全文获取类型
收费全文 | 562篇 |
免费 | 110篇 |
国内免费 | 134篇 |
专业分类
测绘学 | 50篇 |
大气科学 | 78篇 |
地球物理 | 120篇 |
地质学 | 352篇 |
海洋学 | 62篇 |
天文学 | 36篇 |
综合类 | 45篇 |
自然地理 | 63篇 |
出版年
2024年 | 3篇 |
2023年 | 8篇 |
2022年 | 9篇 |
2021年 | 33篇 |
2020年 | 25篇 |
2019年 | 31篇 |
2018年 | 19篇 |
2017年 | 18篇 |
2016年 | 31篇 |
2015年 | 24篇 |
2014年 | 26篇 |
2013年 | 30篇 |
2012年 | 22篇 |
2011年 | 34篇 |
2010年 | 20篇 |
2009年 | 26篇 |
2008年 | 27篇 |
2007年 | 25篇 |
2006年 | 31篇 |
2005年 | 11篇 |
2004年 | 27篇 |
2003年 | 44篇 |
2002年 | 60篇 |
2001年 | 58篇 |
2000年 | 29篇 |
1999年 | 24篇 |
1998年 | 20篇 |
1997年 | 18篇 |
1996年 | 12篇 |
1995年 | 12篇 |
1994年 | 7篇 |
1993年 | 13篇 |
1992年 | 7篇 |
1991年 | 6篇 |
1990年 | 2篇 |
1989年 | 2篇 |
1988年 | 2篇 |
1987年 | 3篇 |
1986年 | 1篇 |
1985年 | 4篇 |
1979年 | 2篇 |
排序方式: 共有806条查询结果,搜索用时 15 毫秒
91.
直接利用光学遥感卫星的严格成像模型对地面点进行定位,定位误差与卫星姿态测量误差有关,其中包括地球自转引起的偏流角误差和姿态角常差。偏流角误差可以根据星历数据予以有效消除,而姿态角常差一般要利用少量控制点进行消除。基于此,在消除偏流角的影响下,这里采用了一种改进的四元数算法——P-H算法用于快速计算姿态角常差,并对系统误差进行补偿。该技术较常用的欧拉角解算,具有原理简单,计算速度快和结果稳定的特点。通过实践九号卫星影像的实验表明,运用该技术能快速和大幅度提高卫星在稀少控制点情况下的定位精度。 相似文献
92.
回顾了日冕磁的研究历史,介绍了我们首镒提出的日冕磁场的微波诊断方法及其应用的带来的启迪,提出进一步开展日冕磁场及其相关研究的建议。 相似文献
93.
本文介绍了北京天文台观测到的太阳射电10厘米波段的毫秒级快速精细结构(FFS)中一类有长持续时间的尖峰(我们称毫秒时标记录上陡升陡降图形为“尖峰”,称秒级时标的记录上的陡升陡降图形为“脉冲”)群事件。这一类微波毫秒尖峰群(MMS)事件具有一系列显著的特点: 1)它在秒级时间常数的慢速记录上常常对应一8S型(持续时间小于1分钟的脉冲)的爆发。因而利用脉冲的频谱特性,对这一类微波爆发中的毫秒精细结构的特征及可能的机制进行探讨,以弥补目前只能在一个波段上观测FFS事件的缺陷。 2)这一类脉冲爆发具有从低频向高频的频漂(正的频漂),而且频漂的速率随频率带增加而增加。 3)脉冲的幅度在波长8—10厘米间受到强烈的衰减。 4)脉冲群中的每一脉冲的极大频率及起始频率从高频逐渐移向低频,意昧着激发源逐渐上升。估计上升速度约为50公里/秒。 5)这类脉冲常常出现在有δ型磁结构、最大磁场强度大于2500高斯的复杂活动区中,可能有不同级别的耀斑与之对应。 6)这类脉冲与硬X线爆发事件、分米波段快速频漂事件及“BLIPS”事件见文[7]有密切的关系。 7)这一类微波快速尖峰群事件可以解释为来自耀斑-爆发事件中形成的电子加速中心的快速非热电子流向下运动穿入一耀斑环激起的电子迴旋脉泽辐射。 相似文献
94.
