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   235篇
  免费   54篇
  国内免费   29篇
测绘学   9篇
大气科学   2篇
地球物理   24篇
地质学   57篇
海洋学   177篇
综合类   24篇
自然地理   25篇
  2024年   2篇
  2023年   4篇
  2022年   7篇
  2021年   8篇
  2020年   16篇
  2019年   12篇
  2018年   12篇
  2017年   7篇
  2016年   11篇
  2015年   10篇
  2014年   14篇
  2013年   14篇
  2012年   9篇
  2011年   21篇
  2010年   16篇
  2009年   14篇
  2008年   13篇
  2007年   12篇
  2006年   18篇
  2005年   17篇
  2004年   8篇
  2003年   12篇
  2002年   11篇
  2001年   7篇
  2000年   4篇
  1999年   8篇
  1998年   4篇
  1997年   3篇
  1996年   4篇
  1995年   1篇
  1994年   3篇
  1993年   3篇
  1992年   3篇
  1991年   3篇
  1990年   2篇
  1989年   2篇
  1988年   2篇
  1987年   1篇
排序方式: 共有318条查询结果,搜索用时 15 毫秒
131.
粤东后江湾近岸带风-浪-流联合作用下的泥沙输运   总被引:2,自引:0,他引:2  
在现场观测资料分析基础上,应用波-流联合输沙模型,对粤东后江岬间海湾近岸带净环流、泥沙输运作用加以模拟分析,结果表明,东北东向风是形成近岸西南向净环流的主要驱动力,波浪控制了海底泥沙再悬浮和底质推移输运的过程,从而形成海湾海底地形以东北部侵蚀为主、西南部以淤积为主的发展趋势.  相似文献   
132.
古新世以来郯庐断裂的位移量及其对莱州湾凹陷的控制   总被引:4,自引:2,他引:2  
高分辨三维地震可视化及方差切片分析显示,郯庐断裂渤海海域莱州湾段北北东向断裂系发育。断层在水平方差切片上的拖拽现象、断裂带内部断层的组合关系以及凹陷沉积中心的迁移等,表明古新世以来该区存在右旋走滑运动。假设在东、西两支断层的走滑拉分作用下,根据可容纳空间不变原理,设计了三角形模型、长方形模型、半地堑型模型以及地堑型模型共四种模型,计算莱州湾凹陷南北长度和凹陷深度的关系,其中半地堑模型计算得到的郯庐断裂的水平位移为7km。结合断层的平面分布和断层的切割关系,表明古新世以来郯庐断裂的走滑拉分作用难以控制莱州湾凹陷的形成,走滑拉分作用只是在走滑断裂带内部形成了局部小型洼地,其规模很小,影响非常有限。  相似文献   
133.
河海交互作用与苏北平原成因*   总被引:17,自引:14,他引:3       下载免费PDF全文
苏北平原向海侧分布着大冈、上冈两列古贝壳堤以及依此而建的范公堤;西侧有低山丘陵环绕,江淮水系河流汇入平原内侧的湖泊群,发育了伸出型三角洲;兴化、里下河地区是平原的最低洼处。这一系列地貌组合与分布特点,启迪着探究平原的成因。146m深的宝应望直港钻孔,穿透了2.58Ma以来的第四纪地层。沉积相、微体古生物、古地磁测定与沉积层常量元素分析等综合研究,阐明了4次主要的海洋作用沉积环境,尤其是晚更新世3.9~2.6万年前的浅海环境沉积更为显著。河湖相泛滥平原沉积与潮滩浅海沉积交互成层,证实了苏北平原是第四纪时期由河-海交互作用,从古海湾发育堆积成宽大平原。进一步工作需探索相关时期的江-海分布变化及黄河和黄渤海通道与苏北平原发育的关系。  相似文献   
134.
Synthetical analyzing the deep geophysical data within Bohai bay basin the authors detect the deep crustal struc-ture presenting high geothermal flux, thinned crust and arched Moho discontinuity, and the basin basement belongs to rigid continental crust. The development of the basin was controlled by two - dimensional faults in NNE and NWW directions. The tectonic units of the basin can be subdivided into three structural divisions: the east, middle and west division. The basin is considered as a continental rift. The tectonic background and regional right條ateral stress field during the late Cretaceous and Paleogene were a compound result of the Kula Plate W-directional subducting under Eurasia Continental Plate in 80-74Ma and the Philippine sea Plate W-directional subducting under the Eurasia Continental Plate since 60Ma, the long -rang effect of the India Continental Plate wedging into the Eurasia Continental Plate and of the Siberia Plate SE梔irectional relatively moving.  相似文献   
135.
1 INTRODUCTIONRecently ,thepollutionoftracemetalinseawaterhasbecomeincreasinglyevident.Researchershavefo cusedattentiontotracemetalpresentinvariousexistenceforms ,especiallyorganiccomplexingphases.Theexistencestatesandtransportmechanismofbaytracemetalswerethesubjectofstudybysomere searchers(Gu ,1 991 ;Florence ,1 998;Guo ,1 998;Wells,1 991 ,1 998a ,b ;Wellsetal.,1 998) .Whetherinfreshwaterorseawater,colloidsareclearlydominantfactorsaffectingtheexistencestatesandtransportmechanismoftrac…  相似文献   
136.
