且煤较油页岩具有更高的含油率、水分、挥发分以及发热量值.有机质类型特征方面,沉积有机相类型A、B及C1沉积物有机质类型均为Ⅱ2-Ⅲ型、有机质来源均以陆源和混合来源两种有机质来源为主,而类型C2中主要为Ⅱ2型,以混合有机质来源为主;类型A及C2其沉积物有机质均处于未成熟阶段,而类型B和C1中有机质均处于未成熟-低成熟阶段;有机质保存条件方面,类型A沉积物主要形成于缺氧的淡水环境,类型B主要形成于贫氧-缺氧的淡水-半咸水环境,类型C1形成于贫氧-缺氧的淡水-半咸水环境,而类型C2则主要形成于缺氧的淡水-半咸水环境.其中类型B较类型A,类型C2较类型C1,其沉积物均形成于更为还原且盐度更高的水体环境中.石门沟组含煤段是煤和油页岩的形成层位,稳定的沉积环境、丰富的湖泊有机质来源、良好的保存条件及较少的陆源碎屑的稀释共同促进了类型C2中油页岩的形成,而丰富的陆源植物供给及良好的保存条件则促进了类型C1中煤层的形成.  相似文献   
926.
奥陶系盐下白云岩储层是鄂尔多斯盆地中东部天然气勘探的重要接替领域。基于钻井岩心、微观薄片、物性分析及地球化学特征等资料,应用微区多参数实验分析方法,对奥陶系盐下白云岩储层特征、成因与分布开展了系统研究。结果表明:①奥陶系盐下主要发育颗粒滩白云岩和微生物白云岩储层,其中颗粒滩白云岩储层岩性为砂屑白云岩、鲕粒白云岩和粉—细晶白云岩,储集空间由溶蚀孔洞、粒间孔、晶间(溶)孔和裂缝组成,平均孔隙度为6.04%;微生物白云岩储层岩性为凝块石白云岩,储集空间为溶蚀孔洞和微裂缝,平均孔隙度为5.64%。②奥陶系盐下白云岩储层孔隙来源于对颗粒滩和微生物丘中原生孔隙的继承,并经受了溶蚀作用、白云石化作用,以及膏盐矿物、石英、细—中晶白云石与方解石等充填作用的改造。③有利储层主要分布于中央古隆起、横山隆起及乌审旗坳陷中的低凸起带上。  相似文献   
927.
南海油气资源储量巨大,近年来周边国家对该海域油气资源的争夺日益白热化,南海领土及油气资源归属的矛盾日益突出,及时监测海上油气钻井平台的分布及其变化状况,对维护国家海洋权益和海洋资源环境保护具有重要意义。针对南海油气钻井平台的监测问题,从遥感影像的数据源选择和识别方法2个方面对近年来南海油气钻井平台的遥感监测情况进行了分析总结,同时聚焦目前对南海油气钻井平台的监测需求,分析了当前研究面临的问题和挑战,提出了下一步研究方向。  相似文献   
928.
《China Geology》2021,4(1):147-177
The Qinghai-Tibet Plateau (also referred to as the Plateau) has long received much attention from the community of geoscience due to its unique geographical location and rich mineral resources. This paper reviews the aeromagnetic surveys in the Plateau in the past 60 years and summarizes relevant research achievements, which mainly include the followings. (1) The boundaries between the Plateau and its surrounding regions have been clarified. In detail, its western boundary is restricted by West Kunlun-Altyn Tagh arc-shaped magnetic anomaly zone forming due to the arc-shaped connection of the Altyn Tagh and Kangxiwa faults and its eastern boundary consists of the boundaries among different magnetic fields along the Longnan (Wudu)-Kangding Fault. Meanwhile, the fault on the northern margin of the Northern Qilian Mountains serves as its northern boundary. (2) The Plateau is mainly composed of four orogens that were stitched together, namely East Kunlun-Qilian, Hoh-Xil-Songpan, Chamdo-Southwestern Sanjiang (Nujiang, Lancang, and Jinsha rivers in southeastern China), and Gangdese-Himalaya orogens. (3) The basement of the Plateau is dominated by weakly magnetic Proterozoic metamorphic rocks and lacks strongly magnetic Archean crystalline basement of stable continents such as the Tarim and Sichuan blocks. Therefore, it exhibits the characteristics of unstable orogenic basement. (4) The Yarlung-Zangbo suture zone forming due to continent-continent collisions since the Cenozoic shows double aeromagnetic anomaly zones. Therefore, it can be inferred that the Yarlung-Zangbo suture zone formed from the Indian Plate subducting towards and colliding with the Eurasian Plate twice. (5) A huge negative aeromagnetic anomaly in nearly SN trending has been discovered in the middle part of the Plateau, indicating a giant deep thermal-tectonic zone. (6) A dual-layer magnetic structure has been revealed in the Plateau. It consists of shallow magnetic anomaly zones in nearly EW and NW trending and deep magnetic anomaly zones in nearly SN trending. They overlap vertically and cross horizontally, showing the flyover-type geological structure of the Plateau. (7) A group of NW-trending faults occur in eastern Tibet, which is intersected rather than connected by the nearly EW trending that develop in middle-west Tibet. (8) As for the central uplift zone that occurs through the Qiangtang Basin, its metamorphic basement tends to gradually descend from west to east, showing the form of steps. The Qiangtang Basin is divided into the northern and southern part by the central uplift zone in it. The basement in the Qiangtang Basin is deep in the north and west and shallow in the south and west. The basement in the northern Qiangtang Basin is deep and relatively stable and thus is more favorable for the generation and preservation of oil and gas. Up to now, 19 favorable tectonic regions of oil and gas have been determined in the Qiangtang Basin. (9) A total of 21 prospecting areas of mineral resources have been delineated and thousands of ore-bearing (or mineralization) anomalies have been discovered. Additionally, the formation and uplift mechanism of the Plateau are briefly discussed in this paper.©2021 China Geology Editorial Office.  相似文献   
929.
