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41.
祁连山青海云杉林树线温度特征   总被引:4,自引:0,他引:4  
树线温度对于解释树线位置及树线形成机理、预测树线对于气候变化的响应具有重要意义。通过在祁连山北坡青海云杉林郁闭林内、树线地带、高山灌丛分布带设置土壤温度自动观测仪器,初步分析了青海云杉林树线温度特征。结果表明:(1)树线处青海云杉根际土壤温度(10cm深度)生长季平均值为4.9℃,低于全球树线生长季平均土壤温度(6.7℃)。(2)生长季长度方面,青海云杉树线(104天)与亚北极(Subarctic,103天)、北方林(Boreal,106天)树线相近。(3)高山灌丛分布带在海拔上高于树线地带,但灌丛地带根际土壤生长季节均温(6.4℃),生长季长度(122天)均高于树线地带,显示了树线之上灌丛相对于乔木生活型有更佳的保持根际土壤热量的优势,从而也成为在树线之上灌丛能够很好生长,并且取代乔木的重要因素。  相似文献   
42.
江河源区NDVI时空变化及其与气候因子的关系(英文)   总被引:5,自引:3,他引:2  
The source regions of the Yangtze and Yellow rivers are important water conservation areas of China. In recent years, ecological deterioration trend of the source regions caused by global climate change and unreasonable resource development increased gradually. In this paper, the spatial distribution and dynamic change of vegetation cover in the source regions of the Yangtze and Yellow rivers are analyzed in recent 10 years based on 1-km resolution multitemporal SPOTVGT-DN data from 1998 to 2007. Meanwhile, the correlation relationships between air temperature, precipitation, shallow ground temperature and NDVI, which is 3×3 pixel at the center of Wudaoliang, Tuotuohe, Qumalai, Maduo, and Dari meteorological stations were analyzed. The results show that the NDVI values in these two source regions are increasing in recent 10 years. Spatial distribution of NDVI which was consistent with hydrothermal condition decreased from southeast to northwest of the source regions. NDVI with a value over 0.54 was mainly distributed in the southeastern source region of the Yellow River, and most NDVI values in the northwestern source region of the Yangtze River were less than 0.22. Spatial changing trend of NDVI has great difference and most parts in the source regions of the Yangtze and Yellow rivers witnessed indistinct change. The regions with marked increasing trend were mainly distributed on the south side of the Tongtian River, some part of Keqianqu, Tongtian, Chumaer, and Tuotuo rivers in the source region of the Yangtze River and Xingsuhai, and southern Dari county in the source region of the Yellow River. The regions with very marked increasing tendency were mainly distributed on the south side of Tongtian Rriver and sporadically distributed in hinterland of the source region of the Yangtze River. The north side of Tangula Range in the source region of the Yangtze River and Dari and Maduo counties in the source region of the Yellow River were areas in which NDVI changed with marked decreasing tendency. The NDVI change was980 Journal of Geographical Sciences positively correlated with average temperature, precipitation and shallow ground temperature. Shallow ground temperature had the greatest effect on NDVI change, and the second greatest factor influencing NDVI was average temperature. The correlation between NDVI and shallow ground temperature in the source regions of the Yangtze and Yellow rivers increased significantly with the depth of soil layer.  相似文献   
43.
30年来呼伦贝尔地区草地植被对气候变化的响应(英文)   总被引:8,自引:3,他引:5  
Global warming has led to significant vegetation changes especially in the past 20 years. Hulun Buir Grassland in Inner Mongolia, one of the world’s three prairies, is undergoing a process of prominent warming and drying. It is essential to investigate the effects of climatic change (temperature and precipitation) on vegetation dynamics for a better understanding of climatic change. NDVI (Normalized Difference Vegetation Index), reflecting characteristics of plant growth, vegetation coverage and biomass, is used as an indicator to monitor vegetation changes. GIMMS NDVI from 1981 to 2006 and MODIS NDVI from 2000 to 2009 were adopted and integrated in this study to extract the time series characteristics of vegetation changes in Hulun Buir Grassland. The responses of vegetation coverage to climatic change on the yearly, seasonal and monthly scales were analyzed combined with temperature and precipitation data of seven meteorological sites. In the past 30 years, vegetation coverage was more correlated with climatic factors, and the correlations were dependent on the time scales. On an inter-annual scale, vegetation change was better correlated with precipitation, suggesting that rainfall was the main factor for driving vegetation changes. On a seasonal-interannual scale, correlations between vegetation coverage change and climatic factors showed that the sensitivity of vegetation growth to the aqueous and thermal condition changes was different in different seasons. The sensitivity of vegetation growth to temperature in summers was higher than in the other seasons, while its sensitivity to rainfall in both summers and autumns was higher, especially in summers. On a monthly-interannual scale, correlations between vegetation coverage change and climatic factors during growth seasons showed that the response of vegetation changes to temperature in both April and May was stronger. This indicates that the temperature effect occurs in the early stage of vegetation growth. Correlations between vegetation growth and precipitation of the month before the current month, were better from May to August, showing a hysteresis response of vegetation growth to rainfall. Grasses get green and begin to grow in April, and the impacts of temperature on grass growth are obvious. The increase of NDVI in April may be due to climatic warming that leads to an advanced growth season. In summary, relationships between monthly-interannual variations of vegetation coverage and climatic factors represent the temporal rhythm controls of temperature and precipitation on grass growth largely.  相似文献   
44.
