全文获取类型
收费全文 | 4454篇 |
免费 | 770篇 |
国内免费 | 1022篇 |
专业分类
测绘学 | 321篇 |
大气科学 | 907篇 |
地球物理 | 938篇 |
地质学 | 2336篇 |
海洋学 | 616篇 |
天文学 | 203篇 |
综合类 | 461篇 |
自然地理 | 464篇 |
出版年
2024年 | 24篇 |
2023年 | 95篇 |
2022年 | 218篇 |
2021年 | 221篇 |
2020年 | 172篇 |
2019年 | 187篇 |
2018年 | 231篇 |
2017年 | 203篇 |
2016年 | 230篇 |
2015年 | 227篇 |
2014年 | 267篇 |
2013年 | 252篇 |
2012年 | 254篇 |
2011年 | 238篇 |
2010年 | 313篇 |
2009年 | 288篇 |
2008年 | 228篇 |
2007年 | 203篇 |
2006年 | 160篇 |
2005年 | 148篇 |
2004年 | 96篇 |
2003年 | 119篇 |
2002年 | 121篇 |
2001年 | 127篇 |
2000年 | 136篇 |
1999年 | 198篇 |
1998年 | 144篇 |
1997年 | 164篇 |
1996年 | 153篇 |
1995年 | 135篇 |
1994年 | 126篇 |
1993年 | 102篇 |
1992年 | 95篇 |
1991年 | 77篇 |
1990年 | 61篇 |
1989年 | 52篇 |
1988年 | 42篇 |
1987年 | 17篇 |
1986年 | 31篇 |
1985年 | 19篇 |
1984年 | 15篇 |
1983年 | 16篇 |
1982年 | 9篇 |
1981年 | 11篇 |
1980年 | 9篇 |
1978年 | 2篇 |
1977年 | 3篇 |
1975年 | 2篇 |
1958年 | 1篇 |
1949年 | 1篇 |
排序方式: 共有6246条查询结果,搜索用时 10 毫秒
1.
Vertical drains are usually installed in subsoil consisting of several layers. Due to the complex nature of the problem, over the past decades, the consolidation properties of multi‐layered ground with vertical drains have been analysed mainly by numerical methods. An analytical solution for consolidation of double‐layered ground with vertical drains under quasi‐equal strain condition is presented in this paper. The main steps for the computation procedure are listed. The convergence of the series solution is discussed. The comparisons between the results obtained by the present analytical method and the existing numerical solutions are described by figures. The orthogonal relation for the system of double‐layered ground with vertical drains is proven. Finally, some consolidation properties of double‐layered ground with vertical drains are analysed. Copyright © 2001 John Wiley & Sons, Ltd. 相似文献
2.
Himalayan magmatism and porphyry copper–molybdenum mineralization in the Yulong ore belt, East Tibet
Summary ?The NW–SE-trending Yulong porphyry Cu–Mo ore belt, situated in the Sanjiang0 area of eastern Tibet, is approximately 400 km
long and 35 to 70 km wide. Complex tectonic and magmatic processes during the Himalayan epoch have given rise to favorable
conditions for porphyry-type Cu–Mo mineralization.
Porphyry masses of the Himalayan epoch in the Yulong ore belt are distributed in groups along regional NW–SE striking tectonic
lineaments. They were emplaced mainly into Triassic and Lower Permian sedimentary-volcanic rocks. K–Ar und U–Pb isotopic datings
give an intrusion age range of 57–26 Ma. The porphyries are mainly of biotite monzogranitic and biotite syenogranitic compositions.
Geological and geochemical data indicate that the various porphyritic intrusions in the belt had a common or similar magma
source, are metaluminous to peraluminous, Nb–Y–Ba-depleted, I-type granitoids, and belong to the high-K calc-alkaline series.
Within the Yulong subvolcanic belt a number of porphyry stocks bear typical porphyry type Cu–Mo alteration and mineralization.
The most prominent porphyry Co–Mo deposits include Yulong, Malasongduo, Duoxiasongduo, Mangzong and Zhanaga, of which Yulong
is one of the largest porphyry Cu (Mo) deposits in China with approximately 8 × 106 tons of contained Cu metal. Hydrothermal alteration at Yulong developed around a biotite–monzogranitic porphyry stock that
was emplaced within Upper Triassic limestone, siltstone and mudstone. The earliest alteration was due to the effects of contact
metamorphism of the country rocks and alkali metasomatism (potassic alteration) within and around the porphyry body. The alteration
of this stage was accompanied by a small amount of disseminated and veinlet Cu–Mo sulfide mineralization. Later alteration–mineralization
zones form more or less concentric shells around the potassic zone, around which are distributed a phyllic or quartz–sericite–pyrite
zone, a silicification and argillic zone, and a propylitic zone.
