全文获取类型
收费全文 | 30篇 |
免费 | 7篇 |
国内免费 | 11篇 |
专业分类
测绘学 | 4篇 |
大气科学 | 5篇 |
地球物理 | 6篇 |
地质学 | 22篇 |
海洋学 | 5篇 |
天文学 | 1篇 |
综合类 | 5篇 |
出版年
2023年 | 1篇 |
2022年 | 3篇 |
2021年 | 2篇 |
2019年 | 3篇 |
2017年 | 2篇 |
2014年 | 2篇 |
2013年 | 2篇 |
2012年 | 3篇 |
2010年 | 1篇 |
2009年 | 1篇 |
2008年 | 2篇 |
2007年 | 2篇 |
2006年 | 5篇 |
2005年 | 2篇 |
2004年 | 2篇 |
2003年 | 1篇 |
2002年 | 1篇 |
2001年 | 3篇 |
1998年 | 2篇 |
1997年 | 1篇 |
1995年 | 3篇 |
1993年 | 2篇 |
1988年 | 1篇 |
1987年 | 1篇 |
排序方式: 共有48条查询结果,搜索用时 15 毫秒
1.
平台在海上受风、浪、流、冰等水平载荷作用产生倾斜 ,而土壤粘接力、摩擦力和土抗力是平台的抗拔和抗倾力 ,桶基平台应满足抗拔、抗倾稳定的要求 ,以保证平台的整体稳定性。讨论了桶基平台受水平力作用时 ,桶形基础的破坏模式及其计算方法 ,阐述了抗倾稳定计算方法 相似文献
2.
新疆北部阿尔泰山自渐新世以来,不断发生自北东向南西的掀斜隆升和右行走滑剪切作用,从而对额尔齐斯河、乌伦古河流域的环境,尤其是水系的演化产生重要影响.主要表现在:南北向河流的阶地高差自北东向南西逐渐降低;右行走滑剪切作用使水系同步发生异常弯曲;主河道向西南方向迁移,紧逼西南岸;河道两岸水系和河谷地貌发育不对称;现代地壳形变资料表明,阿尔泰山的掀斜隆升和右行走滑剪切作用仍在继续,由此引起的环境问题还将继续存在和发展.认为由北东向南西的掀斜隆升和右行走滑剪切作用是欧亚大陆阿尔泰山脉西南麓隆升的主要机制. 相似文献
3.
应用构造运动学理论,以地质、地球物理和钻井资料为基础,对汤原断陷基底和各断块体的运动特征进行研究,证实断陷内第Ⅳ块体的基底伸展量最大,第Ⅴ块体的基底伸展量最小;通过对15个块体的实例计算总结出不同构造、不同时期断块体的翘倾运动程度存在很大差异;汤原断陷构造运动控制了油气藏类型.伸展运动和压扭性挤压运动形成构造油气藏,伸展运动早、中期在向斜部位形成岩性油气藏,断块体翘倾运动和抬升剥蚀作用形成地层油气藏. 相似文献
4.
在对太原掀斜构造形迹分析的基础上,通过节理统计,以板块构造和大陆动力学理论为基础,研究了古构造应力场特征和构造演化历程。结果表明:太原掀斜构造由东山背斜、西山向斜和太原断陷组成。中生代以来的构造演化可分为中生代晚期、古近纪及新生代晚期三个阶段。主体构造,即东山背斜、西山向斜以及相伴生的南北向褶曲等都是在中生代晚期北东—南西向右旋力偶作用下形成。区内等距分布的北东东向至东西向的正断层组等次级构造及太原断陷的雏形形成于古近纪北东—南西向左旋力偶。在新生代晚期北西—南东向拉张应力作用下,太原断陷进一步拉张下陷,形成现今构造格局。不同时期应力场和板块构造动力系统不尽相同,但它们之间有继承的特点,其形成演化与区域大陆动力学条件转化和演化一致。 相似文献
5.
The monsoon intraseasonal oscillation (MISO) is the dominant variability over the Indian Ocean during the Indian summer monsoon (ISM) season and is characterized by pronounced northward propagation. Previous studies have shown that general circulation models (GCMs) still have difficulty in simulating the northward-propagating MISO, and that the role of air-sea interaction in MISO is unclear. In this study, 14 atmosphere-ocean coupled GCMs (CGCMs) and the corresponding atmosphere-only GCMs (AGCMs) are selected from Phase 6 of the Coupled Model Intercomparison Project (CMIP6) to assess their performance in reproducing MISO and the associated vortex tilting mechanism. The results show that both CGCMs and AGCMs are able to well simulate the significant relationship between MISO and vortex tilting. However, 80% of CGCMs show better simulation skills for MISO than AGCMs in CMIP6. In AGCMs, the poor model fidelity in MISO is due to the failure simulation of vortex tilting. Moreover, it is found that failure to simulate the downward motion to the north of convection is responsible for the poor simulation of vortex tilting in AGCMs. In addition, it is observed that there is a significant relationship between the simulated sea surface temperature gradient and simulated vertical velocity shear in the meridional direction. These findings indicate that air-sea interaction may play a vital role in simulating vertical motions in tilting and MISO processes. This work offers us a specific target to improve the MISO simulation and further studies are needed to elucidate the physical processes of this air-sea interaction coupling with vortex tilting. 相似文献
6.
