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61.
根据COMPASS系统特点,通过对伪距单点定位原理的研究,设计了COMPASS系统伪距单点定位算法,验证了COMPASS系统伪距单点定位的可用性,可为北斗卫星导航定位系统在我国导航定位领域的推广应用和科学研究提供参考。  相似文献   
62.
主要论述了网络RTK的基本原理,并针对网络RTK的几种方法进行了详尽的论述,并分析了各种方法的优缺点,为合理选用网络RTK技术提供了很好的借鉴。  相似文献   
63.
西秦岭阳山金矿带安坝矿床热液蚀变作用   总被引:6,自引:4,他引:2  
张志超  李楠  戢兴忠  韩忠  郭耀宇  李在春 《岩石学报》2015,31(11):3405-3419
安坝金矿床是阳山金矿带内已探明金资源储量最大的金矿床,矿体受NEE向的区域性安昌河-观音坝断裂带及其次级断裂-裂隙系统控制,主要赋存于紧邻断裂带的千枚岩和斜长花岗斑岩中。围绕断裂-裂隙系统的赋矿围岩硫化、硅化、绢云母化、碳酸盐化、绿泥石化、绿帘石化和粘土化蚀变发育,其中前三种蚀变与金成矿作用关系最为密切。论文在厘定安坝金矿床热液蚀变类型、矿物组合特征、以及断裂变形与蚀变空间变化关系的基础上,通过对蚀变岩及其原岩的地球化学分析,剖析了热液蚀变作用过程与机理。研究结果表明,硅化蚀变贯穿发育于成矿前、成矿期和成矿后,绢云母化蚀变为成矿前和成矿期的产物,碳酸盐化蚀变主要发育于成矿晚阶段和成矿后,而粘土化蚀变为成矿后的产物。在长石蚀变为绢云母的过程中,有少量Al2O3带出,而TiO 2在蚀变过程中相对稳定,为此选取TiO 2作为不活动组分,开展质量平衡计算得出:在硅化过程中,明显带入的组分有SiO 2、Fe2O3、FeO、MgO、CaO、C、S、Au、As、Hg、Pb和Zn,而被带出的元素为Rb和Ba;在绢云母化过程中,明显带入的组分为SiO 2、Fe2O3、CaO、C、S、Au、As、Hg、Pb、Zn、Rb和Ba,带出组分为Na2O。稀土元素地球化学特征显示千枚岩原岩稀土元素含量比硅化和绢云母化千枚岩的稀土元素含量高,表明在蚀变过程中有稀土元素的流失。此外,千枚岩原岩的δEu=0.70,δCe=0.95;硅化千枚岩的δEu=0.72,δCe=1.00;绢云母化千枚岩的δEu=0.76,δCe=0.95。硅化、绢云母化千枚岩与千枚岩原岩的REE球粒陨石标准化配分模式曲线变化趋势相似,表现为明显的Eu负异常、无Ce异常的富轻稀土的右倾型曲线。含矿流体沿断裂带运移并与围岩反应,形成了石英和绢云母等蚀变矿物。硅化过程中,含矿流体中还原硫活度降低导致金沉淀;而绢云母化过程中,含矿流体的pH增大及K+和H+含量的减少和CO2含量的增加,致使载金黄铁矿、毒砂和金的沉淀。  相似文献   
64.
水量统一调度以来黄河宁夏河段引黄耗水量分析   总被引:1,自引:0,他引:1       下载免费PDF全文
金双彦  张萍  张春岚  马志瑾 《水文》2015,35(6):82-86
对1999~2012年黄河水量统一调度期间宁夏河段引水和退水的年内和年际变化、引排比关系进行了分析。采用引退水法和水量平衡法计算了宁夏河段的引黄耗水量。结果表明:引退水法平均耗水量为32.64×10~8m~3,年际变化相对比较平缓;水量平衡法平均耗水量为39.37×10~8m~3,年际变化非常明显。建议进一步加强实际引退水口门的数量核实和引退水的监测分析工作。  相似文献   
65.
