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71.
The Influence of Vegetation Cover on Summer Precipitation in China: a Statistical Analysis of NDVI and Climate Data 总被引:18,自引:0,他引:18
This study provides new evidence for the feedback effects of vegetation cover on summer precipitation in different regions of China by calculating immediate (same season), and one-and two-season lagged correlations between the normalized difference vegetation index (NDVI) and summer precipitation. The results show that the correlation coefficients between NDVI in spring and the previous winter and precipitation in summer are positive in most regions of China, and they show significant difference between regions. The stronger one-and two-season lagged correlations occur in the eastern arid/semi-arid region, Central China,and Southwest China out of the eight climatic regions of China, and this implies that vegetation cover change has more sensitive feedback effects on summer precipitation in the three regions. The three regions are defined as sensitive regions. Spatial analyses of correlations between spring NDVI averaged over each sensitive region and summer precipitation of 160 stations suggest that the vegetation cover strongly affects summer precipitation not only over the sensitive region itself but also over other regions, especially the downstream region. 相似文献
72.
CHARACTERISTICS OF EVAPOTRANSPIRATION IN THE YANGTZE DELTA REGION FOR PAST 40 YEARS AND MAIN INFLUENCE FACTORS* 下载免费PDF全文
The Kotoda-Bortan (KB) model (Liu and Kotoda 1998) used for estimating evapotranspiration was modified.The monthly evapotranspiration for various surfaces in the Yangtze Delta (118-123°E,28-33°N) was calculated using the modified model,and the annual regional average of evapotranspiration from 1961 to 1998 was obtained using a weighting method.The spatial and temporal distribution characteristics of evapotranspiration were analyzed.It is found that the regional averaged annual evapotranspiration has a decreasing trend over the past 40 years;the value dropped by about 24mm from 1961 to 1998.The main reason for this tendency is due to the change of land surface condition.Compared with the case of 1980,the current proportions of paddy field,farmland and water surface have decreased by 1.353%,4.42% and 2.597% respectively,while the proportions of urban area and non-agriculture land have increased by 3.345%.These changes clearly result in a decrease of the regional averaged evapotranspiration. 相似文献
73.
青藏高原冬季积雪异常对东,南亚夏季风影响的初步数值模拟研究 总被引:10,自引:2,他引:10
利用一个耦合了简化的简单生物圈模式的大气环流谱模式(SSiB-GCM),初步探讨了青藏高原冬季积雪异常对东、南亚夏季季风环流和降水的影响及其机理。结果表明,高原地区积雪增加将使随后地夏季东、南来季风明显减弱,主要表现为东、南亚季风区降水减少,索马里急流、印度季风的印度西南气流弱弱。另外,还提出欧亚大陆雪盖与整个高原雪盖和高原东部雪盖对东、南亚夏季风影响的敏感问题。与欧亚大陆雪盖相比,高原雪盖是影响 相似文献
74.
植被冠层多角度遥感研究进展 总被引:7,自引:0,他引:7
综述了近年来关于植被冠层多角度遥感研究的最新成果,分别讨论了二向性反射的正向模型和参量反演问题在理论和实际应用中的新进展。分析了卫星平台多角度遥感的应用前景及面临的困难,指出了未来多角度遥感研究的新方向。 相似文献
75.
上海自然植被的特征、分区与保护 总被引:17,自引:0,他引:17
上海地区有种子植物约134科510属919种。种子植物的分区类型共15°个,其中泛热带分布、北温带和东亚分布各占总属数的27.8%、21.6%和11.9%.地带性植被以常绿阔叶林和常绿落叶阔叶混交林为主,其中红楠群落和青冈栎群落能较好地反映中亚热带的植被和环境特征。非地带性植被以潮间带植被和水生植被为主。上海自然植被的类型和分布规律反映了本区地处中亚热带向北亚热带过渡地带的气候特征以及濒江临海的环境特点。同时其现状也表明了上海的自然植被处于不断增长的压力之下所发生的变化,因此亟需加以保护。上海的植被区划可分为隶属于北亚热带常绿落叶阔叶林地带的河口沙洲植被区,碟缘高地植被区和东北淀泖低地植被区,以及隶属于中亚热带常绿阔叶林地带的西南丘陵、低地植被区等。 相似文献
76.
Zheng Feili Tang Keli Zhang Keli Cha Xuan Bai Hongying Northwest Institute of Soil Water Conservation CAS Ministry of Water Resources Yangling Shaanxi People''s Republic of China 《地理学报(英文版)》1997,(2)
Forlongtime,theproblemaboutnaturalerosionandartificiallyacceleratederosionisindispute.HistoricalgeographersconsiderthathumaninducedecoenvironmentaldestructionisaccountablefortheseveresoilerosionandecoenvironmentdeteriorationonLoessPlateau[7,8].Somegeolog… 相似文献
77.
