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1.
1 Introduction Agriculturallandscape is the m osaics ofnaturaland hum an-managed patches thatvary in size, shape and arrangement(Forman and Gordron,1986).The spatialpattern in the landscape may influence a variety of ecological processes,such as water run…  相似文献   

2.
The research of ecology and landscape reestablishment of river floodplain is considered favorable to its conservation and development.The similarity and difference among river floodplain,wetland,riverside and shore have been reviewed,as well as the progress in the research of floodplain ecology reestablishment in quantitative evaluation,vegetation restoration,the influence on animal habitat and the application of eco-engineering;and of the landscape reestablishment in resource development and utilization,landscape feature and changes,landscape function,structure and control.The potentially important fields are expected to be the change of landscape pattern in different scales,the reasonable protection and utilization in the floodplain tourism,the simulating and monitoring of landscape dynamics,the planning and designing methods of floodplain landscape and the management of floodplain ecosystems.  相似文献   

3.
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   

4.
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   

5.
The spatiotemporal landscape heterogeneity implies multiple biodiversity mechanisms across scales, and the cross-disciplinary studies between landscape ecology and biodiversity are becoming a new research field in China. This paper briefly reviews the development of the field by comparing papers published in international journals and Chinese journals;then it investigates the differences in the trends and focuses between international and Chinese studies. We also introduce several study areas that have emerged over the last 10 years in this field, including metacommunity assembly, landscape genetics, biodiversity and ecosystem service relationship, and landscape planning for biodiversity conservation. The major advances emerging in this field in China over the past 5 years can be classified into six subject areas: 1) effects of urban landscape and urbanization on biodiversity;2) altitudinal patterns of biodiversity in mountain landscapes;3) effects of topographic heterogeneity on plant community assembly and species coexistence;4) impacts of landscape patterns and processes on animal behaviors;5) forest fires and spatiotemporal patterns of vegetation responses;and 6) landscape ecology applications in natural conservation planning and design. In an attempt to promote cross-field studies between geography and ecology, this special issue collected 10 research articles, involving multiple landscape types and biological assemblages, in order to explore the interaction between landscape features and biodiversity. We anticipate that the future development of this active front will be primarily driven by the application of novel information techniques and the realistic demands of sustainability issues, in addition to answering scientific questions cross scales.  相似文献   

6.
Land use change has a profound impact on biodiversity and ecological processes, and is closely related to changes in landscape patterns. This paper introduces the theory and method of land economic niche into landscape ecology, which provides a new method for spatial characterization of urban and rural spatial landscape patterns. Based on this theory, this paper analyzes the landscape pattern of Ganzhou District by using Landsat images as data source in 1995, 2000, 2005,2010 and 2015. We calculated the land economic niche by applying the niche potential theory. Combined with the theory of landscape ecology, we explored the effects of the land economic niche change on the landscape pattern at a county scale.The results show that economic niche of construction land, watershed and farmland increased during 1995–2015, and grassland declined significantly. The economic niche of farmland, construction land, watershed and grassland show a negative correlation with the number of patches(NP), fragmentation index(FN) and the fractal dimension index(FD), and had a positive correlation with the aggregation index(AI). There was no significant correlation between the forest land economic niche and landscape metrics. The change of land economic niche has a driving effect on the landscape pattern of the county, which can represent the economic development direction of Ganzhou District. The land economic niche is closely related to the landscape type which can directly obtain an economic benefit.  相似文献   

7.
景观类型分析在土地覆被变化中的作用   总被引:1,自引:1,他引:0  
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8.
The degradation of ecosystem structure and function on the Qinghai-Tibet Plateau is the result of a combination of natural and anthropogenic factors, with landscape change driven by global change and human activities being one of the major ecological challenges facing the region. This study analyzed the spatiotemporal characteristics of ecosystem services(ESs) and landscape patterns in eastern Qinghai province(EQHP) from 2000 to 2018using multisource datasets and landscape indices. Three ecosyst...  相似文献   

9.
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   

10.
China’s southwestern special terrain pattern as parallel arrangement between longitudinal towering mountains and deep valleys has significant effects on the differentiation of local natural environment and eco-geographical pattern in this region.The 1:50,000 Digital Elevation Model(DEM) data of Longitudinal Range-Gorge Region(LRGR),meteorological observation data from the station establishment to 2010,hydrological observation data,Normalized Difference Vegetation Index(NDVI) and Net Primary Productivity(NPP) products of MOD13 and MOD17 as well as 1:1,000,000 vegetation type data were used.Moisture indices including surface atmospheric vapor content,precipitation,aridity/humidity index,surface runoff,and temperature indices including average temperature,annual accumulated temperature,total solar radiation were selected.Based on ANUSPLIN spline function,GIS spatial analysis,wavelet analysis and landscape pattern analysis,regional differentiation characteristics and main-control factors of hydrothermal pattern,ecosystem structure and function in this region were analyzed to reveal the effects of terrain pattern on regional differentiation of eco-geographical elements.The results show that:influenced by terrain pattern,moisture,temperature and heat in LRGR have shown significant distribution characteristics as intermittent weft differences and continuous warp extension.Longitudinal mountains and valleys not only have a north-south corridor function and diffusion effect on the transfer of major surface materials and energy,but also have east-west barrier function and blocking effect.Special topographic pattern has important influences on vegetation landscape diversity and spatial pattern of ecosystem structure and function,which is the main-control factor on vegetation landscape diversity and spatial distribution of ecosystem.Wavelet variance analysis reflects the spatial anisotropy of environmental factors,NDVI and NPP,while wavelet consistency analysis reveals the control factors on spatial distribution of NDVI and NPP as well as the quantitative relationship with control degree.Special terrain pattern in LRGR is the major influencing factor on eco-geographical regional differentiation in this region.Under the combined effect of zonality and non-zonality laws with "corridor-barrier" function as the main characteristic,special spatial characteristics of eco-geographical regional system in LRGR is formed.  相似文献   

