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11.
以江河源区12个气象台站1971-2008年间的逐月气温、风速和降水资料为基础,对该区气候变化特征进行了分析,结果表明:近40年来,江河源区气候持续变暖,年均气温的增温率为0.37℃/(10 a),1987年和1998年气温由低向高突变;年均风速显著降低,每10 a降幅为0.24 m/s,1981年和1992年风速由高向低突变,年均风速与年均气温间呈负相关关系;1980年代降水偏多,1970和1990年代偏少,21世纪以来降水量有所回升,增幅因区域而异;年陆面蒸发量整体显著增加.结合前人研究,探讨了气候变化对环境的影响:持续升温导致江河源区内冰川退缩、多年冻土退化;1980年代气候相对暖湿,水资源量较丰;气候暖干化、水资源量减少、生态环境恶化是该区在1990年代和21世纪最初几年的显著特征;2004年左右以来,江河源区气候转湿,水资源量增加,生态环境有所好转.  相似文献   
12.
赵希涛  魏乐军 《地球学报》2020,41(1):91-105
在上文阐明"五江一河"径流量的年际变化及各节点具体径流量要比"红旗河工程"构想少得多的基础上,本文依据前人资料和成果,进一步阐述这些河流的径流量,在年内分配的不均匀性与洪水特征,及其对跨流域调水量的制约作用。研究表明:"五江一河"在11月到翌年4月,径流量只占全年总径流量的12.09%~21.84%,月均只有2.01%~3.64%,为冬、春季枯水期。其径流量只比拟调水比例20%或21%的月均值1.67%或1.75%略多。如此之少的水量,只能维系流域内的生态、生产及生活用水,而不能跨流域调水。何况"红旗河"中、下游在冬季结冰期也难以进行调水。每年6月份到9月份的4个月,"五江一河"径流量占全年径流量的53.3%~88.3%,甚至8月份的月径流量可达全年总径流量的17.8%~29.6%,属于汛期。根据径流量的实际数据,一年当中可供调水时间段只有丰水与平水期的6个月或汛期的3~4个月,要比"红旗河工程"构想的全年调水的时间大大缩短。在可资跨流域调水的每年5—10月份的时间窗口中,如果按原构想的月均调水流量占年径流量的比例1.67%(按20%计)或1.75%(按21%计)进行调水,则"五江一河"的年调水总量仅为153.25×10^8m^3(按20%计)或161.50×10^8m^3(按21%计)。仅为原构想调水量600亿m^3的1/4,充其量不足27%。在丰水与平水期的6个月中实现年径流量20%或21%的年调水比例,就意味将月调水比例从占年径流量的1.67%或1.75%增加为3.33%或3.50%。这样,"五江一河"的年调水总量可达到306.50×10^8m^3或323.00×10^8 m^3。此调水方案,导致调水河道截面积或工程规模增加一倍,但调水量也只有原构想的大约一半或至多54%。如果将调水目标强行设定为600亿m^3,那么"五江一河"的调水比例将提高到占年径流量的27.1%(南水北调西线工程开展前),或除金沙江和雅砻江之外的其它调水河流的39.0%(南水北调西线工程完成后),"红旗河"的建设规模势必大大增加,这也意味着工程难度大大增加,意味着工程建设与运行成本大大增加,意味着洪水、地震与地质灾害的危险性大大增加。"五江一河"实际可调水量比"红旗河"构想严重减少,使人不禁会对"红旗河"工程立论的科学基础和科学依据提出质疑。  相似文献   
13.
The discharge of organic matter, nutrients, and heavy metals from the river Odra into the Baltic Sea is compared with the combined discharge of the same substances from other Polish rivers into the Baltic during 1988–1997. The impact of the summer flood of 1997 is also discussed. The discharges of organic matter, nitrogen and phosphorus compounds were closely correlated with the flow rate. The annual loads of these nutrients measured in 1988 and 1996 under similar flow conditions decreased by 15 to 40% in these rivers as a result of the reduction of point sources. A steady decrease in the heavy metal load, independent of weather conditions, has been recorded during the past decade. Zinc decreased by up to 85% in the Odra and 99% in the Wisła. Although the water outflow from the Odra was half that of the Wisła, it transported a proportionally higher load of chemical compounds. Despite the differences in flow rates, the contribution of both rivers to the total riverine phosphorus discharge was approximately the same. The total water outflow during the flood (from 1 July to 28 August 1997) increased by 65% near the mouth of the Odra in comparison to 1996. The phosphate discharge increased by 34%, that of nitrite nitrogen by 88%  相似文献   
14.
