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1.
Human-induced land use/cover change (LUCC) forms an important component of global environmental change. Therefore, it is important to study land use/cover and its change at local, regional and global scales. In this paper we conducted the study of land use change in Northeast China, one of the most important agricultural zones of the nation. From 1986 to 2000, according to the study results obtained from Landsat images, widespread changes in land use/cover took place in the study area. Grassland, marsh, water body and woodland decreased by 9864, 3973, 1367 and 10,052km2, respectively. By comparison, paddy field, dry farmland, and built-up land expanded by 7339, 17193 and 700km2, respectively. Those changes bore an interactive relationship with the environment, especially climate change. On the one hand, climate warming created a potential environment for grassland and marsh to be changed to farmland as more crops could thrive in the warmer climate, and for dry farmland to paddy field. On the other hand, the changed surface cover modified the local climate. Those changes, in turn, have adversely influenced the local environment by accelerating land degradation. In terms of socio-economic driving forces, population augment, regional economic development, and national and provincial policies were confirmed as main driving factors for land use change. Foundation item: Under the auspices of the Knowledge Innovation Programs of Chinese Academy of Sciences (No. KZCX2-YW-341), National Natural Science Foundation of China (No. 40871187, 40801208)  相似文献   

2.
全面、客观地反映土地动态变化有利于正确认识对土地资源的开发和利用,能为地区产业结构调整,制定可持续发展的土地管理和土地规划提供依据。多时相遥感数据已经被成功运用于研究土地变化,评估前期政策对环境和土地利用的影响[1~5]。在遥感和GIS技术支持下,分析了岷江流域上游地区的土地利用/土地覆被状况及其1986~2000年的时空动态变化和驱动力影响。为保护该地区有限的珍贵林业资源,恢复长江上游的生态屏障作用和国土资源的有效可持续利用提供决策依据。  相似文献   

3.
近几十年来, 由气候变化和人类活动共同驱动的内蒙古地区土地利用/覆被变化(LUCC)较为剧烈, 其引发了一系列的生态环境问题。本文基于3 期LUCC数据, 借助于变化率指数、动态度指数、转类矩阵, 在全区和地级市尺度上, 分析了内蒙古地区土地利用/覆被变化的时空特征及驱动因素。研究结果显示, 受地形因素的影响, 研究区土地利用/覆被变化表现出明显的区域差异及区域趋同性。在经济发展和人口增长的双重压力下:(1)平原耕作区深受国家宏观政策的影响, 2000 年之后的“林地、高覆盖草地开垦”总体速度下降了近35%;(2) 平原耕作区北部边缘条带状地区、山区草原区受制于降水不显著的波动呈减少态势, 2000 年之后的“草地退化及荒漠化”趋势加强了近85%。研究结果为内蒙古地区土地资源的可持续利用与科学管理提供了依据。  相似文献   

4.
Review of studies on land use and land cover change in Nepal   总被引:1,自引:0,他引:1  
Land use and land cover(LULC) in Nepal has undergone constant change over the past few decades due to major changes caused by anthropogenic and natural factors and their impacts on the national and regional environment and climate.This comprehensive review of past and present studies of land use and land cover change(LUCC) in Nepal concentrates on cropland, grassland, forest, snow/glacier cover and urban areas. While most small area studies have gathered data from different sources and research over a short period, across large areas most historical studies have been based on aerial photographs such as the Land Resource Mapping Project in 1986. The recent trend in studies in Nepal is to focus on new concepts and techniques to analyze LULC status on the basis of satellite imagery, with the help of geographic information system and remote sensing tools. Studies based on historical documents, and historical and recent spatial data on LULC, have clearly shown an increase in cropland areas in Nepal,and present results indicating different rates and magnitudes. A decrease in forest and snow/glacier coverage is reported in most studies. Little information is available on grassland and urban areas from past research. The unprecedented rate of urbanization in Nepal has led to significant urban land changes over the past 30 years. Meanwhile, long term historical LUCC research in Nepal is required for extensive work on spatially explicit reconstructions on the basis of historical and primary data collection, including LULC archives and drivers for future change.  相似文献   

