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   4269篇
  免费   359篇
  国内免费   221篇
测绘学   263篇
大气科学   260篇
地球物理   1710篇
地质学   1374篇
海洋学   413篇
天文学   48篇
综合类   178篇
自然地理   603篇
  2024年   18篇
  2023年   29篇
  2022年   32篇
  2021年   88篇
  2020年   163篇
  2019年   131篇
  2018年   120篇
  2017年   174篇
  2016年   165篇
  2015年   141篇
  2014年   171篇
  2013年   388篇
  2012年   111篇
  2011年   147篇
  2010年   145篇
  2009年   179篇
  2008年   264篇
  2007年   244篇
  2006年   239篇
  2005年   208篇
  2004年   180篇
  2003年   152篇
  2002年   131篇
  2001年   137篇
  2000年   134篇
  1999年   134篇
  1998年   129篇
  1997年   133篇
  1996年   90篇
  1995年   86篇
  1994年   73篇
  1993年   71篇
  1992年   44篇
  1991年   41篇
  1990年   32篇
  1989年   29篇
  1988年   31篇
  1987年   18篇
  1986年   14篇
  1985年   12篇
  1984年   3篇
  1983年   1篇
  1982年   5篇
  1981年   3篇
  1980年   5篇
  1979年   1篇
  1976年   1篇
  1954年   2篇
排序方式: 共有4849条查询结果,搜索用时 0 毫秒
61.
以周晓平研制的有限区域细网格数值模式为基础,编制成一个套网格模式,并对1991年7月2~3日发生在江淮流域的特大暴雨过程,进行了数值模拟和动力分析。结果表明:低空急流加强,输送了大量暖湿空气并激发强烈的上升运动是造成该区暴雨的主要原因;在该过程中,热成风平衡遭到破坏,其非热成风平衡部分伴随相应的二级环流,也有利于垂直运动的产生。  相似文献   
62.
地形图符号库的设计   总被引:15,自引:0,他引:15  
陈顺清 《测绘学报》1993,22(1):56-64
本文吸取了美国地图数据库软件INFORMAP Ⅲ、地理信息系统软件ARC/INFO等的符号库设计思想,给出了地形图符号的分类和定义,阐述了适合于微型计算机的装配式符号的构成及“表格驱动式”符号库设计的方法。为方便面状符号的绘制,引入了封闭线结点数数组法来描述多边形的数据结构,介绍了笔者设计的基于微机上的CARDS/Symbols符号库系统。实践表明,本文提出的原理和方法适用于一切工程制图的符号库设计。最后还指出了CG、CAD技术对地形图符号规范的新要求。  相似文献   
63.
三峡库区巫山新城超高加筋挡墙变形破坏及修复研究   总被引:3,自引:1,他引:2  
结合三峡库区弃渣灾害的防治和回填增地,以巫山新城加筋土挡墙等实际工程为典型进行剖析,对加筋土挡墙,特别是超高加筋土挡墙变形破坏机制和过程进行了系统深入的研究。从加筋土挡墙填土物理力学性质室内试验研究入手,采用FLAC等数值计算方法,系统地研究了加筋土挡墙的应力状况和变形破坏特性。将离心模拟技术应用于超高多级加筋土挡墙(H=57m)的研究中,进行了三级加筋土挡墙的离心模型试验,对加筋土挡墙墙背土压力分布规律、挡墙面板和填土的沉降情况以及拉筋的拉力分布规律进行了详细而系统的研究。特别是精心设计出离心模型试验中三级挡墙的面板与拉筋的联结,较真实地反映了实际工程中加筋土挡墙整体复合结构的力学特性。根据研究结果,提出了巫山新城加筋土挡墙修复加固方案,编制了设计报告,并加以实施。目前,修复加固工程效果良好。 对库区,乃至全国超高加筋土挡墙的建设均有指导和示范作用。  相似文献   
64.