三江并流区云南贡山片植被景观类型分布特征   总被引:1,自引:0,他引:1  
以三江并流区云南贡山片为例,以Landsat ETM+影像为数据源,基于3S技术进行植被景观制图,分析景观类型的分布特征。结果表明:1.研究区是典型的高山峡谷地区,海拔3 000~4 000 m的区域占总面积近一半,坡度25°以上的山地面积占84.82%;景观类型分布受垂直空间分异主导;河流、河漫滩和湖泊等景观主要分布在平缓地段,自然植被景观多分布在25°~45°的陡坡上,人工植被景观分布的坡度范围相对较缓;自然植被景观在各坡向上的分布较为均匀;人工植被景观及积雪/冰川景观、岩石景观等分布则体现出一定的空间分异;2.山地森林植被构成研究区景观的基质类型;由于植被景观的垂直分异,构成基底的各类景观类型的优势度随海拔变化,河谷地段的中山湿性常绿阔叶林、中山-亚高山的铁杉-常绿阔叶混交林、亚高山-高山的云冷杉/落叶松林优势度较高,高山-亚高山以杜鹃灌丛为优势景观类型;3.从斑块粒度上看,小斑块数量最多,占总斑块数的80.87%,中斑块占11.36%,其余均在3%以下;优势自然景观类型具有较大的巨斑块数;巨斑块面积比例最大,达到68.99%,其余斑块大小等级的分布面积比例在3%~9%之间。  相似文献   
15.
Abstract

Many data structures are possible for the storage of topological information for computer-based maps. The PAN graph is here suggested as an aid in the selection of a strategy appropriate to the application. Examples are given for the mapping of triangular networks and Thiessen polygons. Application of the technique is appropriate to both education in, and design of, spatial data structures for automated cartography and geographical information systems  相似文献   
16.
青海省三江源地区湿地生态系统健康评价   总被引:7,自引:0,他引:7  
湿地生态系统健康评价是湿地保护的基础,对提高湿地生态环境管理水平具有重要的指导作用.以青海省三江源地区为研究区,采用Landsat ETM+遥感影像为主要数据源,提取湿地信息.基于压力—状态—响应(PSR)模型,构建三江源地区湿地健康的综合评价指标体系;运用层次分析法和地理信息系统空间分析技术,对三江源地区的湿地健康状...  相似文献   
17.
江淮流域梅雨期持续性强降水及其10~30d低频环流特征   总被引:5,自引:1,他引:4  
利用1961—2010年中国556站的逐日降水资料和NCEP/NCAR逐日再分析资料,采用合成分析等方法探讨了江淮流域梅雨期持续性强降水的低频振荡特征及其发生前后低频大气环流场的演变特征。结果表明,江淮梅雨持续性强降水存在显著的10~30 d低频振荡特征。持续性强降水发生时,江淮流域对流层高层受东海低频反气旋西北部的偏西气流控制,使得南亚高压位置偏东,加强了高层的辐散型流场;对流层中层,中高纬度地区存在"+、-、+"的低频位势高度中心,蒙古低频低压使得极地冷空气易于南侵;对流层低层,江淮流域受低频P-J波列西段的台湾岛低频反气旋影响,并伴随强烈的对流活动,此反气旋使得西太平洋副热带高压向更西的位置伸展;因此低层辐合、高层辐散使得江淮流域表现为强烈的低频上升运动,同时低频水汽从孟加拉湾-南海一带输送到江淮流域,为持续性强降水的发生提供了有利的低频环流条件。另外,在持续性强降水发生前后,低层低频正涡度向北、向西传播,高层低频负涡度向南、向东传播,高低层斜压结构明显,共同作用于江淮流域,维持持续性强降水过程。  相似文献   
18.
