首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 421 毫秒
1.
Landscape spatial pattern mainly refers to the distribution of patches, which are different in size and shape in space owing to the interaction of various ecological activities. In landscape ecology study, landscape pattern has been one of the key study areas. Water body landscape plays an important role in the development history of a city, but at present city water body landscape in many cities has been destroyed, hence protecting water body in the city is becoming more and more important. In order to protect city water body landscape reasonably, the precondition is to probe the dynamics of water body landscape. Based on historical data and remote sensing data, six indexes including patch number, patch area, landscape dominance index, fractal dimension, patch density and connectivity index etc. were used to analyze landscape pattern dynamics of water body in Kaifeng city since the end of the Qing Dynasty (in the 20th century). The results showed: (1) Since the end of the Qing Dynasty, landscape area of water body in Kaifeng city increased first and then decreased from 1898 to 2002AD; the landscape dominant degree had the same changing tendency with the area. (2) Patch number of water body landscape in Kaifeng city had an increase from 1898 to 2002, but maximum area of patch, minimum area of patch and average area of patch decreased, which resulted in an increase in landscape fragment degree. (3) Connectivity index decreased and fractal dimension increased from 1898 to 2002. The reasons for these changes were the repeated overflows and flooding of the Yellow River and the influence of human activities.  相似文献   

2.
Yanchi County is located in the agro-pastoral ecotone and belongs to the ecologically fragile area of Northwest China.It is important to study the evolution of landscape pattern to curb its environmental degradation.In order to intuitively show how the landscape pattern of the study area changes over time,Landsat Thematic Mappers(TM)and Landsat Operational Land Imager(OLI)data of 1991,2000,2010 and 2017 were used.This paper attempts to apply niche theories and methods into landscape ecology,and constructs a niche model of landscape components by using"n-dimentional hypervolume niche theory"and landscape pattern indices.By evaluating the spatial and temporal evolution of niche from the perspective of two-dimensional space to reflect the changes of landscape pattern in the study area over the past 26 years,new theories and methods were introduced for the characterization of landscape pattern.The results indicate that:1)The larger the attribute and dominance value of landscape components,the higher the ecological niche and the stronger the control effect on the overall landscape.2)The ecological niche of each landscape component was significantly different,just as its control effect on the overall landscape.3)The dynamic change of the ecological niche of each landscape component was different,with grassland,unused land and arable land always in a high dominant position,although the ecological niche of construction land and water area was always low.In general,the introduction of niche theory into the landscape ecology provided a new method to study the changes in regional landscape pattern.  相似文献   

3.
Using the methods of combining landscape ecology with GIS spatial analysis,this paper analyses the dynamics of the marsh landscape stucture of the Sanjing Plain in the past 20 years,furthermore,taking Fujin County,located in the north of the plain,as an example,analyzes the conversion between marsh and other land use types.It is shown that the marsh in the Sanjiang Plain decreased greatly in the past 20 years,but the trend has begun to reverse,The marsh area decreased by 51.33% from 1980 to 1996,whereas it decreased by 4.19% from 1996 to 2000.The fragmentation of the marsh increased;the number of the patches increased by 326 from 1986 to 1996,whereas it only increased by 18 patches from 1996 to 2000,It is obvious that the speed of patches number diminished and the marsh fragmentation decreased,which shows that the reclamation of the marsh converted from the fragmentation to the brim in a large area of the marsh.The reclaimed marsh has mainly converted to paddy field and dry land .Large area of the marsh.The reclaimed marsh has mainly converted to paddy fiedld and dry land.Large-scale reclamation in the Sanjiang Plain influences its natural environment directly:the climate of the region turns from cold and wet to warm and dry,which makes the marsh both in the low-temperature northern part and in the deeply stagnant eastern part suitable for further agricultural development.  相似文献   