校准数字化矿图的一种实用算法——网格限制法   总被引:1,自引:0,他引:1  
满足数字化矿图的精度要求是实现数字矿山的重要保证。结合煤矿地测微机制图和相关矿图的特点,本文提出了利用曲面样条函数及公里网特征点数据校准数字化矿图的实用数学方法。  相似文献   
65.
The aim of this study was to investigate rainfall–groundwater dynamics over space and annual time scales in a hard‐rock aquifer system of India by employing time series, geographic information system and geostatistical modelling techniques. Trends in 43‐year (1965–2007) annual rainfall time series of ten rainfall stations and 16‐year (1991–2006) pre‐monsoon and post‐monsoon groundwater levels of 140 sites were identified by using Mann–Kendall, Spearman rank order correlation and Kendall rank correlation tests. Trends were quantified by Kendall slope method. Furthermore, the study involves novelty of examining homogeneity of pre‐monsoon and post‐monsoon groundwater levels, for the first time, by applying seven tests. Regression analysis between rainfall and post‐monsoon groundwater levels was performed. The pre‐monsoon and post‐monsoon groundwater levels for four periods – 1991–1994, 1995–1998, 1999–2002 and 2003–2006 – were subjected to geographic information system‐based geostatistical modelling. The rainfall showed considerable spatiotemporal variations, with a declining trend at the Mavli rainfall station (p‐value < 0.05). The Levene's tests revealed spatial homogeneity of rainfall at α = 0.05. Regression analyses indicated significant relationships (r2 > 0.5) between groundwater level and rainfall for eight rainfall stations. Non‐homogeneity and declining trends in the groundwater level, attributed to anthropogenic and hydrologic factors, were found at 5–61 more sites in pre‐monsoon compared with post‐monsoon season. The groundwater declining rates in phyllite–schist, gneiss, schist and granite formations were found to be 0.18, 0.26, 0.21 and 0.14 m year?1 and 0.13, 0.19, 0.16 and 0.02 m year?1 during the pre‐monsoon and post‐monsoon seasons, respectively. The geostatistical analyses for four time periods revealed linkages between the rainfall and groundwater levels. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   
66.
Since the Mid Pleistocene Revolution, which occurred about one million years ago, global temperatures have fluctuated with a quasi‐periodicity of ca. 100 ka. The pattern of past change in the extent of woodlands, and therefore by inference vegetation carbon storage, has been demonstrated to have a strong positive link with this global temperature change at high and mid latitudes. However, understanding of climate systems and ecosystem function indicates that the pattern of woodland change at low latitudes may follow a fundamentally different pattern. We present output from the intermediate complexity model GENIE‐1, comprising a single transient simulation over the last 800 ka and a 174‐member ensemble of 130 ka transient simulations over the last glacial cycle. These simulations suggest that while vegetation carbon storage in mid–high northern latitudes robustly follows the characteristic ca. 100 ka cycle, this signal is not a robust feature of tropical vegetation, which is subject to stronger direct forcing by the precessional (21 ka) orbital cycle (albeit with a highly uncertain response). We conclude that the correlation of palaeoenvironmental records from low latitudes with global temperature change must be done with caution. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   
67.
Using results from coupled climate model simulations of the 8.2 ka climate event that produced a cold period over Greenland in agreement with the reconstructed cooling from ice cores, we investigate the typical pattern of climate anomalies (fingerprint) to provide a framework for the interpretation of global proxy data for the 8.2 ka climate event. For this purpose we developed an analysis method that isolates the forced temperature response and provides information on spatial variations in magnitude, timing and duration that characterise the detectable climate event in proxy archives. Our analysis shows that delays in the temperature response to the freshwater forcing are present, mostly in the order of decades (30 a over central Greenland). The North Atlantic Ocean initially cools in response to the freshwater perturbation, followed in certain parts by a warm response. This delay, occurring more than 200 a after the freshwater pulse, hints at an overshoot in the recovery from the freshwater perturbation. The South Atlantic and the Southern Ocean show a warm response reflecting the bipolar seesaw effect. The duration of the simulated event varies for different areas, and the highest probability of recording the event in proxy archives is in the North Atlantic Ocean area north of 40° N. Our results may facilitate the interpretation of proxy archives recording the 8.2 ka event, as they show that timing and duration cannot be assumed to correspond with the timing and duration of the event as recorded in Greenland ice cores. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   
68.