甘肃窑街寺湾沟-炭洞沟红层孢粉组合、地质时代与生态环境 总被引:2,自引:0,他引:2
对窑街寺湾沟-炭洞沟红层孢粉和地层层序及时代进行了系统分析与对比研究。在该剖面中划分出2个孢粉组合:①双束松粉属-无口器粉属-杉粉属-栎粉属-瘤面海金砂孢属组合,时代为早渐新世;②双束松粉属-拟桦粉属-栎粉属-藜粉属-瘤面海金沙孢属组合,属中渐新世。研究表明:窑街寺湾沟-炭洞沟红层剖面的层位位于朱儿庄剖面之上,整个窑街地区的红层剖面属始新统-中渐新统;窑街地区始新世孢粉组合与中国东、西部地区孢粉组合相似,均发育以亚热带和暖温带植物为主的亚热带型落叶阔叶林,气候炎热;始新世晚期至早渐新世则演变为以暖温带落叶阔叶树种为主的针阔叶混交林植被,气候温暖湿润;中渐新世为暖温带落叶阔叶林,气候较温暖湿润。区域对比分析表明,从渐新世早期中国东、西部植被开始出现差异并逐渐加大,该时期也许是中国新构造运动的一个重要时期。 相似文献
78.
Chemical composition of upper crust in eastern China 总被引:4,自引:0,他引:4
In an area of 3.3×106 km2 within eastern China, 28 253 rock samples were collected systematically and combined into 2718 composite samples which were
analyzed by 15 reliable methods using national preliminary certified reference materials (CRMs) for data quality monitoring.
The average chemical compositions of the exposed crust, the sedimentary cover and the exposed basement as well as the upper
crust for 76 chemical elements in eastern China are given.
A key basic geology projcct supported by Ministry of Geology and Mineral Resources of China. 相似文献
79.
On the basis of different sets of aerial photos the dynamics of the reed bed areas of Lake Constance were investigated in relation to the dynamics of the water levels. The objectives of the study were to quantify the changes of reed areas due to different flood events in the last decades and their recovery in the time periods between these events. The results should given information of the relevance of water level variations on reed bed dynamics and the regeneration times of reed beds after extreme disturbance events.Following the extreme flood at Lake Constance in 1999 the reed belts of Lake Constance lost approximately 30 ha (24%) of the lakeside reed beds. The loss is comparable to the situation in the late 1960s, when approximately 40 ha died back due to the extreme flood in 1965 and the high spring water levels in the subsequent years. In the time period between the extreme floods of 1965 and 1999, the reed areas expanded to nearly 85% of the area before 1965. The expansion rates increased with increasing distance to the flood event of 1965. Especially in periods with series of years of low spring water level the expansion rates were high.The damage degrees of the reed areas in the years 2000 and 2002 showed a clear relation to the elevation (i.e. average water level) of the stands. The damage degree increased with decreasing elevation. Furthermore the regeneration process of severely damaged stands was related to the elevation level of the stands. Whereas stands at high elevation regenerate fast, those at low elevation died off completely in the years after the extreme flood. This supports the hypothesis that the water level flutuations play a major role in the reed dynamics of Lake Constance.As a consequence of the climate change an increase in the frequency of high spring water levels is expected. Thus, it seems unlikely that reed stands will ever expand again to the same area as before 1965. 相似文献
80.
A Modeling Study of the Effects of Anomalous Snow Cover over the Tibetan Plateau upon the South Asian Summer Monsoon 总被引:1,自引:0,他引:1
The effect of anomalous snow cover over the Tibetan Plateau upon the South Asian summer monsoon is investigated by numerical simulations using the NCAR regional climate model (RegCM2) into which gravity wave drag has been introduced. The simulations adopt relatively realistic snow mass forcings based on Scanning Multi-channel Microwave Radiometer (SNINIR) pentad snow depth data. The physical mechanism and spatial structure of the sensitivity of the South Asian early summer monsoon to snow cover anomaly over the Tibetan Plateau are revealed. The main results are summarized as follows. The heavier than normal snow cover over the Plateau can obviously reduce the shortwave radiation absorbed by surface through the albedo effect, which is compensated by weaker upward sensible heat flux associated with colder surface temperature, whereas the effects of snow melting and evaporation are relatively smaller.The anomalies of surface heat fluxes can last until June and become unobvious in July. The decrease of the Plateau surface temperature caused by heavier snow cover reaches its maximum value from late April to early May. The atmospheric cooling in the mid-upper troposphere over the Plateau and its surrounding areas is most obvious in May and can keep a fairly strong intensity in June. In contrast, there is warming to the south of the Plateau in the mid-lower troposphere from April to June with a maximum value in May.The heavier snow cover over the Plateau can reduce the intensity of the South Asian summer monsoon and rainfall to some extent, but this influence is only obvious in early summer and almost disappears in later stages. 相似文献