4.
近20年来伊洛河流域典型地区森林景观格局动态   总被引:3,自引:0,他引:3  
Based on the information from forest resources distribution maps of Luoning County of 1983 and 1999,six indices were used to analyze spatial patterns and dynamics of forest landscapes of the typical region in the middle of the Yihe-Luohe river basin.These indices include patch number,mean patch area,fragment index,patdch extension index,etc,The results showed that;(1) There was a rapid increase in the number of patch and total area from 1983 to 1999 in the study area,The fragment degree became very high.(2) The area of all the forest patch types had witnessed great changes,The fractal degree of each forest patch type became big from 1983 to 1999 ,The mean extension index of Robinia pseudoacacia forest ,non- forest shrub forest ,sparse forest ,and Quercus species forest in creased rapidly,but that of economic forest became zero ,The fractal dimension each showed that forest coverage has been promoted.(3)The changes of landscape patterns were different in different geomprhic regions.From 1983 to 1999 the vegetation cover area,the gross number and the density of patch,diversity and evenness of landscape were all reduced greatly in gullies and ravines,but the maximum area and the mean area of patch types were increased ,In hilly region,both the forest cover area and the number of patch increased from 1983 to 1999,but the mean area of patch was reduced greatly,In mountain region,even though the area under forest canopy reduced from 1983 to 1999 ,the patch number was increased greatly,the mean area of all patch types was reduced ,the extension index,diversity index and evenness index of landscape were all increased.Furthermore,because of different types of land use,human activtiy and terratin ,the vegetation changes on northern and southern mountain slopes were different.According to these analyses,the main driving forces,such as the policies of management,market economy,influence of human activities etc.are brought out.  相似文献   

5.
1984-2008年北京湿地景观格局驱动机制(英文)   总被引:3,自引:0,他引:3  
The landscape pattern of Beijing wetlands has undergone a significant change as a result of natural and artificial elements.Supported by remote sensing and GIS technology,using multi-temporal TM images from 1984 to 2008 in Beijing,this paper analyzed the dynamic characteristics of wetlands landscape pattern through selected typical indices including patch area,patch average area,fractal dimension index,diversity,dominance,contagion indices and the spatial centroids of each wetlands type were calculated.Finally,the paper explored the evolution mode and driving factors of wetland landscape pattern.The results were obtained as follows:the total wetland area increased during the period 1984-1996,then decline from 1996 to 2004.The wetland area in 1994 accounted for only 47.37% of that in 2004.The proportion of artificial wetland area was larger than that of natural wetland.The proportion of reservoir wetland was 33.50% to 53.73% and had the maximum average area.pond and paddy field wetland type with the least average area accounted for 16.46% to 45.09% of the total wetland area.The driving forces of the natural river wetland were mainly natural elements;its fractal dimension index was greater than the others.The Shannon diversity index of wetland landscape increased from 1.11 in 1992 to 1.34 in 2004,indicating that the difference between proportions of each wetland type decreased and areas of each wetland type were evenly distributed.The contagion index went down from 65.59 to 58.41,indicating that the connectivity degraded.Miyun Reservoir had the largest area and its area change had a great impact on the location of the centroid.Wetland resources degenerated gradually from the joint effects of natural and artificial factors.During the period 2006-2008,the precipitation increased and the drought condition was relieved.The government implemented series of positive policies to save water resources,and the wetland area increased.  相似文献   

6.
三江平原沼泽湿地时空动态特征   总被引:3,自引:0,他引:3  
1IntroductionThe wetland ecosystem is the latest one understood by humans and it is the most seriously damaged ecosystem (Williams, 1991). The Sanjiang Plain, located in northeast China, is the largest concentrated area of freshwater wetland in China. Since the 1950s, large-scale reclamation of the marsh in the Sanjiang Plain has been started. According to statistics, the natural marsh has lost about 80% of its total area. The marsh resources in the Sanjiang Plain decreased greatly and the…  相似文献   

7.
榆林地区景观变化探测模型   总被引:3,自引:1,他引:2  
Landscape is a dynamic phenomenon that almost continuously changes. The overall change of a landscape is the result of complex and interacting natural and spontaneous processes and planned actions by man. However, numerous activities by a large number of individuals are not concerted and contribute to the autonomous evolution of the landscape in a similar way as natural processes do. There is a well-established need to detect land use and ecological change so that appropriate policies for the ;egional sustainable development can be developed. Landscape change detection is considered to be effectively repeated surveillance and needs especially strict protocols to identify landscape change. This paper developed a series of technical frameworks on landscape detection based on Landsat Thematic Mapper (TM) Data. Through human-machine interactive interpretation, the interpretation precision was 92.00% in 1986 and 89.73% in 2000. Based on the interpretation results of TM images and taking Yulin prefecture as a case study area, the area of main landscape types was summarized respectively in 1986 and 2000. The landscape pattern changes in Yulin could be divided into ten types.  相似文献   

