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191.
岷江干旱河谷三种主要灌丛地上生物量的分布规律   总被引:24,自引:1,他引:24  
灌丛是岷江干旱河谷主要的植被类型之一,也是该地区相对稳定的生态系统类型。在岷江干旱河谷的水土保持中发挥着重要的作用。本文通过野外样地调查和实验,研究了岷江干旱河谷分布最为广泛的莸灌丛、小花滇紫草灌丛和川甘亚菊灌丛3种灌丛类型的地上生物量,并探讨了其分布规律和影响因素。结果表明:(1)在3种灌丛类型中,川甘亚菊灌丛的平均地上生物量最大,达4819 8kg·hm-2,其次是莸灌丛,为1652 9kg·hm-2,而滇紫草灌丛的平均地上生物量最小,仅为1407 2kg·hm-2;(2)在同一灌丛类型中,不同样地的灌丛地上生物量存在着差异,其中莸灌丛的地上生物量的变化幅度最大,为304 2~5804 7kg·hm-2;滇紫草灌丛地上生物量的变化幅度为241 1~3889 2kg·hm-2;川甘亚菊灌丛地上生物量的变化幅度相对较小,为2089 8~6457 5kg·hm-2;说明川甘亚菊灌丛的群落结构相对稳定。(3)莸灌丛的地上生物量随海拔的上升而减少,而小花滇紫草灌丛和川甘亚菊灌丛的地上生物量则随海拔梯度的升高而增加,但三者都呈现出较好的相关性。(4)在3种灌丛类型中,莸灌丛的土壤水分条件相对较好,其次为小花滇紫草灌丛,川甘亚菊灌丛的土壤水分条件最差。3种灌丛中,小花滇紫草灌丛和川甘亚菊灌丛的地上生物量受土壤水分条件的影响较大,表现为随着土壤水  相似文献   
192.
基于GIS的黄河上游龙羊峡库区生态环境遥感监测研究   总被引:8,自引:0,他引:8  
本项研究以黄河上游生态环境严重退化的龙羊峡库区为研究区,应用遥感与GIS一体化的方法,建立了库区生态环境动态监测信息系统。在系统的支持下,利用多时相、多波段TM遥感数据,对库区近十年来生态环境变化进行监测分析,揭示了库区土地沙漠化、水土流失、土地利用/土地覆盖的现状,以及建库近十年来生态环境时空演化的过程与发展趋势,为库区生态环境治理提供科学依据。本项研究利用遥感和GIS技术,采用生态环境综合分类系统,在一次分类处理中通过多层次不同级别的组合获得了基于同一信息源的土地沙漠化、草场盖度、土地利用处地覆盖等多种环境类型信息,并利用环境信息模型对库区的土壤侵蚀进行了评价。基于GIS的分类后再处理使遥感分类精度有了一定程度的提高。研究表明,在GIS的支持下充分利用遥感信息监测与评价生态环境,是区域生态环境定量化研究的有效途径。  相似文献   
193.
刘文胜  曹敏  唐勇 《山地学报》2003,21(2):162-168
本文采用野外调查与萌发实验相结合的方法对岷江上游地区自然恢复的灌丛以及 3种人工林的土壤种子库状况进行了比较研究。结果显示 ,各样地土壤种子库的储量为 192 5 0~ 3 13 60粒 /(m2 × 10cm)之间 ,人工林的土壤种子库储量和物种数量都大于自然恢复的灌丛 ,其顺序为连香树Cercidiphyllum japonicum、油松Pinustabulaeformis混交林 >连香树林 >油松林 >毛榛Corylusmandshurica、辽东栎Quercusliaotungensis灌丛 ,各样地土壤种子库密度的垂直分布均为上层 >中层 >下层。在各样地土壤种子库的生活型组成中 ,乔木种类所占比例极少 ,而草本种类的数量较多。在灌丛的土壤种子库中 ,灌木的物种数量及其在种子库中所占的比例均大于人工林。大序醉鱼草Buddlejamacrostachya、喜阴悬钩子Rubusmesogaeus、华西绣线菊Spiraealaeta在种子库中的大量存在明显提高了灌木在各样地土壤种子库中所占的比例  相似文献   
194.
气候变化对洮河流域水资源的影响   总被引:7,自引:3,他引:7  
过去40多年来,洮河流域主要产流区甘南高原的气候和生态环境发生了显著变化,通过对引洮工程的引水区——流域上游40多年的实测水文气象数据的统计分析发现,降水和径流总体下降趋势非常明显,20世纪80年代至90年代降水径流减少更多,达35%;而气温则呈上升趋势,但上升幅度没有降水径流的下降幅度大。由于气候升温变暖、草原载畜过量以及过度砍伐森林,导致气候干旱化、山区水土流失加剧、草原植被退化和沙漠化,这一切都将对未来引洮工程发挥效益产生不利影响。  相似文献   
195.