在弯道水槽中展开系列试验,研究水力冲刷过程中均质土岸坡冲刷崩塌输移与河床冲淤过程及其影响因素。该过程及变化特征可描述为:水下坡面侵蚀及坡脚淘刷导致岸坡失稳崩塌;暂时堆积在凹岸坡脚处的崩塌体加剧附近水流紊动程度利于其输运与分解;分解后较粗的颗粒随弯道螺旋流以推移质形式被输移至下游凸岸落淤,较细的颗粒大部分都随水流以悬移质形式被携带至下游出口;水流结构随岸坡及河床变形而调整;如此循环往复。试验成果进一步表明:冲刷状态下,试验材料黏性越小、近岸流速越大、作用时间越长,岸坡冲刷崩塌量及河床冲刷量都越大;同条件下岸坡冲刷崩塌总量大于河床冲刷总量,且河床相对冲刷率随岸坡冲刷崩塌量的增大而减小,数值范围为0.40~0.92。  相似文献   
66.
针对合肥市水资源现状,分析合肥市水资源特点。结合节水型社会建设的要求,采用相应的定额,预测分析了各行业需水量和供水量,对合肥市2015和2020年的水资源供需平衡进行了二次分析。结果表明:在一次平衡方案下,到2015年,合肥市仅在95%特枯年份下缺水,缺水度为19.16%,水资源基本能满足社会经济的发展。至2020年,合肥市在不同保证率年份下均有缺水,其中,50%频率平水年份的缺水度为3.1%,75%枯水年份的缺水度为4.34%,95%特枯年份缺水度为13.09%,表明未来合肥市水资源紧缺将会成为制约社会经济发展的"瓶颈"。在二次平衡方案下,合肥市仅在2015年和2020年95%特枯年份下有少量缺水,缺水度分别为7.6%和10.21%。最后提出相应的建议,为保证合肥市经济社会、可持续地发展提供科学的依据。  相似文献   
67.
This research demonstrates the spatiotemporal variations of albedo on nine glaciers in western China during 2000–2011, by the albedo derived from two types of datasets: Landsat TM/ETM + images and MOD10A1 product. Then, the influence factors of glacier albedo and its relationship with glacier mass balance are also analyzed by the correlation approach, which is frequently used in geostatistics. The paper finds that there are different spatiotemporal variations over the glaciers in western China: (1) For a single glacier, the albedo varies gently with altitude on its tongue and increases fast in the middle part, while in the accumulation zones, the albedo value appears in the form of fluctuation. This could provide a quantitative method to retrieve the snowline by determining the threshold albedo value of snowpack and bare ice. (2) For the glaciers in western China, the albedo decreases with distance to the center of Tibetan Plateau (TP). This may relate to the elevation of glacier, for the speed of glacier retreat highly depends on air temperature. (3) In the summer period, albedo on most glaciers declines over the last 12 years, and it decreases much faster in southeastern TP than other regions, for which air temperature overwhelms the black carbon concentration. In addition, the trend of glacier albedo in summer is greatly correlated with that of measured glacier mass balance, which implies that the long‐term albedo datasets by remote sensing technology could be used to monitor and predict the change of glacier mass balance in the future. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   
68.