恒河-雅鲁藏布江流域雪线场的建立及其环境意义   总被引:3,自引:1,他引:2  
利用冰川编目最新数据资料,计算恒河-雅鲁藏布江冰川平均高度(Hme)与测量雪线(ELAh)之间的回归方程,发现冰川系统越大,样本数越多,则相关性越好,从而建立大系统的回归方程计算系统内所有冰川样点的计算雪线高度(ELAhc).对所求得的ELAhc采用10’×10’的格网覆盖区域,对格网内样点的经纬度和计算雪线高度进行算术平均,用Kriging插值生成一定间隔的雪线分布图,即雪线高度场.把所得结果与该区域已有研究对比,发现它除具有共同的基本规律外,还更能体现出西藏南部雪线场的详尽分布规律,如全流域从下游向上游按照平均雪线高度的大小可以分为4个区,不同区域的雪线分布反映了影响区域雪线分布的主导因素.此方法可应用于其它已进行冰川编目的地区,也可建立不同尺度的温度场、积累场、降水场等冰川特征值场.  相似文献   
19.
Because food web regimes control the biomass of primary producers (e.g., plants or algae), intermediate consumers (e.g., invertebrates), and large top predators (tuna, killer whales), they are of societal as well as academic interest. Some controls over food web regimes may be internal, but many are mediated by conditions or fluxes over large spatial scales. To understand locally observed changes in food webs, we must learn more about how environmental gradients and boundaries affect the fluxes of energy, materials, or organisms through landscapes or seascapes that influence local species interactions. Marine biologists and oceanographers have overcome formidable challenges of fieldwork on the high seas to make remarkable progress towards this goal. In river drainage networks, we have opportunities to address similar questions at smaller spatial scales, in ecosystems with clear physical structure and organization. Despite these advantages, we still have much to learn about linkages between fluxes from watershed landscapes and local food webs in river networks. Longitudinal (downstream) gradients in productivity, disturbance regimes, and habitat structure exert strong effects on the organisms and energy sources of river food webs, but their effects on species interactions are just beginning to be explored. In fluid ecosystems with less obvious physical structure, like the open ocean, discerning features that control the movement of organisms and affect food web dynamics is even more challenging. In both habitats, new sensing, tracing and mapping technologies have revealed how landscape or seascape features (e.g., watershed divides, ocean fronts or circulation cells) channel, contain or concentrate organisms, energy and materials. Field experiments and direct in situ observations of basic natural history, however, remain as vital as ever in interpreting the responses of biota to these features. We need field data that quantify the many spatial and temporal scales of functional relationships that link environments, fluxes and food web interactions to understand how they will respond to intensifying anthropogenic forcing over the coming decades.  相似文献   
20.
The influence of relative sediment supply on riverine habitat heterogeneity   总被引:1,自引:0,他引:1  
The diversity of aquatic habitats in streams is linked to physical processes that act at various spatial and temporal scales. Two components of many that contribute to creating habitat heterogeneity in streams are the interaction between sediment supply and transport capacity and the presence of local in-stream structures, such as large woody debris and boulders. Data from previously published flume and field studies and a new field study on tributaries to the South Yuba River in Nevada County, California, USA, were used to evaluate the relationship between habitat heterogeneity, local in-stream structural features and relative sediment supply. Habitat heterogeneity was quantified using spatial heterogeneity measures from the field of landscape ecology. Relative sediment supply, as expressed by the sediment supply/transport capacity ratio, which controls channel morphology and substrate textures, two key physical habitat characteristics, was quantified using a dimensionless bedload transport ratio, q. Calculated q values were plotted against an ecologically meaningful heterogeneity index, Shannon's Diversity Index, measured for each study reach, as well as the percent area of in-stream structural elements. The results indicate two potential mechanisms for how relative sediment supply may drive geomorphic diversity in natural river systems at the reach scale. When less mobile structural elements form a small proportion of the reach landscape, the supply/capacity ratio dictates the range of sediment textures and geomorphic features observed within the reach. In these settings, channels with a moderate relative sediment supply exhibit the highest textural and geomorphic diversity. In contrast, when less mobile structural elements are abundant, forced local scour and deposition creates high habitat heterogeneity, even in the presence of high relative sediment supply.  相似文献   
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