The south‐west region of the Goulburn–Broken catchment in the south‐eastern Murray–Darling Basin in Australia faces a range of natural resource challenges. A balanced strategy is required to achieve the contrasting objectives of remediation of land salinization and reducing salt export, while maintaining water supply security to satisfy human consumption and support ecosystems. This study linked the Catchment Analysis Tool (CAT), comprising a suite of farming system models, to the catchment‐scale CATNode hydrological model to investigate the effects of land use change and climate variation on catchment streamflow and salt export. The modelling explored and contrasted the impacts of a series of different revegetation and climate scenarios. The results indicated that targeted revegetation to only satisfy biodiversity outcomes within a catchment is unlikely to have much greater impact on streamflow and salt load in comparison with simple random plantings. Additionally, the results also indicated that revegetation to achieve salt export reduction can effectively reduce salt export while having a disproportionately smaller affect on streamflows. Furthermore, streamflow declines can be minimized by targeting revegetation activities without significantly altering salt export. The study also found that climate change scenarios will have an equal if not more significant impact on these issues over the next 70 years. Uncertainty in CATNode streamflow predictions was investigated because of the effect of parameter uncertainty. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   
69.
Effects of agricultural land management practices on surface runoff are evident at local scales, but evidence for watershed‐scale impacts is limited. In this study, we used the Soil and Water Assessment Tool model to assess changes in downstream flood risks under different land uses for the large, intensely agricultural, Raccoon River watershed in Iowa. We first developed a baseline model for flood risk based on current land use and typical weather patterns and then simulated the effects of varying levels of increased perennials on the landscape under the same weather patterns. Results suggest that land use changes in the Raccoon River could reduce the likelihood of flood events, decreasing both the number of flood events and the frequency of severe floods. The duration of flood events were not substantially affected by land use change in our assessment. The greatest flood risk reduction was associated with converting all cropland to perennial vegetation, but we found that converting half of the land to perennial vegetation or extended rotations (and leaving the remaining area in cropland) could also have major effects on reducing downstream flooding potential. We discuss the potential costs of adopting the land use change in the watershed to illustrate the scale of subsidies required to induce large‐scale conversion to perennially based systems needed for flood risk reduction. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   
70.
The ability to model and predict the formation of desiccation cracks is potentially beneficial in many applications such as clay liner design, earth dam construction, and crop science, etc. However, most studies have focused on statistical analysis of crack patterns and qualitative study of contributing factors to crack development rather than prediction. Because it is exceedingly difficult to capture the nonlinear processes during desiccation in analytical modelling, most such models handle crack formation without considering variation of material properties with time, and are unattractive to use in realistic modelling. The data obtained from laboratory experiments on clay soil desiccating in moulds were used as a basis to develop a more refined model of desiccation cracking. In this study, the properties, such as matric suction, stiffness and tensile strength of soil, and base adhesion, could be expressed approximately as functions of moisture content. The initial conditions and the development of suction due to desiccation and the varying material properties were inputted to UDEC, a distinct element code, using its internal programming language FISH. The model was able to capture some essential physical aspects of crack evolution in soil contained in moulds with varying lengths, heights, and materials of construction. Extension of this methodology is potentially beneficial not only for modelling desiccation cracking in clay, but also in other systems with evolving material properties such as concrete structures and road pavements. Copyright © 2010 John Wiley & Sons, Ltd.  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