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881.
嘉陵江流域植被覆盖时空变化特征   总被引:1,自引:0,他引:1  
归一化植被指数(Normal Difference Vegetation Index,NDVI)能够反映植被的繁茂程度,可用来揭示环境的演化,并且能在全球变化研究中起到“指示器”的作用。目前利用NDVI研究植被变化多集中于陕西、甘肃、新疆等地区,对嘉陵江流域的植被变化趋势及其影响因素研究很少。利用线性相关分析方法分析GIMMS NDVI数据,借助于地理信息系统软件,分析嘉陵江流域植被覆盖的时空变化规律。研究结果如下:(1)嘉陵江流域在1982~2006年植被覆盖呈微弱上升趋势,与我国其它地区一致,但增长速率大小不一样;(2)嘉陵江流域植被覆盖明显优于黄土高原、西北地区,存在明显的空间差异,南部地区小于北部地区;(3)植被变化也存在空间差异,南部地区多呈增加趋势,而北部地区多呈减少趋势;(4)嘉陵江流域植被覆盖及其变化与气候变化和人类活动均有密切关系。基于分析,发现嘉陵江流域在人类活动和气候变化的双重影响下,环境向有利的方向发展。  相似文献   
882.
ABSTRACT: A canopy reflectance model is incorporated into a routine for simulating water and energy flows in the soil-plant-atmosphere system. The reflectance model is structured tocalculate canopy albedo throughout each simulation period and to determine spectral reflectances at a specified time during the day. Spectral vegetation indices are then calculated from the reflectances and related to the evapotranspiration and thermal response of the canopy. The canopy reflectance model is also used to establish the photo-sytheticaily active radiation load at various depths in the canopy. Stomatal resistances are calculated using these radiation values and integrated to give the minimum canopy resistance. Actual canopy resistance is obtained by adjusting minimum canopy resistance for environmental stresses such as leaf water potential and leaf temperature. Using data for a soybean canopy, canopy evapotranspiration and temperatures are simulated for a range of leaf area index values and compared with the corresponding spectral vegetation indices. The resuits indicate that the normalized difference spectral index has an inverse linear relationship with canopy temperature, concurring with results obtained from satellite observations. The possibility of using a spectral vegetation index and thermal observations together to parameterize surface moisture availability for evapotranspiration is considered.  相似文献   
883.
A technique is presented for developing an isohyet map for the Hualapai Valley, a closed hydrologic basin of about 315 square miles in the northwestern Great Basin in Nevada. In this basin there is practically no climatic data, and in the northwest Great Basin there are too few stations for determination of rainfall on a detailed basis. Using a vegetational typing to represent a range in elevation and precipitation, an initial mean annual rainfall is determined for selected points on a grid pattern. This rainfall is then modified by using topographic parameters of slope, orientation, exposure, and rainfall shadow effect. The resulting point determinations of mean annual rainfall are then smoothed using a trend surface analysis, and an isohyetal map is drawn from the smoothed points. The technique provides an estimated accuracy of one inch of mean annual precipitation and one mile of resolution on isohyets.  相似文献   
884.
Precipitation, soil moisture, runoff, and vegetation were measured on two, 5- to 10-acre, big sagebrush (Artemisia tridentata) watersheds and two, equally small, beardless bluebunch wheatgrass (Agrophron inerme) watersheds that were converted from big sagebrush in 1967. The watersheds are located near Wolcott, Colorado, at an elevation of 7,200 feet, and are mantled with 2 to 3 feet of silty clay soils. Annual precipitation was about 13.5 inches; about 9 inches occurred as rain or snow from April through October and about 4.5 inches accumulated as a snowpack from November through March. Evapotranspiration was about 2 inches greater in 1968 and 1 inch greater in 1969 from the sagebrush watersheds than from the grass watersheds. With a mature stand of grass in 1970 and 1971 the differences in evapotranspiration were within the range of differences measured during the 3-year calibration period when all four watersheds were sagebrush. Water use was similar in the top 1 foot of soil but slightly more water was used by the grass in the 1- to 2-foot zone and more water being used by the sagebrush below 2 feet. Soil-water potential data indicated that only the big sagebrush used a small amount of water from the fractured shale at depths below 40 inches. Sagebrush used more water in August and September than the grass.  相似文献   
885.
/ Three large rivers in northern Finland, the Kemijoki, Iijoki, and Oulujoki rivers, were dammed for hydropower generation in the 1940s-1960s. Due to differences in environmental conditions, these impoundments require detailed study to produce guidelines for fisheries management.Water quality, hydrology, vegetation, and geomorphology data of 16 impoundments were gathered. Shoreline land-use data were derived from maps, and fish assemblage data were collected by exploratory fishing and from the annual fishery statistics. The relations among environmental variables were studied, and a classification of the impoundments was developed by hierarchical cluster analysis. Consequently, three impoundment groups with different environmental characteristics were formed. Significant differences among impoundment groups were also detected in fish yield. We conclude that the variation in environmental conditions, together with differences in fish communities in the impoundments were important enough to justify the claim that impoundments of different types require different management strategies. KEY WORDS: Impoundments; River regulation; Fish assemblage; Water quality; Aquatic vegetation; Finland  相似文献   
886.
