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   101篇
  免费   16篇
  国内免费   16篇
测绘学   8篇
大气科学   7篇
地球物理   37篇
地质学   40篇
海洋学   7篇
综合类   14篇
自然地理   20篇
  2023年   4篇
  2022年   4篇
  2021年   3篇
  2020年   2篇
  2019年   5篇
  2018年   6篇
  2017年   5篇
  2016年   4篇
  2015年   5篇
  2014年   5篇
  2013年   8篇
  2012年   4篇
  2011年   9篇
  2010年   6篇
  2009年   5篇
  2008年   10篇
  2007年   6篇
  2006年   1篇
  2005年   1篇
  2003年   1篇
  2002年   2篇
  2001年   4篇
  2000年   3篇
  1999年   4篇
  1998年   3篇
  1997年   2篇
  1996年   5篇
  1995年   6篇
  1994年   4篇
  1991年   1篇
  1990年   1篇
  1989年   3篇
  1988年   1篇
排序方式: 共有133条查询结果,搜索用时 31 毫秒
51.
西北干旱区山区融雪期气候变化对径流量的影响   总被引:8,自引:1,他引:8  
李宝富  陈亚宁  陈忠升  李卫红 《地理学报》2012,67(11):1461-1470
利用8 个山区气象站1960-2010 年日平均气温、降水和7 个出山口水文站的年径流数据(1960-2008), 统计分析了山区融雪期开始时间、结束时间、天数、温度和降水的变化趋势及其空间差异性, 并定量评估了年径流量对融雪期温度和降水变化的敏感性。结果表明, 近50年来, 山区融雪期平均提前了15.33 天, 延迟了9.19 天;其中, 天山南部山区融雪期提前时间最长, 为20.01 天, 而延迟时间最短, 仅6.81 天;祁连山北部山区融雪期提前时间最短(10.16天), 而延迟时间最长(10.48 天)。这显示山区融雪期提前时间越长, 延迟时间则越短。山区融雪期平均降水量增加了47.3 mm, 平均温度升高了0.857℃;其中天山南部山区降水增量最大, 达65 mm, 昆仑山北部山区降水和温度增量均最小, 分别为25 mm和0.617℃, 而祁连山北部山区温度增量最高(1.05℃)。河流径流量对融雪期气候变化敏感, 降水变化诱发年径流量变化了7.69%, 温度变化使得年径流量改变了14.15%。  相似文献   
52.
Estimating carbon sequestration and nutrient accumulation rates in Northeast China are important to assess wetlands function as carbon sink buffering greenhouse gas increasing in North Asia. The objectives of this study were to estimate accreting rates of carbon and nutrients in typical temperate wetlands. Results indicated that average soil organic carbon(SOC), total nitrogen(TN) and total phosphorus(TP) contents were 37.81%, 1.59% and 0.08% in peatlands, 5.33%, 0.25% and 0.05% in marshes, 2.92%, 0.27% and 0.10% in marshy meadows, respectively. Chronologies reconstructed by 210 Pb in the present work were acceptable and reliable, and the average time to yield 0–40 cm depth sediment cores was 150 years. Average carbon sequestration rate(Carbonsq), nitrogen and phosphorus accumulation rates were 219.4 g C/(m~2·yr), 9.16 g N/(m~2·yr) and 0.46 g P/(m~2·yr) for peatland; 57.13 g C/(m~2·yr), 5.42 g N/(m~2·yr) and 2.16 g P/(m~2·yr) for marshy meadow; 78.35 g C/(m~2·yr), 8.70 g N/(m~2·yr) and 0.71 g P/(m2·yr) for marshy; respectively. Positive relations existed between Carbonsq with nitrogen and precipitations, indicating that Carbonsq might be strengthened in future climate scenarios.  相似文献   
53.