《China Geology》2021,4(4):541-552
The intersection of the Kyushu-Palau Ridge (KPR) and the Central Basin Rift (CBR) of the West Philippine Basin (WPB) is a relic of a trench-trench-rift (TTR) type triple-junction, which preserves some pivotal information on the cessation of the seafloor spreading of the WPB, the emplacement and disintegration of the proto-Izu-Bonin-Mariana (IBM) Arc, and the transition from initial rifting to steady-state spreading of the Parece Vela Basin (PVB). However, the structural characteristics of this triple-junction have not been thoroughly understood. In this paper, using the newly acquired multi-beam bathymetric, gravity, and magnetic data obtained by the Qingdao Institute of Marine Geology, China Geological Survey, the authors depict the topographic, gravity, and magnetic characteristics of the triple-junction and adjacent region. Calculations including the upward continuations and total horizontal derivatives of gravity anomaly are also performed to highlight the major structural features and discontinuities. Based on these works, the morphological and structural features and their formation mechanisms are analyzed. The results show that the last episode amagmatic extension along the CBR led to the formation of a deep rift valley, which extends eastward and incised the KPR. The morphological and structural fabrics of the KPR near and to the south of the triple-junction are consistent with those of the western PVB, manifesting as a series of NNE-SSW- and N-S-trending ridges and troughs, which were produced by the extensional faults associated with the initial rifting of the PVB. The superposition of the above two reasons induced the prominent discontinuity of the KPR in deep and shallow crustal structures between 15°N–15°30′N and 13°30′N–14°N. Combined with previous authors’ results, we propose that the stress produced by the early spreading of the PVB transmitted westward and promoted the final stage amagmatic extension of the CBR. The eastward propagation of the CBR destroyed the KPR, of which the magmatism had decayed or ceased at that time. The destruction mechanism of the KPR associated with the rifting of the PVB varies along strike the KPR. Adjacent to the triple-junction, the KPR was destroyed mainly due to the oblique intersection of the PVB rifting center. Whereas south of the triple-junction, the KPR was destroyed by the E-W-directional extensional faulting on its whole width.©2021 China Geology Editorial Office.  相似文献   
930.
To accurately evaluate ecological risks trigged by groundwater exploitation, it must be clarified the relationship between vegetation and groundwater. Based on remote sensing data sets MOD13Q1, groundwater table depth (WTD) and total dissolved solids (TDS), the relationship between groundwater and natural vegetation was analyzed statistically in the main plain areas of Qaidam Basin. The results indicate that natural vegetation is groundwater-dependent in areas where WTD is less than 5.5 m and TDS is less than 7.5 g/L. Aquatic vegetation, hygrophytic vegetation and hygrophytic saline-alkali tolerant vegetation are mainly distributed in areas with WTD <1.1 m. Salt-tolerant and mesophytic vegetation mainly occur in areas with WTD of 1.4-3.5 m, while the xerophytic vegetation isprimarily present in areas where WTD ranges from 1.4 m to 5.5 m. Natural vegetation does not necessarily depend on groundwater in areas with WTD >5.5 m. For natural vegetation, the most suitable water TDS is less than 1.5 g/L, the moderately suitable TDS is 1.5-5.0 g/L, the basically suitable TDS is 5.0-7.5 g/L, and the unsuitable TDS is more than 7.5 g/L.  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号