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   3325篇
  免费   595篇
  国内免费   723篇
测绘学   631篇
大气科学   365篇
地球物理   549篇
地质学   2031篇
海洋学   321篇
天文学   48篇
综合类   238篇
自然地理   460篇
  2024年   9篇
  2023年   27篇
  2022年   84篇
  2021年   108篇
  2020年   127篇
  2019年   146篇
  2018年   93篇
  2017年   126篇
  2016年   124篇
  2015年   169篇
  2014年   189篇
  2013年   215篇
  2012年   196篇
  2011年   252篇
  2010年   208篇
  2009年   229篇
  2008年   218篇
  2007年   285篇
  2006年   215篇
  2005年   223篇
  2004年   192篇
  2003年   152篇
  2002年   136篇
  2001年   122篇
  2000年   114篇
  1999年   114篇
  1998年   88篇
  1997年   95篇
  1996年   61篇
  1995年   44篇
  1994年   49篇
  1993年   58篇
  1992年   46篇
  1991年   28篇
  1990年   23篇
  1989年   18篇
  1988年   21篇
  1987年   14篇
  1986年   6篇
  1985年   3篇
  1984年   3篇
  1983年   2篇
  1982年   3篇
  1981年   1篇
  1980年   1篇
  1978年   4篇
  1977年   1篇
  1974年   1篇
排序方式: 共有4643条查询结果,搜索用时 15 毫秒
41.
第二次土地调查若干问题探讨   总被引:1,自引:0,他引:1  
第二次土地调查的目的是全面查清全国土地利用状况,掌握真实的土地基础数据,如何保证调查的质量?文章以江阴市为例进行探讨。  相似文献   
42.
张建奇 《北京测绘》2021,35(2):166-171
对高层、超高层建筑物进行实时,高精度的变形监测对提前预防安全隐患,保证人民生命财产安全具有重要意义。建筑物变形作为一种典型的随机性和微弱性过程,噪声等误差的存在会影响从中提取有用的变形信息。针对该问题,提出一种改进粒子群(Particle Swarm Optimization,PSO)算法优化支持向量机(Support Vector Machine,SVM)的噪声稳健建筑物变形监测方法,利用改进PSO算法的全局搜索能力对SVM的核参数进行优化,提升预测精度的同时增强算法的噪声稳健性。基于实测数据的试验结果表明,相对于传统交叉验证SVM和小波方法,所提方法可以获得更高的变形预测精度,并且在低信噪比条件下优势更加明显。  相似文献   
43.
对东北区经济地域系统形成发展机制的再认识   总被引:8,自引:2,他引:6  
陈才  修春亮 《地理科学》1995,15(3):217-225
  相似文献   
44.
This paper presents the results of engineering geological investigations and tunnel support design studies, carried out at the Sulakyurt dam site, northeast of Ankara, Turkey. The Sulakyurt dam will be used for flow control and water storage for irrigation projects. Studies were carried out both in the field and the laboratory. Field studies include engineering geological mapping, intensive discontinuity surveying, core drilling and sampling for laboratory testing. The diversion tunnel will be driven in rock mass, consisting of granite and diorite. Empirical, analytical and numerical methods were combined for safe tunnel design. Rock mass rating (RMR), Rock mass quality (Q) and Geological strength index (GSI) systems were used for empirical rock mass quality determination, site characterization and support design. The convergence–confinement method was used as analytical method and software called Phase2, a 2D finite element program, was utilized as numerical method. According to the results acquired from the empirical, analytical and numerical methods, tunnel stability problems were expected in both granite and diorite rock masses. The support system, suggested by empirical methods, was applied and the performance of suggested support system was evaluated by means of numerical modelling. It was concluded that the suggested support systems were adequate, since after applying the suggested support system to granite and diorite, tunnel deformation and the yielded elements around the tunnel decreased significantly. Thus, it is suggested that for more reliable support design empirical, numerical and analytical methods should be combined.  相似文献   
45.
张维正 《探矿工程》2006,33(6):1-3,7
以沈阳市某深基坑支护及降水工程在密集建筑群中施工为例,介绍了该支护工程的设计与施工,阐述了该工程变形监测方法并对其结果进行了分析,总结了在沈阳地区密集建筑群中进行基坑开挖的设计与施工经验。  相似文献   
46.
根据拟建建筑基坑的工程地质条件、周边环境条件、基坑开挖深度等特点综合考虑,对基坑分段采用超前微型桩支护加土钉墙、放坡加土钉墙2种复合支护方案。实践证明,该工程所采用的多种复合式支护实施方案,技术安全可靠,经济合理。  相似文献   
47.
主要介绍了广州科学城保利林语山庄高边坡支护设计方案与施工方法。支护方案综合采用了锚索、锚杆、抗滑桩、钢管桩、格构梁及挡土墙等多种支护方法,有效地提高了边坡的稳定性。应用有限元方法来验证设计方案的合理性,模拟结果与工程实践基本吻合。  相似文献   
48.
A decision support system (DSS) has been developed to assist expert and non-expert users in the evaluation and selection of eco-engineering strategies for slope protection. This DSS combines a qualitative hazard assessment of erosion and mass movements with a detailed catalogue of eco-engineering strategies for slope protection of which the suitability is evaluated in relation to the data entered. The slope decision support system (SDSS) is a knowledge based DSS in which knowledge is stored in frames containing rules that can evaluate the available information for a project, stored as project specific information (PSI) in a data file. The advantages of such a system are that it accepts incomplete information and that the qualitative nature of the information does not instil the user with a sense of unjustified exactitude. By its multidisciplinary and progressive nature, the DSS will be of value during the initial stages of an eco-engineering project when data collection and the potential of different eco-engineering strategies are considered. The accent of the output of the DSS is on the application of eco-engineering strategies for slope protection as an environmentally-friendly solution aiding sustainable development. For its acceptance within the engineering community, the DSS needs to prove its predictive capacity. Therefore, its performance has been benchmarked against successful and unsuccessful cases of slope stabilisation using eco-engineering. The target audience and the areas of application of this DSS are reviewed and the strategies for further development in this area suggested.  相似文献   
49.
Governmental authorities are forced by law to make decisions within the framework of European, national and regional directives in the fields of spatial planning, groundwater and environmental protection. These tasks can be supported by a decision-support system, which integrates data from various sources and helps to make decision processes more effective and transparent. Basic work for such a decision support system has been done in a transnational and interdisciplinary project (Interreg II C: KATER), including metadata definition, metadata system, cartographic tools and GIS tools. The direct integration of these tools and information in the decision process will be implemented in the next few years (project KATER II).  相似文献   
50.
福建省大田县广平含煤区推覆构造特征及找煤预测   总被引:1,自引:0,他引:1  
陈开彪 《中国煤田地质》2006,18(2):16-17,70
通过对区内推覆构造及地层等的研究,认为广平含煤区推覆体下蕴藏着丰富的煤炭资源,童子岩组煤系地层埋藏深度主要受发育于童子岩组上部的F1、F2推覆断层控制,并圈定出煤炭资源预测前景较好的3个区作为煤炭勘查后备基地。  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