This study analyzes the results of the first 5 years of long-term environmental monitoring of the dynamics of coastal vegetation communities in southwestern Taiwan. Seven permanent plots were established in major vegetation communities, including grassland, windbreak forest, and secondary succession forest. Results showed that species richness decreased yearly in grasslands but fluctuated moderately in the forest plots. A Jaccard similarity coefficient was used to evaluate the similarities of species composition between different monitoring years. Species composition changed rapidly in grassland sites, with the similarity coefficient dropping from 82 to 29% in 5 years. The similarity coefficient of vegetation in the compositehardwood forest dropped from 80 to 50%, indicating that at least half the species were the same as those in the beginning and that the composition of forest communities was more stable than that of grassland communities. Dominant species in the forest community changed gradually during the monitoring period. The original planting of Casuarina equisetifolia in windbreak forests decreased year by year in most of the plots, while Cerbera manghas and Ficus microcarpa became the dominant species. The trend of replacement of dominant species indicates that most of the vegetation communities are still in successional stages.  相似文献   
887.
Landscape changes taking place from 1954 to 1992 in the muncipal district of Isernia city (Central Italy) were described in relation to a system of ecosystem classification. Isernia municipal district was selected for study because recent historic changes in this area represent a typical example of landscape transformation similar to many small cities of Italy and other Mediterranean countries. To assess overall changes, three land cover maps (scale 1:25,000) were derived from panchromatic aerial photographs and field surveys. These were then digitalised in a Geographic Information System. A Land Facet (LF) map was derived by combining a phytoclimatic, a lithostatigrafic and a topographic map, and then digitalised as data layers in the same GIS. Results demonstrated two main landscape transformation trends: forest and semi-natural areas increased (8%), whereas agricultural areas decreased (12%). The urban area was relatively small during the entire analysed period, growing from 1% in 1954, to just 5% in 1992. Forest coverage was significant on reliefs, on hillside ecosystems such as limestone and on clay and marl hills LF. Arable land was particularly significant in flat ecosystems with deeper soils, such as on recent alluvial plain LF. These temporal changes were interpreted as being related to the replacement of traditional farming methods (grazing pastures) with more intensive methods (crop fields), especially on alluvial plains.  相似文献   
888.
2000—2015年江汉平原农田生态系统NPP时空变化特征   总被引:1,自引:0,他引:1  
基于MODIS数据和VPM(Vegetation Photosynthesis Model)模型估算2000—2015年江汉平原农田NPP,利用空间自相关和Sen趋势分析方法,分析16年间江汉平原农田NPP的时空变化特征及其影响因素。结果表明:(1)江汉平原农田年均NPP在2000—2005年呈上升趋势,2005—2009年呈波动性下降趋势,2009—2015年呈上升趋势;农田年NPP总量在2000—2015年整体上趋于平稳。(2)高中低产田面积占比分别为66.03%、27.04%和6.93%。2000—2015年NPP具有很强的空间聚集性且呈逐年增强趋势,并随空间距离增加聚集性减弱;江汉平原NPP主要呈高—高聚集和低—低聚集特征。(3)江汉平原农田NPP显著上升、无显著变化和显著下降区域面积分别占1.30%、69.50%和29.20%。  相似文献   
889.
全球变化背景下,青藏高原作为我国乃至全球气候变化的“天然实验室”,植被生态系统发生了深刻变化。引入重心模型等方法分析和探讨2000—2015年青藏高原植被NPP时空变化格局及其驱动机理,并定量区分NPP变化过程中气候变化和人类活动的相对作用。研究发现:(1)2000—2015年,青藏高原植被NPP年均值总体上呈现从东南向西北递减的趋势。在年际变化方面,近16年植被NPP呈现波动上升趋势,其中在2005年出现上升陡坡,并在2005—2015年表现为高位波动的态势。(2)青藏高原植被NPP增加区(变化率>10%)主要集中于三江源地区、横断山区北部、雅鲁藏布江中下游以及那曲地区的中东部,而植被NPP减小区(变化率<-10%)则主要分布于雅鲁藏布江上游和阿里高原。(3)近16年青藏高原植被NPP重心总体向西南方向移动,表明西南部植被NPP在增量和增速上大于东北部。(4)青藏高原植被NPP与气候因子相关性的地区差异显著,其中植被NPP与降水显著相关的区域主要位于青藏高原中部、青藏高原东南部及雅鲁藏布江流域中下游,而植被NPP与气温显著相关的区域主要位于藏南地区、横断山区北部、青藏高原中部和北部。(5)气候变化和人类活动在青藏高原植被NPP变化过程中的相对作用存在显著的时空差异性,在空间上呈现“四线—五区”的格局。研究成果能够为揭示青藏高原区域生态系统对全球变化的响应机制提供理论和方法支撑。  相似文献   
890.
向家坝工程扰动区植被恢复土壤质量评价   总被引:1,自引:0,他引:1  
以向家坝工程扰动区6种植被恢复模式下的土壤为研究对象,综合考虑表征土壤物理、化学和生物特性的25个土壤指标,利用敏感性分析和最小数据集方法进行土壤质量综合评价.结果表明:基于敏感性分析和最小数据集的土壤质量综合评价模型均能有差别的反映不同植被恢复模式对土壤质量和功能的影响;加权算法下基于最小数据集所计算土壤质量综合评价指数(SQI-MWA)能更敏感的反映出植被恢复措施对土壤质量的影响;有机质、全磷和多酚氧化酶能更好反映土壤质量受不同植被恢复方式的影响差异,推荐作为反映向家坝工程扰动区土壤质量的最优指标组合;土壤质量表现为:植被混凝土样地>厚层基材样地>天然林样地>客土喷播样地>框格梁样地>弃渣地.  相似文献   
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