5.
受社会制度变迁和气候变化的影响,哈萨克斯坦是中亚地区生态退化和草畜矛盾问题最为突出的国家。近百年来,放牧方式的改变、农业开垦的占用、加之暖干化的气候变化影响,使得哈萨克斯坦各类草地生态系统变化的时空格局具有鲜明的特点。因此,研究哈萨克斯坦草地退化的过程与机制对认识中亚地区草地生态系统对气候变化和人类活动的响应尤为重要,也是对绿色丝路建设过程中区域生态可持续发展的科学支撑。土地覆被数据是生态变化研究的基础数据,但目前广泛使用的各套全球数据集间往往存在很大的差异,这会导致对生态变化成因的认知以及对未来变化的模型模拟产生更大的不确定性。本研究从对草地类型识别的定义、空间分布的一致性和空间分布差异的原因3方面对比5类全球土地覆被数据(UMD 1992-1993、MCD12Q1 2001、GLC 2000、CCI-LC 2000、Glob Cover 2005)中哈萨克斯坦草地分布的异同,以期为哈萨克斯坦的相关研究中土地覆被数据集的选择提供依据。研究结果表明:① 分类系统中对草地类型的界定、遥感数据源、辅助分类数据、分类方法、验证数据和方法的不同是5套数据草地资源分布差异的主要原因,其中MCD12Q1数据与其他4套数据的草地分布面积相差最大;② 5套数据中草地分布都重叠(完全一致)或四套数据重叠(高度一致)的区域仅占39.66%,主要位于哈萨克斯坦典型草原带和部分半荒漠草原带;围绕典型草地分布区,空间一致性由内向外逐渐降低。5套数据完全不一致区域占26.78%,主要位于荒漠草原带;③ CCI-LC2000数据与其他几类数据的重叠区域最高,有76%的草地与5套数据的完全一致以及高度一致区重叠;在分布不一致区域中,极易造成混淆的土地覆被类型主要为旱作耕地、灌溉耕地、耕地与自然植被镶嵌体、裸地以及灌丛。  相似文献   

6.
The Songnen Plain in Northeast China, one of the key national bases of agricultural production, went through remarkable land use/cover changes in recent years. This study aimed to explore the long-term land use/cover changes and the effects of these changes on the environment. The Landsat-based analysis showed that, during 1986–2000, cropland, built-up land and barren land had increased, among which cropland had the largest increase of 9,198km2 with an increase rate of 7.5%. Woodland, grassland, water body and swampland had decreased correspondingly, among which grassland had the most dramatic decrease of 6,127km2 with a decrease rate of 25.6%. The transition matrix results revealed that grassland, woodland and swampland were the three main land use types converted to cropland. Climate warming created the potential environment for the conversion of grassland and swampland into cropland. Land resources policy made by central and provincial governments of China affected the pattern and intensity of land use. Land use/cover changes accompanied by climatic variation brought out a series of environmental consequences, such as sand desertification of land, land salinization and alkalinization, grassland degradation, and more frequent floods. Under this circumstance, optimized land use structure and restoration measures are needed.  相似文献   

7.
近20年黄土高原土地利用/覆被变化特征分析   总被引:5,自引:0,他引:5  
本文根据黄土高原地区20世纪80年代末、2000年、2008年3期土地利用/覆被空间数据集,计算2个时段(20世纪80年代末-2000年,2000-2008年)土地利用/覆被转类方向及其幅度、土地利用/覆被转类指数、土地利用/覆被状况指数及其变化率,分析黄土高原地区自20世纪80年代末以来土地利用/覆被时空变化特征以及宏观生态状况的变化趋势。结果显示:黄土高原地区近20年来平均土地利用/覆被状况指数为24.07,其中土石山区生态系统综合功能最好,其次为河谷平原区,最差的为农灌区。20世纪80年代末-2000年,黄土高原地区主要土地利用/覆被转类是森林和草地转为耕地,生态级别由高级向低级转移,2000-2008年主要土地利用/覆被转类是耕地转为林地和草地,低覆盖草地转为中高覆盖草地,生态级别由低级向高级转移。近20年来黄土高原地区地覆被状况指数变化以及土地利用/覆被转类指数表明,该区域的宏观生态状况总体上经历了转差(20世纪80年代末-2000年土地利用/覆被转类指数为-1.08),后转好(2000-2008年土地利用/覆被转类指数为2.66)2个过程。这一变化过程前期受区域气候变化以及人口增长共同驱动,后期则叠加了生态工程的影响。  相似文献   