The River Ganga in the central Gangetic plain shows the incision of 20 m of Late Quaternary sediments that form a vast upland terrace (T2). The incised Ganga River Valley shows two terraces, namely the river valley (terrace-T1) and the present-day flood plain (terrace-T0). Terrace-T1 shows the presence of meander scars, oxbow lakes, scroll plains, which suggests that a meandering river system prevailed in the past. The present-day river channel flows on terrace-T0 and is braided, sensu stricto. It is thus inferred that the River Ganga experienced at least two phases of tectonic adjustments: (1) incision and (2) channel metamorphosis from meandering to braided.Optical dating of samples from three different terraces has bracketed the phase of incision to be <6 and 4 ka. Different ages of the top of terrace-T2 show that this surface experienced differential erosion due to tectonic upwarping in the region, which also caused the river incision. River metamorphosis occurred some time during 4 and 0.5 ka.  相似文献   
196.
The Colville basin drains the North Slope of Alaska and is one of several large Arctic river systems located within permafrost. The timing and style of fluvial processes in the earth's permafrost regions differ from those occurring in midlatitude settings. Moreover, in comparison to temperate-zone systems, rivers located entirely within permafrost perform most of their work during relatively short periods of time. This paper examines river ice hydrology and the resulting geomorphic processes that occur within the Colville delta, Alaska. Fluvial processes and landform development within the Colville delta occur after the flood-pulse is initiated by the breakup of river ice. During this 4-month period, the geomorphic processes are largely influenced by the movement of ice. The flood-pulse and accompanying river ice influences erosional and depositional processes and results in unique styles of sediment transport, deposition, and riverbank erosion.  相似文献   
197.
Studies indicate that the climate has experienced a dramatic change in the Heihe River Basin with scope of temperature rise reaching 0.5-1.1oC in the 1990s compared to the mean value of the period 1960-1990, precipitation increased 18.5 mm in the 1990s compared to the 1950s, and 6.5 mm in the 1990s compared to the mean value of the period 1960-1990, water resources decreased 2.6×108 m3 in the 1990s compared to the 1950s, and 0.4×108 m3 in the 1990s compared to the mean value of the period 1960-1990. These changes have exerted a greater effect on the local environment and socio-economy, and also made the condition worsening in water resources utilizations in the Heihe Rver Basin.  相似文献   
198.
Plant communities were sampled in the lower reaches of the Tarim River, Xinjiang. The results showed that there are 23 species belonging to 21 genera in 11 families, most of which have low occurrence frequency in quadrats. The most common species is Tamarix ramosissima, which occurred in 17 sites accounting for 89.47% of the total 19 sites. Quantitative classification (TWINSPAN) and ordination (CCA) methods were used to study the distribution patterns of 23 plant species in 19 sites in this valley. TWINSPAN results showed that the plant communities in the middle reaches of the Tarim River could be divided into 3 groups and the sampling sites could be divided into 7 types in 3 groups. CCA results were consistent with TWINSPAN results, and showed species distribution patterns correlated with major environmental variables of groundwater level and soil moisture.  相似文献   
199.
Based on hydrometric data and extensive investigations on water-extracting projects, this paper presents a preliminary study on water discharge changes between Datong and Xuliujing during dry season. The natural hydrological processes and human factors that influence the water discharge are analyzed with the help of GIS method. The investigations indicate that the water-extracting projects downstream from Datong to Xuliujing had amounted to 64 in number by the end of 2000, with a water-extracting capacity up to 4,626 m3/s averaged in a tidal cycle. The water extraction from the Changjiang River has become the most important factor influencing the water discharge downstream Datong during dry season. The potential magnitude in water discharge changes are estimated based on historical records of water extraction and a water balance model. The computational results were calibrated with the actual data. The future trend in changes of water discharge into the sea during dry season was discussed by taking into consideration of newly built hydro-engineering projects. The water extraction downstream Datong in dry season before 2000 had a great influence on discharges into the sea in the extremely dry year like 1978-1979. It produced a net decrease of more than 490 m3/s in monthly mean discharges from the Changjiang into the sea. It is expected that the water extraction will continually increase in the coming decades, especially in dry years, when the net decrease in monthly mean water discharge will increase to more than 1000 m3/s and will give a far-reaching effect on the changes of water discharge from the Changjiang into the sea.  相似文献   
200.
Evapotranspiration (ET) is an important parameter for water resource management. Compared to the traditional ET computation and measurement methods, the ET computation method based on remote sensing has the advantages of quickness, precision, raster mapping and regional scale. SEBAL, an ET computation model using remote sensing method is based on the surface energy balance equation which is a function of net radiance flux, soil heat flux, sensible heat flux and latent heat flux. The former three fluxes can be computed through the parameters retrieved from remote sensing image, then the latent heat flux can be obtained to provide energy for ET. Finally we can obtain the daily ET. In this study SEBAL was applied to compute ET in the Yellow River Delta of China where water resource faces a rigorous situation. Three Landsat TM images and meteorology data of 1999 were used for ET computation, and spatial and temporal change patterns of ET in the Yellow River Delta were analysed.  相似文献   
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