7.
根据几年来对嵩山地区的考察和研究 ,通过对夷平面、河流阶地、串珠状洪积扇等诸多地貌现象的分析 ,论述了嵩山地区新构造运动以间歇性抬升运动和掀斜运动为主的特征。 相似文献
8.
Christian Creixell Miguel ngel Parada Pierrick Roperch Diego Morata Csar Arriagada Carlos Prez de Arce 《Tectonophysics》2006,425(1-4):101-122
The Concón Mafic Dike Swarm (CMDS) consists of basaltic to andesitic dikes emplaced into deformed Late Paleozoic granitoids during the development of the Jurassic arc of central Chile. The dikes are divided into an early group of thick dikes (5–12 m) and a late group of thin dikes (0.5–3 m). Two new amphibole 40Ar/39Ar dates obtained from undeformed and deformed dikes, constrain the age of emplacement and deformation of the CMDS between 163 and 157 Ma. Based on radiometric ages, field observations, AMS studies and petrographic data, we conclude that the emplacement of the CMDS was syntectonic with the Jurassic arc extension and associated with sinistral displacements along the NW-trending structures that host the CMDS. The common occurrence of already deformed and rotated xenoliths in the dikes indicates that deformation in the granitoids started previously.The early thick dikes and country rocks appear to have been remagnetized during the exhumation of deep-seated coastal rocks in the Early Cretaceous (around 100 Ma). The remanent magnetization in late thin dikes is mainly retained by small amounts of low-Ti magnetite at high temperature and pyrrhotite at low temperature. The magnetization in these dikes appears to be primary in origin. Paleomagnetic results from the thin dikes also indicate that the whole area was tilted 23° to the NNW during cooling of the CMDS.The NNW–SSE extension vectors deduced from the paleomagnetic data and internal fabric of dikes are different with respect to extension direction deduced for the Middle–Late Jurassic of northern Chile, pointing to major heterogeneities along the margin of the overriding plate during the Mesozoic or differences in the mechanisms driving extension during such period. 相似文献
9.
In this study,the effect of vertical wind shear(VWS)on the intensification of tropical cyclone(TC)is investigated via the numerical simulations.Results indicate that weak shear tends to facilitate the development of TC while strong shear appears to inhibit the intensification of TC.As the VWS is imposed on the TC,the vortex of the cyclone tends to tilt vertically and significantly in the upper troposphere.Consequently,the upward motion is considerably enhanced in the downshear side of the storm center and correspondingly,the low-to mid-level potential temperature decreases under the effect of adiabatic cooling,which leads to the increase of the low-to mid-level static instability and relative humidity and then facilitates the burst of convection.In the case of weak shear,the vertical tilting of the vortex is weak and the increase of ascent,static instability and relative humidity occur in the area close to the TC center.Therefore,active convection happens in the TC center region and facilitates the enhancement of vorticity in the inner core region and then the intensification of TC.In contrast,due to strong VWS,the increase of the ascent,static instability and relative humidity induced by the vertical tilting mainly appear in the outer region of TC in the case with stronger shear,and the convection in the inner-core area of TC is rather weak and convective activity mainly happens in the outer-region of the TC.Therefore,the development of a warm core is inhibited and then the intensification of TC is delayed.Different from previous numerical results obtained by imposing VWS suddenly to a strong TC,the simulation performed in this work shows that,even when the VWS is as strong as 12 m s-1,the tropical storm can still experience rapid intensification and finally develop into a strong tropical cyclone after a relatively long period of adjustment.It is found that the convection plays an important role in the adjusting period.On one hand,the convection leads to the horizontal convergence of the low-level vorticity flux and therefore leads to the enhancement of the low-level vorticity in the inner-core area of the cyclone.On the other hand,the active ascent accompanying the convection tends to transport the low-level vorticity to the middle levels.The enhanced vorticity in the lower to middle troposphere strengths the interaction between the low-and mid-level cyclonical circulation and the upper-level circulation deviated from the storm center under the effect of VWS.As a result,the vertical tilting of the vortex is considerably decreased,and then the cyclone starts to develop rapidly. 相似文献
10.