8.
Taken fractal dimension, compact ratio, urban centroid and urban principal axis as the urban spatial characteristic indices, Tianjin city’s urban area is investigated in the last 26 years in a quantitative perspective, and its traits and changes during different periods are also analyzed. It is clear that these indices can not only scientifically and explicitly assess the urban morphology, urban direction and its changes and trends, but also uncover long-term effects of economy and urban planning on urban morphology.  相似文献   

9.
Multiple cropping index(MCI) is the ratio of total sown area and cropland area in a region,which represents the regional time intensity of planting crops.Multiple cropping systems have effectively improved the utilization efficiency and production of cropland by increasing cropping frequency in one year.Meanwhile,it has also significantly altered biogeochemical cycles.Therefore,exploring the spatio-temporal dynamics of multiple cropping intensity is of great significance for ensuring food and ecological security.In this study,MCI of Huang-Huai-Hai agricultural region with intensive cropping practices was extracted based on a cropping intensity mapping algorithm using MODIS Enhanced Vegetation Index(EVI) time series at 500-m spatial resolution and 8-day time intervals.Then the physical characteristics and landscape pattern of MCI trends were analyzed from 2000–2012.Results showed that MCI in Huang-Huai-Hai agricultural region has increased from 152% to 156% in the 12 years.Topography is a primary factor in determining the spatial pattern dynamics of MCI,which is more stable in hilly area than in plain area.An increase from 158% to 164% of MCI occurred in plain area while there was almost no change in hilly area with single cropping.The most active region of MCI change was the intersection zone between the hilly area and plain area.In spatial patterns,landscape of multiple cropping systems tended to be homogenized reflected by a reduction in the degree of fragmentation and an increase in the degree of concentration of cropland with the same cropping system.  相似文献   

10.
河南沿黄湿地景观格局及其动态   总被引:3,自引:2,他引:1  
By using GIS and remote sensing techniques, the paper discusses how human activities have changed along the Yellow River in Henan province, China and how these altered activities have influenced the wetland landscape pattern change from 1987 to 2002. Results show that the total area of the wetland reduces dramatically compared to 1987, the total area of wetland reduces by 19.18%, the number of the patches in 2002 increases by 21.17%, the density increases by 50%, and the total perimeter increases by 1,290,491 m. Disturbed by human activities, landscape diversity index decreases from 1.1740 in 1987 to 0.9803 in 2002. During the last 20 years, the total area of the rice wetland increases, while the others decrease. Among those, the area of the bulrush wetland decreases most. In 1987, it takes 0.5% of the total area, but in 2002, it only takes 0.11%. The interpenetration of human influences on the wetland natural system has been long and close. The impacts of human activities on the spatial pattern of the wetland landscape along the Yellow River in Henan from 1987 to 2002 are great.  相似文献   

11.
以湿地变化较为剧烈的小三江平原为研究区域,以1955~2010年的地形图和Landsat TM遥感数据为数据源,采用网格分析法研究景观指数的时空分异规律,并分析不同时期人为干扰度对景观格局指数的影响。结果表明:从时间上看,1955~2010年小三江平原沼泽湿地的面积和最大斑块逐渐减小,斑块占景观比从52.87%下降到10.41%,最大斑块减少了47.6%,破碎化和分散性逐渐增加,连接度从1.02%增加到2.88%后下降为0.79%,呈先增加后降低的趋势,斑块的形状由复杂变得简单后又变得复杂,人为干扰度逐渐增加,从0.31%增加到0.6%;从空间上看,1955年研究区沼泽湿地景观由西南向东北破碎化逐渐减弱,1986年后变为由西南向东北破碎化逐渐增加的格局。沼泽湿地斑块类型所占景观面积比例和连接度指数的高值区主要分布在研究区的中部和东北部。人为干扰度的空间分布格局是由西南向东北逐渐减弱;1955~2010年人为干扰对小三江平原沼泽湿地的邻近与连接程度的影响逐渐减弱,对沼泽湿地边缘密度影响逐渐增强,人为干扰对沼泽湿地斑块密度的影响主要受沼泽湿地面积的影响,人为干扰对沼泽湿地斑块的形状影响较小,沼泽湿地的优势景观控制力逐渐下降,人为干扰是小三江平原湿地面积减少的主要原因。  相似文献   