8.
蒙古高原土地覆被的变化表征着区域内生态环境的变化,许多环境问题的研究依赖于准确的土地覆被信息。因此,评估当前全球土地覆被数据在区域尺度上的准确性非常重要。本文以蒙古高原为研究区,从构成相似性、类型混淆程度、空间一致性、绝对精度4个方面,分析了GlobeLand30、GLC_FCS30和FROM_GLC 3种30m高分辨率全球土地覆被数据的一致性和准确性。结果表明:① 3种土地覆被数据都显示,草地和裸地是蒙古高原的主要土地覆被类型,任意2种数据的面积序列相关系数都优于0.95;② 3种土地覆被数据中完全一致的区域占蒙古高原总面积的61.87%,主要集中在土地表面异质性低的区域;③ GLC_FCS30数据的总体精度(78.33%)最高,GlobeLand30数据的总体精度(76.85%)次之,FROM_GLC数据的总体精度(75.86%)最低;林地、草地、水体和裸地在3种土地覆被数据中的精度较高(75%以上),灌丛、湿地等地类的精度较低(50%以下)。因此,对蒙古高原土地覆被进行全要素研究时,可以综合考虑选择总体精度最高的GLC_FCS30数据。对特定地类研究的用户,可参考3种土地覆被数据的分类精度有针对性的进行选择。本文可为蒙古高原相关研究选择合适的土地覆被数据提供参考。  相似文献   

9.
本文以欧空局300m土地覆盖数据集为基础,参考20世纪70年代至2005年2期蒙古高原遥感影像,建立20世纪70年代、2005年2期土地利用及动态数据库,结合土地利用变化数量模型,分析了蒙古国与内蒙古的土地利用类型转换情况。对比分析蒙古国和内蒙古近30年来的土地利用变化强度及各地类间的转移变化,揭示2个区域的LUCC分异规律,并对土地变化的驱动力进行分析。结果显示:在自然条件及人类扰动共同作用下,蒙古国及内蒙古均表现出草地面积逐年减少,草地退化趋势明显;裸地面积不断增加,沙漠化现象严重;农田及城镇建设用地面积持续增长;水域面积呈现衰减;未利用地是其他各种土地利用类型增加的主要来源;由于人类扰动差异,蒙古国林地面积略有减少,内蒙古林地面积大幅增加。气候干暖化、人口增长,政策及社会经济发展等是驱动蒙古高原土地利用变化的主要因素。  相似文献   

10.
1 INTRODUCTIONGlobal change research involves much geo-objectsand geo-process, such as climate and environmentalchange, substance and energy cycling, land-use/land-cover change (LUCC), interactivity between human and nature, etc.. So it need cooperation frommany research communities including international research programs groups such as IGBP (InternationalGeosphere-Biosphere Programme IPCC (Intergovemmental Panel on Climate Change), IHDP (InternationalHuman Dimension Program o…  相似文献   

11.
人口增长、气候变化、制度变迁、城市化等均会导致土地利用/覆被的变化,进而引起流域水文过程(截留、入渗、蒸散发和地下水补给等)和水循环过程的改变。当前,由于逐年土地利用/覆被数据获取困难、水文模型本身计算缺陷等问题,所有在流域尺度上开展的借助水文模型进行的土地利用/覆被变化影响下的水文模拟研究都存在一个共同缺点,就是采用的水文模型并不能逐年调用土地利用/覆被数据,即水文模型无法真实体现或模拟土地利用/覆被的时空变化。SWAT作为一个广泛应用的分布式水文模型,在其模拟期内,不能逐年调用土地利用/覆被数据,即在进行水文模拟时忽略了土地利用/覆被时间上的变化,这可能会影响其在土地利用/覆被变化剧烈地区(如黑河中游)的应用。黑河流域是典型的内陆河流域,也是中国西北地区第二大内陆河流域。黑河中游是黑河流域的径流耗散区。本文针对SWAT模型在考虑土地利用/覆被变化时的缺点,对其进行了改进并开发出能够逐年调用土地利用/覆被数据的LU-SWAT模型。在土地利用/覆被变化剧烈的黑河中游对SWAT和LU-SWAT模型的径流模拟效果进行比较,发现LU-SWAT模型更适用于黑河中游水循环模拟。  相似文献   