Wang Shujuan Yan Yihua Zhao Ruizhen Fu Qijun Tan Chengming Xu Long Wang Shijin Lin Huaan 《Solar physics》2001,204(1-2):153-164
25 MHz–7.6 GHz global and detailed (fine structure – FS) radio spectra are presented, which were observed in the NOAA 9077
active region for the Bastille Day (14 July 2000) flare at 10:10–11:00 UT. Besides broadband radio bursts, high-resolution
dynamic spectra reveal metric type II burst, decimetric type IV burst and various decimetric and microwave FSs, such as type III
bursts, type U bursts, reverse-slope (RS)-drifting burst, fiber bursts, patch and drifting pulsation structure (DPS). The
peak-flux-density spectrum of the radio bursts over the range 1.0–7.6 GHz globally appears as a U-shaped signature. Analyzing
the features of backbone and herringbones of the type II burst, the speeds of shock and relevant energetic electron beams
were estimated to be 1100 km s−1 and 58 500 km s−1, respectively. Also the time sequence of the radio emission is analyzed by comparing with the hard X-rays (HXRs) and the
soft X-rays (SXRs) in this flare. After the maxima of the X-rays, the radio emission in the range 1.0–7.6 GHz reached maxima
first at the higher frequency, then drifted to the lower frequency. This comparison suggested that the flare included three
successive processes: firstly the X-rays rose and reached maxima at 10:10–10:23 UT, accompanied by fine structures only in
the range 2.6–7.6 GHz; secondly the microwave radio emission reached maxima accompanied by many fine structures over the range
1.0–7.6 GHz at 10:23–10:34 UT; then a decimetric type IV burst and its associated FSs (fibers) in the range 1.0–2.0 GHz appeared
after 10:40 UT. 相似文献
95.
96.
利用1951—2006年中央气象台寒潮天气过程数据以及NCEP/NCAR 500 hPa高度场等逐日再分析资料,通过客观聚类方法与主观对比分析确定寒潮爆发的典型形势场,结合寒潮过程特征量阈值,建立了基于TIGGE集合预报产品的寒潮自动识别客观预报方法,并利用TIGGE集合预报数据对2008年1月和2009年1月两次寒潮天气过程进行预报试验。结果表明:利用500 hPa高度距平场进行聚类分析,一方面可以消除环流季节特征对划分结果的影响,另一方面也突出了寒潮这种强天气的异常扰动表现;基于集合预报产品的寒潮自动识别预报方法浓缩了集合预报产品信息,可直接为预报员提供寒潮发生的概率预报,从而在集合预报产品与我国实际灾害性天气之间建立了直接联系。 相似文献
97.
利用TRMM卫星资料对人工增雨云系模式云微观场预报能力的检验 总被引:6,自引:0,他引:6
文中利用TRMM卫星测雨雷达探测反演的云水、雨水、云冰和降冰4种云参数产品及实况降水资料,对比检验该人工增雨云系业务模式对云微观场和地面降水场的预报能力.结果表明,人工增雨云系模式系统对降水的预报能力要略优于现行业务运行的GRAPES模式;人工增雨云系模式系统能较好地预报云系系统云物理微观量的垂直结构特征,模式预报的微观场与卫星监测吻合较好;在播撒窗区的水平分布上,模式预报的各水凝物分布形势和强中心位置与卫星监测一致,其大小也接近监测值;人工增雨云系模式能较好地预报云的微观场和天气形势场,可作为云系人工增雨条件决策的重要参考依据. 相似文献
98.
我国大雾的时空分布特征及其发生的环流形势 总被引:21,自引:6,他引:15
根据1971~2005年35年来714站大雾资料,统计了我国大雾的时空分布特征和环流形势.结果表明:年平均大雾最多的地区主要集中在四川盆地、重庆、云南南部、湖南和江南东部;雾日有明显的季节和月际变化,春、夏季雾的范围较小,秋、冬季雾的范围较大,内陆雾主要为(秋)冬季正态分布型,东北的雾夏季偏多,沿海雾春、夏季较多.雾通常开始于晚上20时(北京时间,下同)至次日早晨8时(以6~7时为最多),结束于8~12时,持续时间大多在1~10 h,持续3h的雾出现的频数最高.近35年雾日的线性趋势表明:江南、华南的雾日变化不明显,其余大部分地区的雾日都呈递减趋势,不同能见度的雾日在1985年前后基本上都呈相反的变化趋势,并且能见度越低的雾日变化越明显.主要考虑地面天气形势我国大范围大雾发生的环流形势可分为均压型和锋前型两大类型. 相似文献
99.