11.
清末以来开封市水域景观格局变化   总被引:11,自引:0,他引:11  
丁圣彦  曹新向 《地理学报》2004,59(6):956-963
借助历史资料和地理信息系统技术,对清末以来开封市水域景观格局的演变进行了分析。研究结果表明:(1) 100余年来,开封市水域景观面积和景观优势度经历了一个由小变大,然后又由大变小的过程。其中,2002年的水域面积为169.6 hm2,为1966年的35%,1898年的89%;景观优势度由1898年的14.6%增加到1966年的36.9%,到了2002年变为13.1%。(2) 从1898年到2002年开封市区水域斑块的数量在增加,最大斑块面积有减小的趋势,最小斑块面积也有减小的趋势,平均斑块面积趋于减小,但斑块密度却在增加,这充分反映了开封市水域景观破碎度的增加。(3) 从1898年到2002年开封市水域斑块的连通性指数是在不断减少的,只是近年来,才有增加的趋势;分维数也有增加的趋势。引起开封市水域景观格局变化的原因既有自然的因素,又有人为的因素。建国以前以黄河的影响为主,建国后人类活动的影响占有重要地位。  相似文献   

12.
1988~2002年开封市景观动态变化   总被引:26,自引:2,他引:24  
在遥感和GIS技术的支持下,通过采用分维数、多样性指数、破碎度指数和边界密度等指数,分析了1988~2002年开封市景观动态变化。结果表明:(1)研究区斑块数增加,由1988年的28784个增加到2002年的32311个;景观破碎度增大;景观形状趋于复杂。(2)建设用地、水域和城市绿地面积增加;耕地(主要是水浇地)、未利用土地和园地等面积减小。(3)建设用地的空间质心向西南方向转移,城市绿地的空间质心向东北方向转移,水域空间质心向东南方向转移。(4)在景观斑块之间,高密度建设用地转移很少,保持较高的稳定性;低密度建设用地主要转为高密度建设用地;而旱地、水浇地等耕地主要转变为低密度建设用地;未利用土地主要转移为旱地、城市绿地和水域。人类活动和黄河同时控制着开封城市发展方向、发展策略和景观类型之间的转化等方面。  相似文献   

13.
土地景观形态能够反映土地利用空间行为特征。在对鄱阳湖地区1995年、2000年、2015年和2018年4个时间点的土地利用现状进行描述的基础上,通过分形维数、分形稳定性、斑块密度、斑块形状破碎度和景观隔离指数分析区域景观格局变化,并运用分形理论对土地利用空间行为进行分析。研究结果显示在1995年到2018年的20多年间,建设用地一直是分形维数最高的土地类型;但从时间尺度上,建设用地的分形维数呈下降趋势,表明建设用地空间形态在土地利用空间行为的作用下逐渐向有序方向发展。水田、旱地和有林地一直是分形维数最低的土地利用类型,且处于景观分形不稳定状态。斑块密度、斑块形状破碎化指数以及景观分离度指数的计算结果支持了分形维数分析的结论。从实现区域土地合理布局的角度,建议通过科学合理的规划,降低区域建设用地的分形维数,引导建设用地有序发展。对于诸如有林地、灌木林地、高覆盖度草地和水域等自然景观,应增加其分形维数以减少人为干扰,维护其稳定性。同时建议在国土空间规划中引入分形维数,将分形维数作为评价区域土地利用格局合理性的一项指标。  相似文献   

14.
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   

15.
科尔沁沙地土地沙漠化与景观结构变化的关系分析   总被引:18,自引:13,他引:5  
从时空尺度分析了科尔沁沙地典型地区1975—2005年景观结构的动态变化对土地沙漠化的影响,结果表明:沙漠化程度在1975—2005年之间呈典型的抛物线变化趋势,其中在1985年达到最大值0.398;30 a来,景观尺度上的斑块密度由21个\5hm-2增加到52个\5hm-2,分维数由1.203增大到1.244,说明景观破碎化增强,结构趋向复杂、稳定;景观结构动态对沙漠化程度的影响分析表明,景观的多样化,促进沙漠化的正向发展;斑块密度越大,沙漠化程度越大,说明高的景观的破碎化程度和空间异质性对沙漠化过程对有促进作用。分维数对沙漠化过程的影响较为复杂,在2005年,分维数对沙漠化程度影响是正相关的,且有显著的线性回归关系,但在其他时间段上分维数对沙漠化的程度是负相关的,相关性不够显著。  相似文献   