Fluid inclusion data indicate that three types of fluids were involved in the alteration–mineralization processes: (1) early
high temperature (660–420 °C) and high salinity (30–51 wt% NaCl equiv) fluids responsible for the potassic alteration and
the earliest disseminated and/or veinlet Cu–Mo sulfide mineralization; (2) intermediate unmixed fluids corresponding to phyllic
alteration and most Cu–Mo sulfide mineralization, with salinities of 30–50 wt% NaCl equiv and homogenization temperatures
of 460–280 °C; and (3) late low to moderate temperature (300–160 °C) and low salinity (6–13 wt% NaCl equiv) fluids responsible
for argillic and propylitic alteration. Hydrogen and oxygen isotopic studies show that the early hydrothermal fluids are of
magmatic origin and were succeeded by increasing amounts of meteoric-derived convective waters. Sulfur isotopes also indicate
a magmatic source for the sulfur in the early sulfide mineralization, with the increasing addition of sedimentary sulfur outward
from the porphyry stock.
Received August 29, 2001; revised version accepted May 1, 2002
Published online: November 29, 2002 相似文献
3.
4.
介绍了一种新颖的静态传感器网络实现方法,它利用可移动的中继节点来收集静态传感器网络的数据,有效的节约各传感器节点的能源,延长整个传感器网络的有效工作时间。也可以对该方法进行适当的改进,应用到某些实时性要求较高的场合中去。然后介绍了应用该原理实现的一个通讯协议。 相似文献
5.
6.
7.
Zhou Haiyan Zhou Xun Chai Rui Yu Lan Liu Chunhui Li Liangping 《Environmental Geology》2008,53(7):1483-1489
Thermal groundwater occurs in bedrock aquifers consisting of the dolomite of the Wumishan Group of the Jixianin System and
the Cambrian carbonate in the Xiaotangshan geothermal field near the northern margin of the North China Plain, China. The
hot water in the geothermal field of basin-type discharges partly in the form of the Xiaotangshan hot spring under natural
conditions. The hot water has TDS of less than 600 mg/L and is of Na·Ca-HCO3 type. The geothermal water receives recharge from precipitation in the mountain area with elevation of about 500 m above
sea level to the north of the spring. Thermal groundwater flows slowly south and southeast through a deep circulation with
a residence time of 224 years estimated with the Ra–Rn method. The Xiaotangshan hot spring dried up in the middle of the 1980s
owing to the increasing withdrawal of the hot water in the geothermal field in the past decades. The water level of the geothermal
system still falls continually at an annual average rate of about 2 m, although water temperature changes very little, indicating
that the recharge of such a geothermal system of basin-type is limited. Over-exploitation has a dramatic impact on the geothermal
system, and reduction in exploitation and reinjection are required for the sustainable usage of the hot water. 相似文献
8.
9.
河南洛宁段河金矿流体包裹体研究和矿床成因 总被引:2,自引:1,他引:1
河南省洛宁县段河石英脉型金矿主要包括石寨沟和岭东两个矿区,分别由3~4条含金石英脉构成。矿化过程从早到晚包括石英-黄铁矿、石英-多金属硫化物和石英-碳酸盐等3个阶段.其中中阶段金矿化最强,次为早阶段。各阶段石英中流体包裹体以气液两相包裹体为主.次为纯液体包裹体。激光拉曼测试表明,气液两相包裹体的液相为H2O,气相主要为Ho和CO2混合、纯H2O,次为纯CO2;纯液体包裹体为纯H2O。石寨沟矿区包裹体均一温度从早到晚依次为240.9~315.9℃.188.7~304.5℃,137.3~259.3℃:流体盐度变化依次为(6.74~12.85)wt%NaCl.eq,(2.41~8.68)wt%NaCl.eq,(2.24-7.86)wt%NaCl.eq。岭东矿区均一温度从早到晚依次为303.7-343.1℃,251.8-325.4℃,305.7~355.0℃:流体盐度变化依次为(5.11~11.70)wt%NaCl.eq,(2.74-10.11)wt%NaCl.eq,(0.53-6.74)wt%NaCl.eq。两矿区主成矿期流体均为中温、低盐度,早阶段流体为改造热液和变质热液的混合体,含一定量CO2,且流体CO2含量和盐度从早到晚逐渐降低。石寨沟矿区包裹体均一温度逐渐降低,而岭东矿区包裹体均一温度先降后升,加之岭东矿区各阶段成矿温度均高于石寨沟矿区.表明成矿流体系统主要受岩浆热驱动,岭东矿区更靠近岩体,且在晚阶段又有脉动性的岩浆加热.段河金矿区南部存在隐伏岩体。 相似文献
10.
本文根据有机地球化学资料,首次研究和探讨了珠江三角洲晚第四纪沉积物中有机质丰度和可溶有机质的组成特征。现代沉积物有机质丰度,有机碳为0.58%,氯仿沥青“A”为210ppm,烃含量为33.8ppm;钻孔中有机碳为0.77%,氯仿沥青“A”为253ppm,烃含量为16.4ppm。从有机质组成、红外吸收光谱特征、δ~(13)C、干酪根H/C原子比,均表现为陆生植物为主,水生生物为铺,为腐殖型或腐泥—腐殖型的母质类型。 相似文献