12.
松嫩平原湿地景观格局动态变化研究   总被引:5,自引:3,他引:2  
在GIS和RS技术支持下,运用FRAGSTATS软件,研究了1980~2000年松嫩平原湿地景观格局动态变化特征。结果表明,松嫩平原湿地景观格局发生了显著变化,21a湿地面积减少了33.1%;平均斑块面积、最大斑块指数均呈减小趋势,而景观形状指数、斑块密度、斑块分维数、景观分割指数和斑块周长偏离度则呈增加趋势;松嫩平原湿地分布质心发生偏移,21a来向西南方向偏移了49.82km,主轴方向逆时针旋转了7.817°,表明湿地景观具有破碎化和萎缩的趋势。这种变化是在区域水文和气候波动、水利工程、人类活动强度、对湿地的保护措施等因素共同驱动下形成的。  相似文献   

13.
三江平原抚远县景观格局变化研究   总被引:2,自引:0,他引:2  
基于RS和GIS技术,应用集成地形图与遥感影像(MSS和TM)数据,获得抚远县6期景观类型图;通过计算各景观类型的相对变化率、转入和转出贡献率,应用景观格局分析方法,对1954~2005年三江平原抚远县湿地农田化过程进行分析。结果表明,1986年以后,耕地成为抚远县面积最大的景观类型;1954~2005年,各景观类型中耕地的相对变化率最大,1995~2000年间其相对变化率达到10.50;湿地的相对变化率在1976~1986年最大,为1.31%,湿地转出变为耕地的贡献率较大,这主要是湿地大面积被开垦为耕地的结果。景观指数在过去50多年间都发生了明显变化,最大景观形状指数(LSI)出现在1995年,为36.99;最大Shannon多样性指数(SH-DI)出现在1986年,为1.45;最大斑块聚集度指数(CONTAG)和斑块指数(LPI)出现在2005年,分别为64.14和53.35;最大斑块周长—面积分维数(PAFRAC)出现在1954年,为1.54。大规模农业开发与景观指数变化规律存在密切关系。  相似文献   

14.
The formation of an anisotropic landscape is influenced by natural and/or human processes, which can then be inferred on the basis of geometric indices. In this study, two minimal bounding rectangles in consideration of the principles of mechanics (i.e. minimal width bounding (MWB) box and moment bounding (MB) box) were introduced. Based on these boxes, four novel shape indices, namely MBLW (the length-to-width ratio of MB box), PAMBA (area ratio between patch and MB box), PPMBP (perimeter ratio between patch and MB box) and ODI (orientation difference index between MB and MWB boxes), were introduced to capture multiple aspects of landscape features including patch elongation, patch compactness, patch roughness and patch symmetry. Landscape pattern was, thus, quantified by considering both patch directionality and patch shape simultaneously, which is especially suitable for anisotropic landscape analysis. The effectiveness of the new indices were tested with real landscape data consisting of three kinds of saline soil patches (i.e. the elongated shaped slightly saline soil class, the circular or half-moon shaped moderately saline soil, and the large and complex severely saline soil patches). The resulting classification was found to be more accurate and robust than that based on traditional shape complexity indices.  相似文献   

15.
基于3S技术的内蒙古乌审旗景观格局研究   总被引:4,自引:2,他引:2  
以乌审旗2005年30 m分辨率的TM遥感影像为基本数据源,在ArcView和ArcMap支持下,得到乌审旗景观分布格局图,并对景观单元特征指数、斑块形状指数、斑块数破碎化指数、斑块分维数、景观异质性指数进行统计分析。结果表明,在乌审旗21 495个景观斑块中,斑块数目最多的为沙地景观,共有10 357块;总面积最大的也是沙地,为6.28×109m2;水域景观总面积最小,仅为5.36×107m2;平均面积最大的是工矿用地,为4.26×106m2;景观斑块密度最大的是耕地。各类斑块形状均较复杂,近圆度极小,居民点由于受到人为规划的影响呈现明显的几何形状特点,故景观形状指数最小;随着人类干扰强度的增加,从自然景观、半自然景观到人工景观,多样性指数、破碎化指数均依次减小,景观多样性指数沙地最高、工矿用地最低;居民点的优势度指数最高,其均匀度指数最低;整个研究区各景观分数维值均小于1.4,景观的自相似程度比较高。  相似文献   