16.
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   

17.
土地利用分类对景观格局指数的影响   总被引:54,自引:1,他引:53  
基于景观格局指数的空间格局分析是当前景观生态学研究的重要基础内容,不仅数据源准确度、尺度效应显著影响景观格局指数,土地利用类型划分也对景观格局指数具有显著影响,但我们对这种影响的总体理解尚很缺乏。本研究选取24种常用景观格局指数,以深圳市宝安区为试验区,探讨景观格局指数随土地利用分类系统变化的基本规律。研究结果表明,土地利用分类对景观格局指数的确具有显著影响。而根据景观格局指数对土地利用类型数目变化响应的可预测性,可将其分为三类:① 第一类指数随土地利用分类系统变化的可预测性强,能用简单函数关系 (对数函数关系、S形曲线、反比曲线关系) 来表达,包括斑块数目、斑块密度、边界密度、平均斑块面积、景观形状指数、平均斑块形状指数、周长面积比分维数、平均斑块分维数、聚合度、Shannon多样性指数、Simpson多样性指数和修改Simpson多样性指数;② 第二类指数随土地利用分类系统变化可预测性较差,表现为典型的分段 (或阶梯形) 变化,存在多种可能 (S形曲线、直线、反比曲线与复合曲线关系),包括斑块面积标准差、斑块面积变异系数、最大斑块指数、面积加权平均斑块形状指数、面积加权平均斑块分维数、分离度和斑块结合度;③ 第三类指数由于在度量相关空间格局特征时考虑了土地利用类型数多少的影响,随土地利用分类系统变化呈无规律变化,难以用一种简单函数或分段函数来预测其变化行为,包括蔓延度、Shannon均匀度指数、Simpson均匀度指数、修改Simpson均匀度指数和优势度指数。这些指数随土地利用分类系统变化的变化规律,使试验区不同时期、不同土地利用分类系统下的空间格局比较成为可能。  相似文献   

18.
北京湿地景观格局演变特征与驱动机制分析   总被引:18,自引:1,他引:17  
在遥感和GIS技术的支持下,应用1984-2008 年多时相长时间序列的TM遥感数据,选取斑块总面积、平均面积、分维度、多样性、优势度和聚集度等具有典型生态意义的景观格局指数,对北京湿地20 多年的湿地景观格局演变特征进行分析,探索其演变机制。结果表明:北京湿地总面积在总体上呈先增加后急剧减少再小幅回升的趋势,1994 年的湿地总面积仅为2004 年的47.37%。北京湿地以人工湿地为主,其变化主导着湿地总面积的变化趋势。水库湖泊湿地类型面积占到33.50%~53.73%,其平均面积高于其他湿地类型。坑塘稻田类型的平均面积最小,其面积比例为16.46%~45.09%。河流湿地由于受到自然驱动因子作用较大,其分维度指数高于人工湿地类型;1992-2004 年湿地景观多样性指数由1.11 上升到1.34,表明此阶段各类型所占面积比例分布趋于均匀,而聚集度指数从65.59 下降到58.41,表明景观连通性降低,破碎化程度加重。研究不同湿地类型空间质心变化表明:密云水库面积最大,导致水库湖泊类型质心位于密云县内;1984-1998 年充足的降水使河流湿地质心整体向东北方向偏移了10.43 km,1999-2006 年,连续干旱和大量不合理的开采利用,河流湿地质心向西南部偏移了10.75 km;由于受“退稻还旱”政策影响,使得北部地区的水稻种植面积减小,坑塘稻田湿地质心2006 年以后向南偏移;市区北部兴建的奥林匹克森林公园,使2008年公园湿地质心向海淀区北部偏移。  相似文献   

19.
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   

20.
The land coverage pattern changes for the past 50 years in a typical region of the Hulun Buir Sandy Grassland were interpreted and analyzed based on a series of remote sensing images in 1959, 2002, 2004 and 2009. The temporal and spatial changes of landscape patterns were revealed and the driving forces were analyzed. The results show that all land coverage types had large variable amplitudes. The grassland area decreased, whereas other areas increased. Owing to implementation of artificial sand fixation from 2004 to 2009, the areas of flowing blowouts and depositional area decreased by 71,369 and 128,835 m2, respectively. The average patch area reduced, but the number of blowouts increased, fractal dimension increased, and blowout structure became complex. The fragmentation index increased, whereas contagion index decreased. Driving force analysis shows that human factors such as overgrazing are slightly larger than natural factors of increased temperature and decreased precipitation.  相似文献   

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