Spatial variations of δD and δ18O among seven tributaries and their water sources were investigated in the Heishui Valley of the Yangtze River, China during the dry-season in 2004. A one-way ANOVA (analysis of variation) test showed that both δD (p?18O (p?=?0.045) spatially varied among the seven tributaries. The plot of δ18O versus δD for the river water collected at different locations showed that isotopic fractionation occurred during the snow and glacial melting process. The depleted δ18O and δD in the tributary waters distributed above the local meteoric water line (LMWL) suggested that the glacial and early snowpack meltwater largely recharged these streams during the early spring. The meltwater was isotopically distinguishable from the precipitation and river water, which had been evaporated during warmer and drier times. If glaciers and snow accumulation diminish with future climate warming, the recharge of these tributaries’ baseflow will decline and the security of the water resource in this watershed will be threatened.  相似文献   
54.
On the basis of daily precipitation records at 76 meteorological stations in the arid region, northwest of China, the spatial and temporal distribution of mean precipitation and extremes were analysed during 1960–2010. The Mann–Kendall trend test and linear least square method were utilized to detect monotonic trends and magnitudes in annual and seasonal mean precipitation and extremes. The results obtained indicate that both the mean precipitation and the extremes have increased except in consecutive dry days, which showed the opposite trend. The changes in amplitude of both mean precipitation and extremes show seasonal variability. On an annual basis, the number of rain days (R0.1) has significantly increased. Meanwhile, the precipitation intensity as reflected by simple daily intensity index (SDII), number of heavy precipitation days (R10), very wet days (R95p), max 1‐day precipitation amount (RX1day) and max 5‐day precipitation amount (RX5day) has also significantly increased. This suggests that the precipitation increase in the arid region is due to the increase in both precipitation frequency and intensity. Trends in extremes are very highly correlated with mean trends of precipitation. The spatial correlation between trends in extremes and trends in the mean is stronger for winter (DJF) than for annual and other seasons. The regional annual and seasonal precipitation and extremes are observed the step jump in mean in the late 1980s. Overall, the results of this study are good indicators of local climate change, which will definitely enhance human mitigation to natural hazards caused by precipitation extremes. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   
55.
长江流域涪江上游以高山峡谷地貌为主,人地矛盾突出,水热条件较好的泥石流灾损土地是山区居民主要的生产生活场所,高效利用灾损土地是山区发展的重要途径。通过野外调查,初步查明目前涪江上游42处泥石流灾损土地利用类型主要为耕地、林地和建筑用地,分别占调查总数的41.5%、32.8%和12.1%。这42处泥石流灾损土地总面积为2.47 km2,可利用面积为2.12 km2(含已利用建筑用地等),占调查总面积的86%,潜在可利用面积较高。选取土壤肥力、水土保持特性及工程地质特性3个因子进行泥石流灾损土地资源化利用评价,得出涪江上游泥石流灾损土地资源化利用模式。评价结果表明,涪江上游泥石流灾损土地可利用潜力主要以中等和较低程度为主,占调查总数的88.09%,因此,涪江上游泥石流灾损土地资源具有较大的开发潜力。另外,本文以涪江上游黄家坝为例,得出4种灾损土地利用模式,即村落聚集优化区模式、现代农业耕作区模式、水土保持缓冲区模式及工民建设潜力区模式,并在此基础上提出相应的灾损土地利用建议,为山区土地资源化开发利用提供指导。  相似文献   
56.
采用产业经济学、计量经济学、统计学中的相关方法,对伊犁河谷1956-2008年期间产业结构演进的特征进行了定量评价,并针对伊犁河谷产业结构演进的三个阶段及其特征进行了研究.利用指标计算分析了三次产业及其内部结构、就业产业结构、产业结构升级转换等层面的动态演进过程,然后运用偏离-份额分析法计算了1956-1978年、1979-1992年和1993-2008年三个代表时段产业结构演进的数量特征.结果表明,伊犁河谷产业结构演进特征具有以下特点:1.一产比重一直呈现明显的下降趋势,二产业比重总体上处于上升趋势,第三产业比第二产业上升快,但内部结构不合理;2.产业结构和就业结构发展表现出极强的不均衡性;3.产业结构转换速度逐渐变缓,特别是1993年以后,随着经济活动日趋正常化、规模化、成熟化,产业结构转换速度相对较小;4.产业结构一直是靠着传统的农牧业在发展演进,落后的工业和不发达的第三产业严重制约着伊犁河谷产业结构的演进.  相似文献   
57.