12.
Land use changes are regarded as landscape pattern change driven by many interactive natural and social-economic factors. Different combination of physical geographical elements induced the difference of spatio-temporal pattern of land use change. There are four physical geographical regions in Mongolian Autonomou County of Qian Gorlos of Jilin Province. Based on spatial analysis and statistical analysis, we conclude that the primary pattern of land use and the tendency of land use changes are all different in four physical geographical regions. During 1987 – 1996, the dominant land use change processes were from grassland or forest to arableland, from unused land to paddy and grassland to unused land. Though land use change is mainly affected by social and economic condition in short period, the composite characters of physical geographical elements controls land use dynamic process. The relationship between land use dynamic process and the character of physical geographical units differ in different regions. Possible human impacts on land use change are explored with application of buffer areas of series distance along main roads and radius around main settlements. A few models are built to describe the relationship between land use spatial change rates and distance to road and settlements. According to our result, the relationship with the proximity to roads was a negative liner function, with the change rate decreasing rapidly when moving away from roads. Within a distance of less 7.5km from main traffic lines, land use changes occur red more. The bulk of grassland was apt to be opened up for cultivation around the settlements and the transformation from dryland to paddy occurred within the distance of 1km away from settlements. Foundation item: Under the auspices of the Knowledge Innovation Project of the Chinese Academy of sciences (KZCXI - Y - 02); the Key Ninth Five-Year Plan (96 - B02 - 01); the National Natural Science Foundation of China (49901017). Biography: HUANG Fang (1971 – ), female, a native of Jilin Province, Ph. D. candidate of Changchun Institute of Geography, the Chinese Academy of Sciences. Her research interests include application of remote sensing and GIS.  相似文献   

13.
基于全国1:100万数字地貌数据库,全国2000、2005、2010年土地覆被数据和山西省行政区边界数据,采用土地覆被动态度、转移概率矩阵和地貌面积频度方法,分析了2000-2010年山西省基本地貌形态类型下的土地覆被变化。结果表明:(1)山西省的土地覆被类型以耕地、林地和草地为主,面积总和占省域面积的95%以上。面积变化的总体趋势是耕地和草地缩减,林地和建设用地持续增加。通过分析转移概率矩阵,表明2000-2005年和2005-2010年2个时段内,土地利用的主要转化趋势相似,即林地与草地之间大面积的相互转化,耕地、草地分别与建设用地之间的相互转化。(2)耕地和建设用地的分布,随着起伏度的增大而逐渐减小。林地分布随着起伏度的增加而逐步增大。从面积变化来看,耕地、林地和草地变化主要位于中起伏山地;水域变化主要集中在大起伏山地;建设用地变化主要分布于平原和台地;未利用地变化主要在小起伏山地。从动态度来看,耕地、草地和水域动态度,在大起伏山地地区最大;林地动态度在平原区最大;建设用地的动态度最大位于丘陵;未利用地在小起伏山地地区最大。(3)土地覆被类型之间的主要转化在地貌上也存着差异。平原地区林地的增加主要来自草地转化。台地和丘陵地区3个主要转化类型相似,2000-2005年主要是林地向草地退化,2005-2010年主要是林地和草地的相互转化。在小起伏山地地区,主要是草地和林地之间的相互转化,但草地转化为林地的面积较林地向草地的转化多。中起伏和大起伏山地地区主要以草地和耕地向林地的转化为主,也有较高比例的建设用地转化为林地。封山育林和退耕还林主要是在起伏较大的山地地区,毁林主要发生在地形平缓地区。  相似文献   

14.
 全球及区域尺度的土地覆盖数据是陆地表层过程研究的重要基础。土地覆盖遥感制图是全球变化和区域可持续发展研究重要的支撑数据,制图精度评价对于数据生产者和数据用户都具有非常重要的意义。2011年在鄱阳湖地区的野外考察共采集包括定点验证、GPS以及解译标志3种类型的土地覆盖样点321个,本文利用剔除了时间差异影响后的287个土地覆盖样点,将样点的实际土地覆盖类型与遥感制图中相应位置的土地覆盖类型进行对比,并利用分层次评估法,即分别在土地覆盖一级类和二级类两个尺度上,采用正确得1分,错误得0分的计分方法,对2005年中国1:25万土地覆盖遥感制图在鄱阳湖地区的精度进行实地验证。结果表明:(1)在土地覆盖一级类型尺度上总体的制图精度为61.67%。其中,湿地/水体的制图精度为100%,农田的制图精度为98.4%,森林的制图精度为80.0%,聚落和草地的精度均低于20%。(2)在二级类型尺度上总体的制图精度为44.25%。其中,2个草地和3个森林及1个农田的二级类型的分类精度为0,旱地、城镇建设用地和农村聚落的分类精度也很低,分别为21.1%、29.0%和1.7%。实地调查发现,2005年左右的全国1:25万土地覆盖遥感制图基本上反映了鄱阳湖地区的土地覆盖状况。但是,对于一些具有过渡性质的土地覆盖类型,如森林和草地等,仅依靠遥感技术准确识别区分仍有一定的难度。  相似文献   

