首页 | 官方网站   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   6781篇
  免费   560篇
  国内免费   715篇
地球科学   8056篇
  2024年   24篇
  2023年   76篇
  2022年   338篇
  2021年   394篇
  2020年   356篇
  2019年   342篇
  2018年   251篇
  2017年   368篇
  2016年   371篇
  2015年   370篇
  2014年   342篇
  2013年   501篇
  2012年   396篇
  2011年   359篇
  2010年   314篇
  2009年   357篇
  2008年   379篇
  2007年   380篇
  2006年   330篇
  2005年   297篇
  2004年   295篇
  2003年   217篇
  2002年   188篇
  2001年   174篇
  2000年   123篇
  1999年   77篇
  1998年   95篇
  1997年   97篇
  1996年   57篇
  1995年   34篇
  1994年   30篇
  1993年   19篇
  1992年   30篇
  1991年   17篇
  1990年   14篇
  1989年   10篇
  1988年   7篇
  1987年   5篇
  1986年   5篇
  1985年   6篇
  1984年   5篇
  1983年   2篇
  1982年   2篇
  1980年   1篇
  1979年   1篇
排序方式: 共有8056条查询结果,搜索用时 15 毫秒
1.
The crop estimates by remote sensing, developing quickly in recent decades, is a up-to-date technique. Regionalization for large area crop estimates by remote sensing, a special applied regionalization, is the foundation of crop estimates in a large area by remote sensing. According to the actual demands of wheat yield estimation by remote sensing and wheat agroclimatic demarcation of China, this paper first puts forward some principles upheld in this regionalization and analyses its main bases. Secondly, it works out the classificatory schemes about the optimum temporal for estimating wheat yield by remote sensing, information sources of space remote sensing and landuse structure in China. Finally, According to the regionalization indices, this study divides the wheat plantable region of China into 14 regions of crop yield estimates and 31 subregions of crop yield estimates.  相似文献   
2.
Images from satellite platforms are a valid aid in order to obtain distributed information about hydrological surface states and parameters needed in calibration and validation of the water balance and flood forecasting. Remotely sensed data are easily available on large areas and with a frequency compatible with land cover changes. In this paper, remotely sensed images from different types of sensor have been utilized as a support to the calibration of the distributed hydrological model MOBIDIC, currently used in the experimental system of flood forecasting of the Arno River Basin Authority. Six radar images from ERS‐2 synthetic aperture radar (SAR) sensors (three for summer 2002 and three for spring–summer 2003) have been utilized and a relationship between soil saturation indexes and backscatter coefficient from SAR images has been investigated. Analysis has been performed only on pixels with meagre or no vegetation cover, in order to legitimize the assumption that water content of the soil is the main variable that influences the backscatter coefficient. Such pixels have been obtained by considering vegetation indexes (NDVI) and land cover maps produced by optical sensors (Landsat‐ETM). In order to calibrate the soil moisture model based on information provided by SAR images, an optimization algorithm has been utilized to minimize the regression error between saturation indexes from model and SAR data and error between measured and modelled discharge flows. Utilizing this procedure, model parameters that rule soil moisture fluxes have been calibrated, obtaining not only a good match with remotely sensed data, but also an enhancement of model performance in flow prediction with respect to a previous calibration with river discharge data only. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   
3.
Eight-year-old Loblolly pine (Pinus taeda) plots located in South Carolina were evaluated using high resolution aircraft multispectral scanner data to determine if biomass could be accurately measured. Sixteen pine plots located on both sandy and clay soils were treated with 0, 180, or 360 kg. (approximately 0, 400, or 800 lb.) of nitrogen per plot. Indices of biomass from remote sensing data were significantly correlated with in situ biomass measurements made in each plot. A ratio of infrared (.9–1.1 μm) and red (.65–.70 μm) channels yielded the best correlation. The indices were not sensitive to differences in soil type (sandy or clay).  相似文献   
4.
以《遥感概论》省级精品课程建设为例,探讨精品课程教学基本建设与教学改革。认为高素质的教师队伍是精品课建设的基础,课程体系和教学内容的设计是精品课建设的关键,课程网站是精品课程建设的必备条件,学生综合能力提高是精品课建设的目标,并结合课程教学实践,提出了相应的建设措施。  相似文献   
5.
基于卫星遥感的鲁西北季节性风沙化土地研究   总被引:7,自引:0,他引:7  
文章对鲁西北地区季节性风沙化土地的分布、特征及近20年来的演变做了初步的分析,阐述了该地区风沙化土地的成因及其危害,在肯定已有治沙成绩的基础上,就如何合理利用和改造这些土地提出了合理布局农田林网、地一步完善农田水利设施等意见和建议。  相似文献   
6.
介绍了基于现代通讯技术ADSL及GPRS的两种远程监控方式在自动化测量系统工程中的应用。获得的结论对于相关技术及专业的应用研究具有一定的借鉴作用。  相似文献   
7.
During SESAME phase I ground-based FTIR measurements were performed atEsrange near Kiruna, Sweden, from 28 January to 26 March 1994. Zenith columnamounts of ClONO2, HCl, HF, HNO3,O3, N2O, CH4, and CFC-12 werederived from solar absorption spectra. Time series of ClONO2and HCl indicate a chlorine activation at the end of January and around 1March. On 1 March a very low amount of HCl of 2.09times; 1015molec. cm-2 was detected, probably caused by a second chlorineactivation phase starting from an already decreased amount of HCl. The ratioof column amounts of HCl to ClONO2 decreased inside the vortexfrom about 1 in January to 0.4 in late March compared to values of about 2outside the vortex. Although the Arctic stratosphere was rather warm in winter1993/94 and PSCs occurred seldom, chlorine partitioning into its reservoirspecies HCl and ClONO2 changed during that winter andClONO2 is the major chlorine reservoir at the end of thewinter as in cold winters like 1991/92 and 1994/95.  相似文献   
8.
植被冠层多角度遥感研究进展   总被引:7,自引:0,他引:7  
高峰  朱启疆 《地理科学》1997,17(4):346-355
综述了近年来关于植被冠层多角度遥感研究的最新成果,分别讨论了二向性反射的正向模型和参量反演问题在理论和实际应用中的新进展。分析了卫星平台多角度遥感的应用前景及面临的困难,指出了未来多角度遥感研究的新方向。  相似文献   
9.
遥感技术在区域地质调查中的应用研究进展   总被引:10,自引:0,他引:10  
论述了1∶5万区域地质调查中的图像信息理论及其应用意义;讨论了遥感岩石学、影像地层学、遥感构造分析、环境地质与生态地质遥感地质解译填图的基础理论和方法;论述了影像地质界线的基本信息类型及其信息理解过程;提出了影像地质信息的多级识别方法和空间模糊叠加分析方法;最后探讨了区域地质调查中遥感技术的发展趋势。  相似文献   
10.
杨琨  杨柏林 《矿物学报》1996,16(3):321-326
采用航空短波红外分光谱遥感技术,在新疆准噶尔盆地和塔里木盆地某些油气区,进行直接寻找油气资源的试验研究后发现,油气区含油岩系,油气藏上方盖层土壤的光谱在2300和2350nm波段具有双吸收特征。  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-23

京公网安备 11010802026262号