本文结合乌鲁木齐市土地利用供应管理业务需求和特点,对供地业务和系统进行了分析、设计,并基于ArcGIS Server 9.3平台,采用J2EE架构实现了系统的功能。系统实现了与国土资源部土地市场动态监测与监管系统、乌鲁木齐市已有的建设用地预审审批系统、城镇地籍管理系统的关联,打通了业务之间的"数据链路"。通过对供地业务流程的再造,采用集中打印工作模式的设计,提高了工作效率。  相似文献   
58.
Inspired by the importance of Redfield-type C:N:P ratios in global soils,we looked for analogous patterns in peatlands and aimed at deciphering the potential affecting factors.By analyzing a suite of peatlands soil data(n = 1031),mean soil organic carbon(SOC),total nitrogen(TN) and total phosphorous(TP) contents were 50.51%,1.45% and 0.13%,respectively,while average C:N,C:P and N:P ratios were 26.72,1186.00 and 46.58,respectively.C:N ratios showed smaller variations across different vegetation coverage and had less spatial heterogeneity than C:P and N:P ratios.No consistent C:N:P ratio,though with a general value of 1245:47:1,was found for entire peatland soils in China.The Northeast China,Tibet,Zoigê Plateau and parts of Xinjiang had high soil SOC,TN,TP,and C:P ratio.Qinghai,parts of the lower reaches of the Yangtze River,and the coast zones have low TP and N:P ratio.Significant differences for SOC,TN,TP,C:N,C:P and N:P ratios were observed across groups categorized by predominant vegetation.Moisture,temperature and precipitation all closely related to SOC,TN,TP and their pairwise ratios.The hydrothermal coefficient(RH),defined as annual average precipitation divided by temperature,positively and significantly related to C:N,C:P and N:P ratios,implying that ongoing climate change may prejudice peatlands as carbon sinks during the past 50 years in China.  相似文献   
59.
Melut盆地为中非地区重要的含油气裂谷盆地,具被动裂谷成盆特征,处于区域构造勘探向"三新领域"勘探的转型阶段,油气富集规律尚不十分清楚,通过开展Melut盆地与我国东部主动裂谷盆地的类比分析,有助于深化盆地成藏认识,推进勘探转型.研究表明,Melut盆地北部具被动裂谷成盆特征,发育大型富油凹陷,形成以古近系跨时代成藏组合为主,近源白垩系成藏组合为辅的油气富集特点,古近系Yabus组上段跨时代岩性油藏与近源白垩系Galhak组断块油藏是北部深化勘探的重要领域;盆地中南部具被动裂谷与主动裂谷的叠加演化过程,与海拉尔盆地相似,具小型断陷沉积充填与成藏特征,近源成藏组合是有利的勘探对象,继承性洼槽内低凸起、凹陷间断裂隆起带及缓坡断层坡折带是有利的成藏构造带.该研究深化了Melut盆地成藏认识,明确了盆地南北具有不同的成盆机制与成藏特征,对推动北部成熟探区深化勘探与中南部低探区勘探突破具有重要意义.  相似文献   
60.
分析了RM孔岩心样595个.孔内总有机碳含量TOC变动范围较大,低者1—2%,高者10—20%;总氮含量TN多0.1—0.2%,少数0.4—0.8%;碳氮比值C/N较低(≤8)段属浅湖沉积,C/N较高(>8)段属湖滨沼泽沉积;TOC,TN和C/N明显有四个波动段.  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