Jian ZHANG Tianyao HAO Miao DONG Ya XU Beiyu WANG Yifei AI Gui FANG 《中国科学:地球科学(英文版)》2021,64(2):278-293
The Sulawesi Sea and Sulawesi Island are located in the western Pacific area where volcanic activity,plate subduction,and seismic activity are very active.The Sulawesi basin formed during the Middle Eocene-Late Eocene and nearly half of the Eocene oceanic crust has subducted below the North Sulawesi Trench.The Sulawesi Island was spliced and finalized in the Early Pliocene-Pleistocene during volcanic activity and is recently very active.This area is an optimal location to study volcanic geothermal conditions and subduction initiation mechanisms in the southern part of the western Pacific plate margin,which are important in geothermal and geodynamic research.In this study,we combined 133 heat flow data with gravity and magnetic data to calculate the Moho structure and Curie point depth of the Sulawesi Sea and periphery of the Sulawesi Island,and analyze the distribution characteristics of the geothermal gradient and thermal conductivity.The results show that the average depths of the Moho and Curie surfaces in this area are 18.4 and 14.3 km,respectively,which is consistent with the crustal velocity layer structure in the Sulawesi Basin previously determined by seismic refraction.The average geothermal gradient is 4.96°C(100 m)-1.The oceanic area shows a high geothermal gradient and low thermal conductivity,whereas the land area shows a low geothermal gradient and high thermal conductivity,both of which are consistent with statistical results of the geothermal gradient at the measured heat flow points.The highest geothermal gradient zone occurs in the transition zone from the Sulawesi Sea to Sulawesi Island,corresponding to the spreading ridge of the southward-moving Sulawesi Basin.Comprehensive gravity,magnetic,and geothermal studies have shown a high crustal geothermal gradient in the study area,which is conducive to the subduction initiation.The northern part of the Palu-koro fault on the western side of Sulawesi is likely the location where subduction initiation is occurring.During the process of moving northwest,the northern and eastern branches of Sulawesi Island have different speeds;the former is slow and the latter is fast.These branches also show different deep tectonic dynamic directions;the northern branch tilts north-up and the eastern branch tilts north-down. 相似文献
100.
Yan Guo Herong Gui Jiuchuan Wei Zhi Zhang Mancong Hu Pei Fang Guangping Li Chuan Gao Xin Wang 《Ground water》2021,59(2):256-265
Permian coal measure sandstone fissure water (referred to as “coal measure water,” that is, water in coal measures) is one of the important water sources for industrial and agricultural activities in mining areas. However, the regional high-pressure grouting, one of the most widely used floor control methods, may affect the coal measure water which is connected with limestone aquifer. This study used Taoyuan mine, a typical coal mine in Huaibei coalfield, as the research area to study the influencing mechanism of a grouting treatment on the hydrogeochemical evolution of coal measure water. The hydrogeochemical characteristics and water-rock interaction mechanism of the coal measure water before and during the treatment were evaluated using a Piper trigram, ion combination ratio, and hydrogen-oxygen stable isotope. The anions and cations in the coal measure water before and during the treatment had the same trends at SO42− > HCO3− > Cl− and Na+ > Ca2+ > Mg2+, respectively. Hydrochemical types of coal measure water before treatment were mainly SO4·Cl-Ca·Mg, SO4·Cl-Na, and HCO3-Na, and during treatment they were mainly SO4·Cl-Na and HCO3-Na. The formation of chemical components of coal measure water before treatment was mainly caused by carbonate dissolution, sulfate dissolution, and pyrite oxidation. During the treatment, sulfate dissolution and pyrite oxidation were the main geochemical processes, and ion exchange was enhanced. Atmospheric precipitation was the source of all water samples, and all showed an obvious 18O drift. 相似文献