16.
近20年来河南沿黄湿地景观格局演化   总被引:61,自引:7,他引:54  
丁圣彦  梁国付 《地理学报》2004,59(5):653-661
在遥感和GIS技术的支持下,结合河南沿黄湿地的区域特点,确定了河南沿黄湿地景观分类系统,通过采用景观多样性指数、优势度、景观破碎化指数、分布质心和扩展度等景观的空间格局指数,比较系统地分析了近20年河南沿黄湿地景观空间格局变化。结果表明:(1) 河南沿黄湿地的分布面积呈显著下降趋势。1987~2002年湿地面积减少了19.18 %,斑块数量增加了21.27 %,斑块密度净增加0.5倍。斑块总边缘增加了129 0491 m,斑块平均边缘减少了117.84 m。(2) 随着人类干扰强度增加,景观多样性下降,优势度增高。研究区景观多样性指数1987年为1.174,2002年降为0.9803,优势度指数由1987年的0.4355提高到2002年的0.6291。湿地的破碎化程度随着湿地面积的减小和斑块数量的增加,其破碎化程度越来越大,破碎化指数由1987年的0.0141增加到2002年的0.0172。(3) 湿地景观要素中,稻田湿地面积在增加,而水库坑塘、河流、滩地、荒草沼泽地面积都在不断减少,其中荒草沼泽 (芦苇沼泽) 湿地面积减少幅度最大。1987年荒草沼泽湿地占整个湿地地区的0.5%,但到2002年只占0.11%。表明近20年来,人类活动对河南沿黄湿地景观格局变化的影响程度较大。  相似文献   

17.
Using the methods of combining landscape ecology with GIS spatial analysis, this paper analyses the dynamics of the marsh landscape structure of the Sanjiang Plain in the past 20 years, furthermore, taking Fujin County, located in the north of the plain, as an example, analyzes the conversion between marsh and other land use types. It is shown that the marsh in the Sanjiang Plain decreased greatly in the past 20 years, but the trend has begun to reverse. The marsh area decreased by 51.33% from 1980 to 1996, whereas it decreased by 4.19% from 1996 to 2000. The fragmentation of the marsh increased; the number of the patches increased by 326 from 1986 to 1996, whereas it only increased by 18 patches from 1996 to 2000. It is obvious that the speed of patches number diminished and the marsh fragmentation decreased, which shows that the reclamation of the marsh converted from the fragmentation to the brim in a large area of the marsh. The reclaimed marsh has mainly converted to paddy field and dry land. Large-scale reclamation in the Sanjiang Plain influences its natural environment directly: the climate of the region turns from cold and wet to warm and dry, which makes the marsh both in the low-temperature northern part and in the deeply stagnant eastern part suitable for further agricultural development.  相似文献   

18.
 分形理论在研究不规则几何图形方面优越性显著。作者运用分形理论和景观生态学原理,在讨论了玛纳斯河流域土壤类型分布格局的基础上,对土壤图斑面积与斑块形状指数的标度-频度关系进行了定量分析。主要结果是:①玛纳斯河流域土壤类型多样性指数为2.834,最大斑块指数为8.885。两种景观指数值都较大,说明虽然流域内土壤类型的丰富度较高,但其土壤斑块却由少数几种土壤类型所控制。②玛纳斯河流域土壤斑块面积与斑块形状指数标度-频度双对数回归分析的相关系数均大于95%,其相关关系显著。③玛纳斯河流域土壤斑块面积与斑块形状指数的标度-频度分形关系是客观存在的,并不受统计所选的标度影响,具有标度不变性。  相似文献   

19.
两个时期若尔盖高原沼泽湿地景观格局的对比研究   总被引:3,自引:0,他引:3  
以若尔盖高原为研究区,选择1977年的Landsat MSS影像、2007年的Landsat TM影像和研究区90m分辨率的数字地形图为数据源,利用景观生态学方法及遥感和地理信息系统技术,对若尔盖高原1977年和2007年两个时期的沼泽湿地(包括沼泽和沼泽化草甸)景观格局进行了对比研究。结果显示,与1977年相比,2007年研究区沼泽与沼泽化草甸的面积比(沼泽面积/沼泽化草甸面积)发生了明显变化,沼泽与沼泽化草甸的面积比由1977年的1/3减少到2007年的1/7;2007年沼泽面积明显减少,其面积只占沼泽湿地总面积的13%;两个时期,研究区沼泽湿地景观都集中连片分布,聚集度均高于90;与1977年相比,2007年沼泽湿地景观的斑块数减少,景观类型趋于单一,而平均斑块面积和聚集度都在增加;研究区沼泽湿地90%以上分布在坡度小于5°的空间范围内,随着坡度的增大,沼泽湿地的退化程度显著增高;与1977年相比,2007年研究区沼泽湿地景观分布质心发生了一定的空间位移,沼泽质心向西南偏移了3.88km,沼泽化草甸质心向东北偏移了12.35km。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号