山地在我们国家是一个非常重要的资源。山地占国土面积的2/3,全国大约有2079个县,其中1743个县是处在山地环境之中;山区人口占到了全国人口的45.5%。从山地在全国的省、市、自治区分布情况看,除了上海市之外,其他省市都有山地。这么大一个资源,如何管理保护与开  相似文献   
45.
放射性碳同位素在土壤碳循环中的应用   总被引:3,自引:0,他引:3  
文中介绍了放射性碳同位素方法在土壤碳循环中的应用,分析了在土壤有机质、土壤CO2气体研究中的主要方法和模型,并指出土壤有机质的放射性测定可以研究较长时间尺度的碳循环(十几年、几十年至更长时间尺度),而土壤CO2气体的放射性测定可以研究短期(季节变化和年变化)内碳的动态。放射性碳同位素用于土壤中细根周转时间的计算、土地利用变化等方面的研究成果及方法也在文中分别作了介绍和分析。最后提出了国内研究应加强的领域和未来利用放射性碳同位素方法研究土壤碳循环的重点研究方向和发展趋势。  相似文献   
46.
额济纳天然绿洲景观变化及其生态环境效应   总被引:33,自引:4,他引:29  
曹宇  欧阳华  肖笃宁  陈高 《地理研究》2005,24(1):130-139
基于研究区1987年LandsatTM和2001年LandsatETM+遥感影像资料,综合运用遥感与GIS技术手段,结合景观格局分析软件APACK,就近15年来额济纳天然绿洲景观格局变化进行了分析,并进一步探讨了由此所引起的生态环境效应。研究结果表明:1)天然绿洲面积与水域面积急剧缩减,绿洲荒漠化程度加剧;2)绿洲景观与荒漠景观过渡地带为各景观生态类型相互转化最为剧烈的区域;3)景观多样性与景观异质性程度减小,景观稳定性降低;4)景观变化所引起的生态环境效应包括地下水矿化度升高、水质下降,植被退化与物种多样性降低,沙尘暴危害加剧以及生态难民数量增加等。  相似文献   
47.
图版图件能表述项目报告书中重要的内容,并反映出存在的主要问题。该文探讨在GIS和PhotoShop环境中制作图版图件的方法,该种方法结合了GIS软件强大的数据管理功能和PhotoShop软件完美的图像编辑功能,其突出的优点是能够制作内容丰富的图版,提高图版美观性,减少制图工作量。  相似文献   
48.
青藏高原高寒草原生态系统CO2,CH4和N2O排放通量研究   总被引:4,自引:1,他引:3  
Using static chamber technique, fluxes of CO2, CHh and N2O were measured in the alpinegrassland area from July 2000 to July 2001, determinations of mean fluxes showed that CO2 and N2Owere generally released from the soil, while the alpine grassland accounted for a weak CH4 sink.Fluxes of CO2, CH4 and N2O ranged widely. The highest CO2 emission occurred in August, whereasalmost 90% of the whole year emission occurred in the growing season. But the variations of CH4and N2O fluxes did not show any clear patterns over the one-year-experiment. During a dailyvariation, the maximum CO2 emission occurred at 16:00, and then decreased to the minimumemission in the early morning. Daily pattern analyses indicated that the variation in CO2 fluxes waspositively related to air temperatures (R2=0.73) and soil temperatures at a depth of 5 cm (R2=4).86),whereas daily variations in CH4 and N2O fluxes were poorly explained by soil temperatures andclimatic variables. CO2 emissions in this area were much lower than other grasslands in plain areas.  相似文献   
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