莱州湾凹陷位于渤海南部海域,为中生界基底之上发育的新生代半地堑.郯庐断裂带分东西两支穿过莱州湾凹陷东部,在新生代盖层中表现出渤海最复杂最典型的为NNE向的右旋走滑断裂特征.其中东支断裂在渐新世以后活动强烈,发育多条NNE向走滑断层及NE向伴生断层组成的复杂断裂带.走滑断裂带内断层展布符合右旋单剪作用下的脆性走滑剪切模式,地震方差切片存在右旋运动拖拽断裂证据.通过对主断裂活动期次分析表明,研究区主要有三期大的构造活动,同时形成了三期构造反转.应力分布的局域性导致了形变特征的差异性,产生了褶皱、挤压反转、掀斜断块、花状构造等典型的构造类型.研究区首次利用三维地震资料对本区构造特征进行了分析,研究认为走滑活动形成了良好的构造背景、优越的油源及运移等成藏条件,具有较大的油气勘探潜力.  相似文献   
137.
为了更好地跟踪水产养殖活动对海湾水环境的影响,于2011年10月采集了3个具有代表性的大亚湾海域水产养殖区的水样和底泥样品,研究了底泥含水率、孔隙率、密度以及孔隙水中的氨氮和可溶活性磷酸盐的垂直分布。采用经典的Fick定律,计算了氮和磷在沉积物-水界面的释放速率和年释放量。基于环境水力学理论,应用水平二维数学模型,计算了氮和磷在沉积物-水界面释放之后在海水中的扩散迁移时空分布。结果表明,澳头、深水港、虎头门采样点沉积物-水界面的氨氮年释放量分别为13.5、5.2、0.56t·a-1,可溶活性磷酸盐的释放量分别为0.34、0.03、0.02t·a-1,使水产养殖区域沉积物成为极具潜力的污染内源。释放到海水中的氮和磷受潮流、风、水深的影响,其扩散迁移范围呈长条形带状分布。每个养殖区域的污染带长度约为1km,横向宽度约为50m。该区域的海水极易呈富营养化状态。  相似文献   
138.
Presently, research is lacking regarding the diagnosis and evaluation of habitat degradation in enclosed bay systems. We established a diagnostic model for enclosed bay habitat degradation (EBHD model) using a multi-approach integrated diagnostic method in consideration of driving force-pressure- state-influence-response. The model optimizes the indicator standardization with annual average change rate of habitat degradation as the basic element, to reflect accurately the impact of the change and speed of degradation on the diagnostic results, to quantify reasonably the contribution of individual diagnostic indicator to habitat degradation, and to solve the issue regarding the influence of subjective factors on the evaluation results during indicator scoring. We then applied the EBHD model for the Sansha Bay in Fujian Province, China, evaluated comprehensively the situation of habitat degradation in the bay, and screened out the major controlling factors in the study area. Results show that the diagnostic results are consistent in overall with the real situation of the study area. Therefore, the EBHD model is advantageous in terms of objectivity and accuracy, making a breakthrough in diagnosis and evaluation for habitat degradation in enclosed bay systems.  相似文献   
139.
The process of habitat degradation varies in habitat type and driving force which shows certain spatial and temporal heterogeneity on regional scales. In the present study, a new diagnostic model for enclosed bay habitat degradation was established, with which the spatial and temporal variation patterns of habitat degradation during 1991–2012 in Sansha Bay, Fujian, China was investigated. The results show that anthropogenic disturbance is the major controlling factor for the habitat degradation in large temporal heterogeneity in the bay. On the other hand, the habitat degradation experienced signifi cant spatial variations among six sub-bays. Under the joint action of temporal and spatial heterogeneity, the degradation trend in growing scale shows a more signifi cant correlation with the distribution of local leading industries along shorelines. Therefore, we quantifi ed the main characters of habitat degradation in Sansha Bay, and have understood the relationship between the status of habitats spatio-temporal variation value and the main controlling factor leading to the changes. However, a defi ciency of this research is the lack of or inaccessible to the detailed data, which shall be better solved in the future study for accessing more data from more sources.  相似文献   
140.
The increasing riverine pollutants have resulted in nutrient enrichment and deterioration of water quality in the coastal water of Guangxi Province, China. However, the quantitative relationship between nutrient loads and water quality responses, which is crucial for developing eutrophication control strategies, is not well studied. In this study, the riverine fluxes of nutrients were quan- tified and integrated with nutrient cycling and phytoplankton dynamics by using box models for Guangxi coastal bays. The model concepts and biogeochemical equations were the same; while most model parameters were specific for each bay. The parameters were calibrated with seasonal observations during 2006--2007, and validated with yearly averaged measurements in 2009. The gen-eral features of nutrient and phytoplankton dynamics were reproduced, and the models were proved feasible under a wide range of bay conditions. Dissolved inorganic nitrogen was depleted during the spring algal bloom in Zhenzhu Bay and Fangcheng Bay with relatively less nutrient inputs. Phosphorus concentration was high in spring, which decreased then due to continuous phytoplankton consumption. Chlorophyll-a concentration reached its annual maximum in summer, but was the minimum in winter. Eutrophication was characterized by both an increase in nutrient concentrations and phytoplankton biomass in Lianzhou Bay. Either about 80% re-duction of nitrogen or 70% reduction of phosphorus was required to control the algal bloom in Lianzhou Bay. Defects of the models were discussed and suggestions to the environmental protection of Guangxi coastal bays were proposed.  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