Groundwater in India plays an important role to support livelihoods and maintain ecosystems and the present rate of depletion of groundwater resources poses a serious threat to water security. Yet, the sensitivity of the hydrological processes governing groundwater recharge to climate variability remains unclear in the region. Here we assess the groundwater sensitivity (precipitation–recharge relationship) and its potential resilience towards climatic variability over peninsular India using a conceptual water balance model and a convex model, respectively in 54 catchments over peninsular India. Based on the model performance using a comprehensive approach (Nash Sutcliffe Efficiency [NSE], bias and variability), 24 out of 54 catchments are selected for assessment of groundwater sensitivity and its resilience. Further, a systematic approach is used to understand the changes in resilience on a temporal scale based upon the convex model and principle of critical slowing down theory. The results of the study indicate that the catchments with higher mean groundwater sensitivity (GWS) encompass high variability in GWS over the period (1988–2011), thus indicating the associated vulnerability towards hydroclimatic disturbances. Moreover, it was found that the catchments pertaining to a lower magnitude of mean resilience index incorporates a high variability in resilience index over the period (1993–2007), clearly illustrating the inherent vulnerability of these catchments. The resilience of groundwater towards climatic variability and hydroclimatic disturbances that is revealed by groundwater sensitivity is essential to understand the future impacts of changing climate on groundwater and can further facilitate effective adaptation strategies.  相似文献   
69.
Mountain snowpacks provide most of the annual discharge of western US rivers, but the future of water resources in the western USA is tenuous, as climatic changes have resulted in earlier spring melts that have exacerbated summer droughts. Compounding changes to the physical environment are biotic disturbances including that of the mountain pine beetle (MPB), which has decimated millions of acres of western North American forests. At the watershed scale, MPB disturbance increases the peak hydrograph, and at the stand scale, the ‘grey’ phase of MPB canopy disturbance decreases canopy snow interception, increases snow albedo, increases net shortwave radiation, and decreases net longwave radiation versus the ‘red’ phase. Fewer studies have been conducted on the red phase of MPB disturbance and in the mixed coniferous stands that may follow MPB‐damaged forests. We measured the energy balance of four snowpacks representing different stages of MPB damage, management, and recovery: a lodgepole pine stand, an MPB‐infested stand in the red phase, a mixed coniferous stand (representing one successional trajectory), and a clear‐cut (representing reactive management) in the Tenderfoot Creek Experimental Forest in Montana, USA. Net longwave radiation was lower in the MPB‐infested stand despite higher basal area and plant area index of the other forests, suggesting that the desiccated needles serve as a less effective thermal buffer against longwave radiative losses. Eddy covariance observations of sensible and latent heat flux indicate that they are of similar but opposite magnitude, on the order of 20 MJ m?2 during the melt period. Further analyses reveal that net turbulent energy fluxes were near zero because of the temperature and atmospheric vapour pressure encountered during the melt period. Future research should place snow science in the context of forest succession and management and address important uncertainties regarding the timing and magnitude of needlefall events. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   
70.
During the last decade, the widely distributed shrublands in northern China have shown significant signs of recovery from desertification, the result of widespread conservation practices. However, to support the current efforts in conservation, more knowledge is needed on surface energy partitioning and its biophysical controls. Using eddy‐covariance measurements made over a semi‐arid shrubland in northwest China in 2012, we examined how surface energy‐balance components vary on diurnal and seasonal scales, and how biophysical factors control bulk surface parameters and energy exchange. Sensible heat flux (H) exceeded latent heat flux (λE) during most of the year, resulting in an annual Bowen ratio (β, i.e. H/λE) of 2.0. λE exceeded H only in mid‐summer when frequent rainfall co‐occurred with the seasonal peak in leaf area index (LAI). Evapotranspiration reached a daily maximum of 3.3 mm day?1, and summed to 283 mm yr?1. The evaporative fraction (EF, i.e. λE/Rn), Priestley–Taylor coefficient (α), surface conductance (gs) and decoupling coefficient (Ω) were all positively correlated with soil water content (SWC) and LAI. The direct enhancement of λE by high vapour pressure deficit (VPD) was buffered by a concurrent suppression of gs. The gs played a direct role in controlling EF and α by mediating the effects of LAI, SWC and VPD. Our results highlight the importance of adaptive plant responses to water scarcity in regulating ecosystem energy partitioning, and suggest an important role for revegetation in the reversal of desertification in semi‐arid areas. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   
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