15.
Based on Tupu theory, this paper studied the dynamic changes, conversion modes, expansion intensity and landscape attributes of the saline-alkali lands in Changling County, Zhenlai County and Da'an City of the western Jilin Province in 1980-2000 with the help of GIS. The results show that the saline-alkali land rather sharply increased in Da'an during 1995-2000; the main conversion processes in the three counties were from grassland to saline-alkali land and from saline-alkali land to grassland; and the typical shapes, spatial expansion speed and mode, and landscape attributes of the saline-alkali land were different in the three counties, which were closely related to local topography, predominant wind orientation, water resources distribution, etc. The corresponding spatial expansion mode was marginality in Changling, random in Zhenlai and more kernels in Da'an, respectively. Landscape attributes also responded to the spatial-temporal dynamic changes of the saline-alkali land and the landscape indices of Da'an fluctuated greatly. The frame of this research may provide fundamental reference for landscape analysis and give some suggestions for regional sustainable development.  相似文献   

16.
The Liupan Mountains is located in the southern Ningxia Hui Autonomous Region of China, which forms an important dividing line between landforms and bio-geographic regions. The populated part of the Liupan Mountains region has suffered tremendous ecological damages over time due to population pressure, excessive demand and inappropriate use of agricultural land resources. In this paper, datasets of land use between 1990 and 2000 were obtained from Landsat TM imagery, and then spatial models were used to characterize landscape conditions. Also, the relationship between the population density and land use/cover change (LUCC) was analyzed. Results indicate that cropland, forestland, and urban areas have increased by 44,186ha, 9001ha and 1550ha, respectively while the grassland area has appreciably decreased by 54,025ha in the study period. The decrease in grassland was most notable. Of the grassland lost, 49.4% was converted into cropland. The largest annual land conversion rate in the study area was less than 2%. These changes are attributed to industrial and agricultural development and population growth. To improve the eco-economic conditions in the study region, population control, urbanization and development of an ecological friendly agriculture were suggested.  相似文献   

17.
Land-use change is an important aspect of global environment change. It is, in a sense, the direct result of human activities influencing our physical environment. Supported by the dynamic serving system of national resources, including both the environment database and GIS technology, this paper analyzed the land-use change in northeastern China in the past ten years (1990–2000). It divides northeastern China into five land-use zones based on the dynamic degree (DD) of land-use: woodland/grassland — arable land conversion zone, dry land — paddy field conversion zone, urban expansion zone, interlocked zone of farming and pasturing, and reclamation and abandoned zone. In the past ten years, land-use change of northeastern China can be generalized as follows: increase of cropland area was obvious, paddy field and dry land increased by 74.9 and 276.0 thousand ha respectively; urban area expanded rapidly, area of town and rural residence increased by 76.8 thousand ha; area of forest and grassland decreased sharply with the amount of 1399.0 and 1521.3 thousand ha respectively; area of water body and unused land increased by 148.4 and 513.9 thousand ha respectively. Besides a comprehensive analysis of the spatial patterns of land use, this paper also discusses the driving forces in each land-use dynamic zones. The study shows that some key biophysical factors affect conspicuously the conversion of different land-use types. In this paper, the relationships between land-use conversion and DEM, accumulated temperature (⩾10°C) and precipitation were analysed and represented. We conclude that the land-use changes in northeast China resulted from the change of macro social and economic factors and local physical elements. Rapid population growth and management changes, in some sense, can explain the shaping of woodland/grassland — cropland conversion zone. The conversion from dry land to paddy field in the dry land — paddy field conversion zone, apart from the physical elements change promoting the expansion of paddy field, results from two reasons: one is that the implementation of market-economy in China has given farmers the right to decide what they plant and how they plant their crops, the other factor is originated partially from the change of dietary habit with the social and economic development. The conversion from paddy field to dry land is caused prmarily by the shortfall of irrigation water, which in turn is caused by poor water allocation management by local governments. The shaping of the reclamation and abandoned zone is partially due to the lack of environment protection consciousness among pioneer settlers. The reason for the conversion from grassland to cropland is the relatively higher profits of farming than that of pasturing in the interlocked zone of farming and pasturing. In northeastern China, the rapid expansion of built-up areas results from two factors: the first is its small number of towns; the second comes from the huge potential for expansion of existing towns and cities. It is noticeable that urban expansion in the northeastern China is characterized by gentle topographic relief and low population density. Physiognomy, transportation and economy exert great influences on the urban expansion. Foundation item: Under the auspices of Knowledge Innovation program Key Project of the Chinese Academy of Sciences (KZCX-2-308). Biography: LIU Ji-yuan (1947 - ), male, a native of Shanghai Municipality, professor, Director General of Institute of Geographical Sciences and Natural Resources Research, the Chinese Academy of Sciences. His research interests include environment and resources, remote sensing and geography.  相似文献   

