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   3336篇
  免费   1161篇
  国内免费   442篇
测绘学   279篇
大气科学   304篇
地球物理   1869篇
地质学   1332篇
海洋学   280篇
天文学   22篇
综合类   284篇
自然地理   569篇
  2024年   11篇
  2023年   39篇
  2022年   112篇
  2021年   149篇
  2020年   147篇
  2019年   209篇
  2018年   162篇
  2017年   185篇
  2016年   188篇
  2015年   219篇
  2014年   237篇
  2013年   214篇
  2012年   209篇
  2011年   210篇
  2010年   154篇
  2009年   197篇
  2008年   199篇
  2007年   243篇
  2006年   198篇
  2005年   174篇
  2004年   179篇
  2003年   155篇
  2002年   134篇
  2001年   98篇
  2000年   87篇
  1999年   97篇
  1998年   104篇
  1997年   99篇
  1996年   95篇
  1995年   72篇
  1994年   56篇
  1993年   65篇
  1992年   51篇
  1991年   44篇
  1990年   35篇
  1989年   24篇
  1988年   28篇
  1987年   18篇
  1986年   19篇
  1985年   3篇
  1982年   1篇
  1980年   2篇
  1979年   4篇
  1974年   1篇
  1954年   12篇
排序方式: 共有4939条查询结果,搜索用时 250 毫秒
71.
72.
Use of GIS layers, in which the cell values represent fuzzy membership variables, is an effective method of combining subjective geological knowledge with empirical data in a neural network approach to mineral-prospectivity mapping. In this study, multilayer perceptron (MLP), neural networks are used to combine up to 17 regional exploration variables to predict the potential for orogenic gold deposits in the form of prospectivity maps in the Archean Kalgoorlie Terrane of Western Australia. Two types of fuzzy membership layers are used. In the first type of layer, the statistical relationships between known gold deposits and variables in the GIS thematic layer are used to determine fuzzy membership values. For example, GIS layers depicting solid geology and rock-type combinations of categorical data at the nearest lithological boundary for each cell are converted to fuzzy membership layers representing favorable lithologies and favorable lithological boundaries, respectively. This type of fuzzy-membership input is a useful alternative to the 1-of-N coding used for categorical inputs, particularly if there are a large number of classes. Rheological contrast at lithological boundaries is modeled using a second type of fuzzy membership layer, in which the assignment of fuzzy membership value, although based on geological field data, is subjective. The methods used here could be applied to a large range of subjective data (e.g., favorability of tectonic environment, host stratigraphy, or reactivation along major faults) currently used in regional exploration programs, but which normally would not be included as inputs in an empirical neural network approach.  相似文献   
73.
74.
近、现代黄河三角洲地貌形态反演   总被引:5,自引:0,他引:5  
1855年黄河改夺大清河河道后于山东利津县东北入海。至今黄河尾癌河道历经10次大的改道变迁,塑造了近、现代黄河三角洲,形成了7个主要的亚三洲堆积体。该文利用黄河尾癌河道改道资料,近、现代河口流路变迁图,近、现代黄河三角洲体系图以及1985-1986年的水文工程地质钻孔资料,在研究黄河三角洲沉积模式的基础上,对工程地质钻孔数据进行沉积层序分析,将今论古,反推近、现代黄河三角洲沉积地貌,研究结果近似展示了近、现代黄河三角洲二维平面的发育演变和其时其地的地貌形态。  相似文献   
75.
76.
Introduction Receiver function has been extensively applied in studying S wave velocity of crust and up-per mantle for about 20 years (Owens, et al, 1987; LIU, et al, 1996), which is a time series ob-tained by the deconvolution of vertical component from horizontal component for teleseismic P waveform. Receiver function represents the teleseismic P plane wave response of crust and upper mantle beneath seismic station, from which the source and propagation effects are removed. Receiver funct…  相似文献   
77.
《Journal of Hydrology》2003,281(4):251-264
Practical application of geostatistical inversion to coupled problems is hampered by a number of difficulties. In this paper, we address two of them: first, the computational cost of sensitivity (Jacobian) matrices and, second, the evaluation of the relative weights of different types of data. Regarding the first, we revise the adjoint state equations to propose a form whose cost is independent of the number of unknown parameters and only grows with the number of observation wells. Regarding the second, we derive expressions for the relative weights of different types of data. These expressions are based on minimizing the expected likelihood, rather than the likelihood itself. The efficiency of both improvements is tested on a synthetic example. The example analyzes a wide range of groundwater flow and solute transport conditions. Yet, the expected likelihood consistently yields the optimal weights. The proposed form of the adjoint state equations leads to one order of magnitude reduction in CPU time with respect to the conventional sensitivity equations.  相似文献   
78.
吐哈盆地中央构造带正反转演化特征   总被引:5,自引:3,他引:5  
吐哈盆地中央构造带由火焰山构造和七克台构造组成。中央构造带形成于三叠纪晚期至侏罗纪早期,表现为伸展构造特征,生长断层上盘地层厚度明显大于下盘,并于断层上盘所在的台北凹陷形成沉降中心。晚侏罗世,由于拉萨陆块与欧亚大陆的碰撞作用导致吐哈盆地由伸展盆地转变为挤压盆地,中央构造带也于此时发生构造反转,由早期的伸展正断层转变为挤压逆断层。发生于55Ma的喜山构造事件对天山地区产生了深刻的影响,但影响时间略有滞后,大致发生在晚渐新世至早中新世,中央构造带即在此次构造事件中强烈变形,逆冲出露于地表。  相似文献   
79.
在简要介绍了川滇地区的构造格局和构造运动特征的基础上,讨论了不同观测数据同时用于反演的合理性和物理意义,利用1998~2000年观测的9个测点位移数据和1986年以前所测的10个主应力方向数据,将边界力和相对权比λ作为待反演参数,并考虑了主要活动断裂运动特性,进行了弹性有限元数值反演计算。计算结果表明,现今川滇地区的构造活动主要力源仍来源于印度板块与欧亚大陆的碰撞,菲律宾海板块的挤压作用也不可忽略,这一结论说明了该地区现今构造运动的继承性活动特征。  相似文献   
80.
The central structure belt in Turpan-Hami basin is composed of the Huoyanshan structure and Qiketai structure formed in late Triassic-early Jurassic, and is characterized by extensional tectonics. The thickness of strata in the hanging wall of the growth fault is obviously larger than that in the footwall, and a deposition center was evolved in the Taibei sag where the hanging wall of the fault is located. In late Jurassic the collision between Lhasa block and Eurasia continent resulted in the transformation of the Turpan-Hami basin from an extensional structure into a compressional structure, and consequently in the tectonic inversion of the central structure belt of the Turpan-Hami basin from the extensional normal fault in the earlier stage to the compressive thrust fault in the later stage. The Tertiary collision between the Indian plate and the Eurasian plate occurred around 55Ma, and this Himalayan orogenic event has played a profound role in shaping the Tianshan area, only the effect of the collision to this area was delayed since it culminated here approximately in late Oligocene-early Miocene. The central structure belt was strongly deformed and thrusted above the ground as a result of this tectonic event.  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