18.
Topography, especially altitude, will influence the way, process and characteristics of land cover changes in mountainous area, simultaneously, the vertical difference of land cover changes will affect soil quality and regional ecological environment. Therefore, the gradient relationship analysis between land cover changes and altitude is very important for regional sustainability. This study investigated land cover dynamics based on land cover data from a typical mountainous area in the Guizhou-Guangxi karst mountain area, China, in 2000 and 2010, then explored the relationship between altitude and land cover change and analyzed different drivers of land cover change at different altitudes. Our findings are as follows. 1) From 2000 to 2010, the total area of land cover transition was 7167.04 km~2 or 2.8% of the region. The increasing area of build-up land(926.23 km~2) was larger than that of forest(859.38 km~2), suggesting that the urban construction speed was higher than that of reforestation. 2) Intensity of land cover transition in northwestern Guizhou-Guangxi karst mountain area was much larger than that of southeast part and their transition trend was also significantly different, which was consistent with regional population and economy. 3) Human activity was the most dramatic at altitudes between 0–500 m. For 500–1000 m, grassland mainly converted to forest and build-up land. Area of land cover transition was the greatest between 1000–1500 m, while above 1500 m, the transition of grassland was the most obvious. 4) The drivers of land cover change varied. Land cover change was positively correlated with gross domestic product and population density but was inversely related to relief amplitude. There were correlations between land cover change and distance to roads and rivers, and their correlations varied with altitude. By revealing patterns and causes of land cover changes in different altitudes, we hope to understand the vertical dependence of land cover changes, so as to improve land productivity and protect land ecological environment scientifically.  相似文献   

19.
1 Introduction Economic development in any country or region entails a long process of structural change in production as GDP and income per capita rise. In addition, economic de- velopment requires a long period of structural transfor- mation in materials inputs through reallocating natural resources (Cipolla, 1962). Land, as a crucial element and a key factor of production, is always the best witness of such transformations. In China, one of the largest countries in the world, 13.5% of its…  相似文献   

20.
武汉城市圈是全国首批“两型社会”改革试验区之一,而且是中部崛起战略和长江经济带发展战略的重点区域。为了正确认识武汉城市圈土地利用时空变化特征,以及政策因素对土地利用变化的影响,本文基于2000、2005、2010和2015年4期武汉城市圈土地利用现状数据,结合GIS空间分析、数理统计、单一土地利用动态度、土地利用转移矩阵和综合土地利用动态度方法,对武汉城市圈2000-2015年以及3个5年期土地利用变化的总体特征、转化方向和区域差异特征进行研究,并分析政策因素对土地利用变化的驱动作用。结果表明:① 总体特征上,2000-2015年耕地、草地、林地和未利用地面积持续减少,建设用地和水域面积不断增多。② 变化方向上,2000-2015年以耕地、林地转化为建设用地和水域为主要特征,2000-2005年以耕地向水域和建设用地转化为主,2005-2010年以耕地向建设用地、水域,林地向建设用地转化为主,2010-2015年以耕地、林地和水域向建设用地转化为主。③ 区域时空差异上,综合土地利用动态度最大的区域集中在武汉城市圈的中部;从单一土地利用动态度看,耕地主要分布在武汉城市圈周边地区;建设用地主要集中在武汉城市圈中部;水域集中在武汉城市圈的仙桃市;林地主要在潜江市、云梦县;草地主要为英山县。④ 政策驱动因素分析上,中部崛起、两型社会、长江经济带发展战略等政策对土地利用变化具有重要影响。  相似文献   

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